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1

Ziffer-Berger, J., N. Hanin, T. Fogel, K. Mummenhoff, and O. Barazani. "Molecular phylogeny indicates polyphyly in Raphanus L. (Brassicaceae)." Edinburgh Journal of Botany 72, no. 1 (2014): 1–11. http://dx.doi.org/10.1017/s0960428614000286.

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We evaluated the systematic relationship of the two sections of Raphanus (Brassicaceae) on the basis of morphological and ITS data. We obtained strong support that Raphanus is a polyphyletic group embedded in the Oleracea lineage of the tribe Brassiceae. Section Raphanis, which includes Raphanus raphanistrum, R. pugioniformis and R. sativus, is a strongly supported monophyletic lineage. Section Hesperidopsis is embedded in a different lineage together with Brassica deflexa and B. aucheri. We propose to reinstate the genus Quidproquo in place of Raphanus sect. Hesperidopsis as reflected by both
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2

Li, Liqiang, Jianning Liu, Qiong Zhang, et al. "Seed-borne viral dsRNA elements in three cultivatedRaphanusandBrassicaplants suggest three cryptoviruses." Canadian Journal of Microbiology 62, no. 4 (2016): 287–95. http://dx.doi.org/10.1139/cjm-2015-0788.

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Since the 1970s, several dsRNA viruses, including Radish yellow edge virus, Raphanus sativus virus 1, Raphanus sativus virus 2, and Raphanus sativus virus 3, have been identified and reported as infecting radish. In the present study, in conjunction with a survey of seed-borne viruses in cultivated Brassica and Raphanus using the dsRNA diagnostic method, we discovered 3 novel cryptoviruses that infect Brassica and Raphanus: Raphanus sativus partitivirus 1, which infects radish (Raphanus sativus); Sinapis alba cryptic virus 1, which infects Sinapis alba; and Brassica rapa cryptic virus 1 (BrCV1
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3

Ohshima, Kazusato, Yuka Yamaguchi, Ryo Hirota, et al. "Molecular evolution of Turnip mosaic virus: evidence of host adaptation, genetic recombination and geographical spread." Journal of General Virology 83, no. 6 (2002): 1511–21. http://dx.doi.org/10.1099/0022-1317-83-6-1511.

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Turnip mosaic virus (TuMV), a species of the genus Potyvirus, occurs worldwide. Seventy-six isolates of TuMV were collected from around the world, mostly from Brassica and Raphanus crops, but also from several non-brassica species. Host tests grouped the isolates into one or other of two pathotypes; Brassica (B) and Brassica–Raphanus (BR). The nucleotide sequences of the first protein (P1) and coat protein (CP) genes of the isolates were determined. One-tenth of the isolates were found to have anomalous and variable phylogenetic relationships as a result of recombination. The 5′-terminal 300 n
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4

Koch, Marcus A., and Claude Lemmel. "Zahora, a new monotypic genus from tribe Brassiceae (Brassicaceae) endemic to the Moroccan Sahara." PhytoKeys 135 (December 5, 2019): 119–31. http://dx.doi.org/10.3897/phytokeys.135.46946.

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Zahora ait-atta Lemmel & M.Koch, a new species from the Moroccan Sahara, is described and documented here and constitutes a monotypic new genus. The new taxon belongs to the tribe Brassiceae (Brassicaceae), and cytogenetic and phylogenetic analyses reveal that this diploid species has a remote status of Miocene origin in the northwestern Sahara Desert. We examined the morphological differences between morphologically related genera and provide photographs of the new species. The new genus may play a key role in future Brassica-Raphanus crop research since it is placed phylogenetically
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5

Koch, Marcus A., and Claude Lemmel. "Zahora, a new monotypic genus from tribe Brassiceae (Brassicaceae) endemic to the Moroccan Sahara." PhytoKeys 135 (December 5, 2019): 119–31. https://doi.org/10.3897/phytokeys.135.46946.

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Zahora ait-atta Lemmel & M.Koch, a new species from the Moroccan Sahara, is described and documented here and constitutes a monotypic new genus. The new taxon belongs to the tribe Brassiceae (Brassicaceae), and cytogenetic and phylogenetic analyses reveal that this diploid species has a remote status of Miocene origin in the northwestern Sahara Desert. We examined the morphological differences between morphologically related genera and provide photographs of the new species. The new genus may play a key role in future Brassica-Raphanus crop research since it is placed phylogenetically at t
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6

Tan, Zhongyang, Adrian J. Gibbs, Yasuhiro Tomitaka, Flora Sánchez, Fernando Ponz, and Kazusato Ohshima. "Mutations in Turnip mosaic virus genomes that have adapted to Raphanus sativus." Journal of General Virology 86, no. 2 (2005): 501–10. http://dx.doi.org/10.1099/vir.0.80540-0.

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The genetic basis for virulence in potyviruses is largely unknown. Earlier studies showed that there are two host types of Turnip mosaic virus (TuMV); the Brassica/Raphanus (BR)-host type infects both Brassica and Raphanus systemically, whereas the Brassica (B)-host type infects Brassica fully and systemically, but not Raphanus. The genetic basis of this difference has been explored by using the progeny of an infectious clone, p35Tunos; this clone is derived from the UK1 isolate, which is of the B-host type, but rarely infects Raphanus systemically and then only asymptomatically. Two inocula f
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7

Marwa. K. Mathree and S. A. Aliwy. "MORPHOLOGICAL CHARACTERS STUDY FOR ELEVEN SPECIES BELONGS TO BRASSICACEAE FAMILY IN IRAQ." IRAQI JOURNAL OF AGRICULTURAL SCIENCES 55, Special (2024): 43–51. http://dx.doi.org/10.36103/ijas.v55ispecial.1884.

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This study was amied to investigate morphological characteristics of pollen grains and fruits for eleven species belonging to the tribe Brassiceae of cruciferae family, species are: Brassica rapa L , Braasica deflexa Boiss. ,Brassica nigra (L.) brassica juncea(L.), Brassica tournefortii Gouan, Brassica oleracea L., sinapis arvensis L., Hirschfeldia incana(L.) ,Savignya paraflora(Del.) ,Raphanus sativus L. ,Eurca sativa Mill., pollen grains were studied morphologically and all dimentions were recorded. The result of this study showed that most pollen grains are tricolpate ,their size varied bet
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8

Warwick, S. I., and L. D. Black. "Molecular relationships in subtribe Brassicinae (Cruciferae, tribe Brassiceae)." Canadian Journal of Botany 71, no. 7 (1993): 906–18. http://dx.doi.org/10.1139/b93-102.

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Restriction-site variation for 17 endonucleases was compared in the large single-copy region of the chloroplast genome in 74 taxa of the genera Brassica, Coincya, Diplotaxis, Eruca, Erucastrwn, Hirschfeldia, Raphanus, Sinapidendron, Sinapis, and Trachystoma (subtribe Brassicinae, tribe Brassiceae, Cruciferae). A total of 422 restriction-site mutations was observed, with 228 (54%) showing variation among taxa. Phylogenetic analyses indicated a clear division of the subtribe into two main lineages designated here as Rapa–Oleracea and Nigra. Polyphyly was evident in five genera (Brassica, Diplota
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9

Bett, Kirstin E., and Derek J. Lydiate. "Genetic analysis and genome mapping in Raphanus." Genome 46, no. 3 (2003): 423–30. http://dx.doi.org/10.1139/g03-026.

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The first genetic map of the Raphanus genome was developed based on meiosis in a hybrid between Raphanus sativus (cultivated radish) and Raphanus raphanistrum (wild radish). This hybrid was used to produce a BC1 population of 54 individuals and an F2 population of 85 individuals. A total of 236 marker loci were assayed in these populations using a set of 144 informative Brassica RFLP probes previously used for genetic mapping in other crucifer species. The genetic maps derived from the BC1 and F2 populations were perfectly collinear and were integrated to produce a robust Raphanus map. Cytolog
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10

Wallenhammar, Ann-Charlotte, Eva Edin, and Anders Jonsson. "Susceptibility of Oilseed Radish (Raphanus sativus subsp. oleiferus) Cultivars and Various Brassica Crops to Plasmodiophora brassicae." Pathogens 13, no. 9 (2024): 739. http://dx.doi.org/10.3390/pathogens13090739.

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Oilseed radish (OR; Raphanus sativus var. oleiferus) is grown as a cover crop and develops a unique taproot, absorbing nitrogen left by the previous crop. The aim of this project was to investigate the resistance of OR cultivars (cvs.) to Plasmodiophora brassicae, the causal agent of clubroot disease. Twelve market cvs. were compared with cvs. of clubroot-resistant (CR) winter oilseed rape (OSR; Brassica napus) and other selected species of the Brassicaceae family. The study was performed as a replicated bioassay in a growth chamber using a specially composed mixture of field soils holding the
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11

Jawadayn, Talib Alkooranee. "Histological study of leaves symptoms of Brassica napus and Raphanus brassica infected by Alternaria brassicae." International Journal of Agronomy and Agricultural Research (IJAAR) 26, no. 1 (2025): 8–14. https://doi.org/10.5281/zenodo.15462091.

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<em>Alternaria</em>&nbsp;leaf spot can be a devastating disease as the mechanism by which the fungus&nbsp;<em>Alternaria brassicae</em>&nbsp;(Berk.) Sacc.&nbsp; spread in canola is not yet fully&nbsp; understood. It is essential to understand the infection process and mechanisms of resistance by studying biotic and abiotic factors. In the present study, two abiotic elicitors-Salicylic acid (200 ppm), and Milor MZ (Mancozeb 64% + Metalaxyl 8% WP) fungicide (100 ppm) along with the biotic elicitor&nbsp;<em>Pseudomonas fluorescens</em>&nbsp;(PF83), were examined to induce systemic resistance in&n
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12

Dillon, Andrew J., Paul Kron, Michael Walsh, and Mithila Jugulam. "Transfer of 2,4-D-resistance from Raphanus raphanistrum into Brassica napus: production of F1 hybrids through embryo rescue." Canadian Journal of Plant Science 96, no. 3 (2016): 384–86. http://dx.doi.org/10.1139/cjps-2015-0249.

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Development of 2,4-D-resistant Brassica napus varieties is valuable for conservation tillage and post emergence control of broadleaf weeds. This research documents successful production and transfer of 2,4-D resistance from Raphanus raphanistrum (wild radish) into, Brassica napus via embryo rescue.
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13

Koike, S. T., and R. H. Molinar. "Daikon (Raphanus sativus cv. longipinnatus) as a Host of Alternaria brassicae in California." Plant Disease 81, no. 9 (1997): 1094. http://dx.doi.org/10.1094/pdis.1997.81.9.1094b.

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In the spring of 1997, commercial plantings of daikon or Chinese radish (Raphanus sativus L. cv. longipinnatus) in the San Joaquin Valley, Fresno County, were damaged by a disease previously undocumented in California. Symptoms consisted of small (2 to 5 mm diameter), circular to oblong, brown to light tan leaf spots that contained concentric rings. Following rains in January, leaf spots proliferated, coalesced, and resulted in significant necrosis of foliage. An Alternaria species with conidia with prominent beaks and spores produced singly or in chains of two was consistently observed on and
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14

Solovyeva, Anna A., Olga E. Lebedeva, and Thi Trinh Pham. "Evaluation of activity of peroxidases contained in various plant sources." Izvestiya of Saratov University. Chemistry. Biology. Ecology 23, no. 4 (2023): 472–78. http://dx.doi.org/10.18500/1816-9775-2023-23-4-472-478.

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In this study, the decolorization reaction of aqueous solution bromophenol blue dye was carried out in the presence of hydrogen peroxide and peroxidase contained in the roots of horseradish (Armoracia rusticana), radish (Raphanus sativus var. radicula), yellow turnip (Brassica napobrassica), daikon (Raphanus sativus), black radish (Raphanus sativus ‘Niger’), green radish (Raphanus) or stalk of white cabbage (Brassica capitata). The reaction was carried out at an initial dye content of 25,1 μM, a hydrogen peroxide concentration of 0,4 mM, at t = 24 °C and pH 4,01, the peel of various vegetables
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15

Cabral, Cássia Michelle, Márcia Victória dos Santos, Marcus Alvarenga Soares, et al. "Ataque e Caracterização de Danos de Brevicoryne brassicae (L.) (Hemiptera: Aphididae) em Raphanus sativus L. (Brassicaceae)." Research, Society and Development 11, no. 7 (2022): e56711730303. http://dx.doi.org/10.33448/rsd-v11i7.30303.

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O nabo forrageiro (Raphanus sativus L.) é uma planta anual, pertencente à família Brassicaceae. É importante no processo de rotação de culturas, devido à sua capacidade de ciclagem de nutrientes e de produção de massa verde. Essa cultura tem alta taxa de decomposição da palhada, liberando nutrientes para as culturas sucessoras. A presente nota tem como objetivo descrever a ocorrência do ataque do pulgão Brevicoryne brassicae (L.) em nabo forrageiro. Foi observado o ataque do pulgão B. brassicae, comumente encontrado em hortaliças, principalmente nas do gênero Brassica, causando danos em planta
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16

Lamb, R. J., and P. Palaniswamy. "HOST DISCRIMINATION BY A CRUCIFER-FEEDING FLEA BEETLE, PHYLLOTRETA STRIOLATA (F.) (COLEOPTERA: CHRYSOMELIDAE)." Canadian Entomologist 122, no. 5 (1990): 817–24. http://dx.doi.org/10.4039/ent122817-9.

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AbstractThe flea beetle, Phyllotreta striolata (F.), was attracted to the cruciferous plants Brassica oleracea L. and Raphanus sativus L., but not to B. campestris L. and B. napus L. which are important natural host plants, nor to Pisum sativum (L.), a legume. The presence or absence of attraction was demonstrated by exposing small groups of caged plants to natural populations and trapping beetles near the plants. In choice and no-choice laboratory feeding experiments, P. striolata fed on eight Cruciferae in the genera Brassica, Raphanus, and Sinapis but not on P. sativum. Phyllotreta striolat
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17

Campomayor, Nicole Bon, Nomar Espinosa Waminal, Byung Yong Kang, et al. "Subgenome Discrimination in Brassica and Raphanus Allopolyploids Using Microsatellites." Cells 10, no. 9 (2021): 2358. http://dx.doi.org/10.3390/cells10092358.

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Intergeneric crosses between Brassica species and Raphanus sativus have produced crops with prominent shoot and root systems of Brassica and R. sativus, respectively. It is necessary to discriminate donor genomes when studying cytogenetic stability in distant crosses to identify homologous chromosome pairing, and microsatellite repeats have been used to discriminate subgenomes in allopolyploids. To identify genome-specific microsatellites, we explored the microsatellite content in three Brassica species (B. rapa, AA, B. oleracea, CC, and B. nigra, BB) and R. sativus (RR) genomes, and validated
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18

Ashiq, Samina, Simon Edwards, Andrew Watson, Emma Blundell, and Matthew Back. "Antifungal Effect of Brassica Tissues on the Mycotoxigenic Cereal Pathogen Fusarium graminearum." Antibiotics 11, no. 9 (2022): 1249. http://dx.doi.org/10.3390/antibiotics11091249.

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Fusarium graminearum is a globally important cereal pathogen, causing head blight in wheat, resulting in yield losses and mycotoxin contamination. Currently, triazole fungicides are used to suppress Fusarium graminearum, however, the declining effectiveness of triazoles and concerns over the safety of pesticides have led to the pursuit of safe alternative crop protection strategies such as biofumigation. In the present study, species belonging to Brassicaceae (Brassica juncea, Raphanus sativus, Eruca sativa) were assessed for their biofumigation potential against F. graminearum and the glucosi
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19

Vicente, J. G., B. Everett, and S. J. Roberts. "Identification of Isolates that Cause a Leaf Spot Disease of Brassicas as Xanthomonas campestris pv. raphani and Pathogenic and Genetic Comparison with Related Pathovars." Phytopathology® 96, no. 7 (2006): 735–45. http://dx.doi.org/10.1094/phyto-96-0735.

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Twenty-five Xanthomonas isolates, including some isolates received as either X. campestris pv. armoraciae or pv. raphani, caused discrete leaf spot symptoms when spray-inoculated onto at least one Brassica oleracea cultivar. Twelve of these isolates and four other Xanthomonas isolates were spray- and pin-inoculated onto 21 different plant species/cultivars including horseradish (Armoracia rusticana), radish (Raphanus sativus), and tomato (Lycopersicon esculentum). The remaining 13 leaf spot isolates were spray-inoculated onto a subset of 10 plant species/cultivars. The leaf spot isolates were
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20

Ansari, M. S., F. Hasan, and N. Ahmad. "Influence of various host plants on the consumption and utilization of food by Pieris brassicae (Linn.)." Bulletin of Entomological Research 102, no. 2 (2011): 231–37. http://dx.doi.org/10.1017/s000748531100054x.

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AbstractPieris brassicae (Linn.) is a destructive cosmopolitan pest of cruciferous crops. It is present wherever its host plants occur, and it is considered to be one of the most widely distributed of all the Lepidoptera. We investigated the affect of various host plants on the food consumption and utilization by P. brassicae. We quantified consumption of food, larval duration, pupal duration and weight on cabbage (Brassica oleracea var. capitata), cauliflower (Brassica oleracea var. botrytis), radish (Raphanus sativus), broccoli (Brassica oleracea var. italica) and mustard (Brassica campestri
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21

Kanada, lzumi, and Masahiro Kato. "Effect of Brassica oxyrrhina Cytoplasm on Raphanus sativus." Ikushugaku zasshi 47, no. 1 (1997): 57–65. http://dx.doi.org/10.1270/jsbbs1951.47.57.

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22

Müller, J., K. Sonntag, and E. Rudloff. "SOMATIC HYBRIDISATION BETWEEN BRASSICA SPP. AND RAPHANUS SATIVUS." Acta Horticulturae, no. 560 (October 2001): 219–20. http://dx.doi.org/10.17660/actahortic.2001.560.41.

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23

Natã Balssan Moura, Ivan Ricardo Carvalho, José Antônio Gonzalez da Silva, et al. "Crop succession and its reflections on soybean performance." Bioscience Journal 38 (September 9, 2022): e38073. http://dx.doi.org/10.14393/bj-v38n0a2022-56872.

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The fluctuations in yield and consequently in production occurred due to climatic adversities in the main producing states of Brazil. Farming has changed over time, and past scenarios have shown high exploitation of natural resources focusing on soil tillage and conventional seeding methods. This study aimed to determine the yield performance of soybean grown under 10 consolidated crop succession systems. The experiment was conducted during the 2018/2019 crop season, before the research project entitled “Sustainable production systems with better use of biological and natural resources, with t
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24

Yang, Yau-Wen, Pai-Yean Tai, and Ying Chen. "053 The Origin of Raphanus sativus Based on the DNA Sequences from Different Organelles." HortScience 35, no. 3 (2000): 397D—397. http://dx.doi.org/10.21273/hortsci.35.3.397d.

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There are two evolutionary pathways in the genus of Brassica, one is rapa/oleracea lineage and the other is nigra lineage. Based on the morphological characteristics and nuclear RAPD or RFLP markers, genus Raphanus was thought more closely related to nigra lineage than to rapa/oleracea lineage (Song et al., 1990; Thormann et al., 1994). RFLP data of both chloroplast and mitochondria revealed that Raphanus is more closely related to rapa/oleracea lineage (Palmer and Herbon, 1988; Warwick and Black, 1991; Pradhan et al., 1992). We have previously demonstrated that Raphanus sativus is more closel
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25

Pellan-Delourme, R., and M. Renard. "Cytoplasmic male sterility in rapeseed (Brassica napus L.): female fertility of restored rapeseed with "Ogura" and cybrids cytoplasms." Genome 30, no. 2 (1988): 234–38. http://dx.doi.org/10.1139/g88-040.

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The study of Brassica napus L. plants carrying restorer genes introgressed from radish (Raphanus sativus L.) showed that these genes ensured restoration of male fertility in rapeseed for all the male sterility-inducing cytoplasm studied, i.e., "Ogura"-type cytoplasm and that of four cybrids obtained by protoplast fusion. Plants with high levels of restored male fertility were obtained. However, the introduction of restorer genes was accompanied by a large decrease in seed set. Observations of embryo sacs inside the ovules and correlation between number of seeds per pod and percentage of octonu
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26

B. Ashirova, Zh, L. Е. Anuarova, N. Т. Berik, et al. "Photochemical Analysis of Food Species of the Cruciferous (Cabbage) Family." International Journal of Engineering & Technology 7, no. 4.38 (2018): 1065. http://dx.doi.org/10.14419/ijet.v7i4.38.27641.

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The article deals with several species of the cruciferous family (Cruciferae Juss.): headed cabbage (Brassica oleracea L.), turnip cabbage (Brassіs rapa L.), cultivated radish (Raphanus sativus L.), horseradish (Armoraciarusticana Gaerth.-Mey-Scherb.), Italian asparagus, or broccoli (Brassica Sylvestris L., or Brassica oleracea L.), and others. It has been determined how many micro- and macroelements, as well as fat- or water-soluble vitamins they contain. The phytochemical research has been conducted in the Food Safety and Quality Assessment Laboratory of the Almaty Technological University.
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27

Orlovskaya, T. V., A. V. Sedin, and M. Kh Malikova. "Carbohydrates from seeds of Raphanus sativus and Brassica napus." Chemistry of Natural Compounds 49, no. 2 (2013): 327–28. http://dx.doi.org/10.1007/s10600-013-0592-2.

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Han, Yikyeong, Juyeon Lee, Changmin Kim, Jinyoung Park, Minhee Lee, and Minjune Yang. "Uranium Rhizofiltration by Lactuca sativa, Brassica campestris L., Raphanus sativus L., Oenanthe javanica under Different Hydroponic Conditions." Minerals 11, no. 1 (2020): 41. http://dx.doi.org/10.3390/min11010041.

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Rhizofiltration experiments were conducted using uranium-contaminated groundwater and lettuce (Lactuca sativa), Chinese cabbage (Brassica campestris L.), radish (Raphanus sativus L.), and buttercup (Oenanthe javanica), which are commonly grown and consumed in South Korea. The results of the rhizofiltration experiments with artificial solutions with different initial uranium concentrations (18, 32, 84, 116, 173, and 263 μg/L) show that the uranium accumulation and bioconcentration factor (BCF) of plant roots increase with increasing uranium concentration in the groundwater. Among the four plant
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29

Stivers-Young, Lydia. "Growth, Nitrogen Accumulation, and Weed Suppression by Fall Cover Crops Following Early Harvest of Vegetables." HortScience 33, no. 1 (1998): 60–63. http://dx.doi.org/10.21273/hortsci.33.1.0060.

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Oats (Avena sativa L.), phacelia (Phacelia tanacetifolia Benth.), oilseed radish (Raphanus sativus L.), white senf mustard (Brassica hirta Moench), kale (Brassica oleracea L.), canola (Brassica napus L.), turnip (Brassica rapa L.), and yellow mustard (Brassica hirta Moench) were evaluated for their ability to grow, accumulate leachable N, and suppress winter annual weeds during the fall following early harvest of vegetables in the northeastern United States. Brassica and phacelia cover crops planted in late August and early September produced 3000-4000 kg·ha-1 in aboveground biomass, and took
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30

Parveen, Shazia, Abdul Hamid Wani, and Mohd Yaqub Bhat. "Effect of culture filtrates of pathogenic and antagonistic fungi on seed germination of some economically important vegetables." Brazilian Journal of Biological Sciences 6, no. 12 (2019): 133–39. http://dx.doi.org/10.21472/bjbs.061212.

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The subject of present study was to check whether the pathogenic fungi that were associated with different rot diseases of fruits and vegetables and the antagonistic fungal species produce extracellular growth regulating substances. For this present study healthy seeds of four economically important crop plants, viz. Solanum lycopersicum, Brassica rapa, Raphanus sativus and Trigonella melongena were selected. The results showed that all the pathogenic fungi except Fusarium solani decrease the germination percentage of the all seeds. Solanum lycopersicum seed germination was completely inhibite
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31

Eliseev, A. F., and T. M. Seredin. "Indian radish is a promising vegetable crop." Vegetable crops of Russia, no. 2 (June 30, 2010): 41–43. http://dx.doi.org/10.18619/2072-9146-2010-2-41-43.

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Diversification of cultural plants increases the range of fresh vegetables being consumed that makes the human's food healthier, enriched with vitamins, biologically active substances, mineral salts are of a great value to human's health. Indian radish (Raphanus sativus var.indicus Sinsk) is an annually growing plant belonging to Brassica family, and considered as new vegetable plant for Russia.
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32

Hirai, M. "MAPPING AND CLONING OF VARIOUS TRAITS IN BRASSICA AND RAPHANUS." Acta Horticulturae, no. 867 (June 2010): 103–6. http://dx.doi.org/10.17660/actahortic.2010.867.12.

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33

Andrade, Heloísa Monteiro de, Alexandre Horácio Couto Bittencourt, and Silvane Vestena. "Potencial alelopático de Cyperus rotundus L. sobre espécies cultivadas." Ciência e Agrotecnologia 33, spe (2009): 1984–90. http://dx.doi.org/10.1590/s1413-70542009000700049.

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Metabótitos secundários produzidos em algumas plantas podem provocar alterações no desenvolvimento de outras plantas ou até mesmo de outros organismos. Neste trabalho, objetivou-se identificar possíveis efeitos alelopáticos de extratos aquosos de folhas de Cyperus rotundus na germinação e no crescimento de plântulas de Brassica campestris, Brassica oleracea var. botrytis, Brassica oleracea var. capitata, Brassica oleracea var. italica, Brassica rapa, Lactuca sativa cv. Grand rapids, Lycopersicum esculentum e Raphanus sativus. Foram utilizadas sete concentrações do extrato aquoso (0, 10, 30, 50
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O’Farrell, Corynne, Tom Forge, and Miranda M. Hart. "Using Brassica Cover Crops as Living Mulch in a Vineyard, Changes over One Growing Season." International Journal of Plant Biology 14, no. 4 (2023): 1105–16. http://dx.doi.org/10.3390/ijpb14040081.

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Farmers hoping to manage cropping systems sustainably are turning to cover crops to help mitigate plant pathogens. Plants with biofumigant properties are used to control soil-borne pathogens in agricultural settings, especially in till systems, where the brassicas are incorporated into the soil as green manure or seed meal. The effect of these crops is not well studied in no-till systems; thus, it is hard to know if they are as effective as green manure. Whether or not these cover crops can effect changes during a single growth season has not yet been studied. This study compared the response
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KUNELIUS, H. T., J. B. SANDERSON, and P. R. NARASIMHALU. "EFFECT OF SEEDING DATE ON YIELDS AND QUALITY OF GREEN FORAGE CROPS." Canadian Journal of Plant Science 67, no. 4 (1987): 1045–50. http://dx.doi.org/10.4141/cjps87-140.

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Forage kale (Brassica oleracea L.), rape (B. napus L.), radish (Raphanus sativus L.), and Chinese cabbage (B. campestris sensulato L.) × stubble turnip (B. rapa L.) hybrid were seeded at monthly intervals between late-May and late-August over 3 yr. Kale was harvested in early November while rape, radish, and turnip hybrid were targeted for harvest 60–70 d after seeding. The dry matter yield of kale declined as the seeding dates were delayed. The primary growth of rape, radish and turnip hybrid was the same for May, June and July seedings, but seeding in August lowered the yields by 25–38%. The
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Nishio, T., A. Izumida, H. Hanzawa, and K. Sakamoto. "DEVELOPMENT OF S TESTER LINES OF BRASSICA OLERACEA, BRASSICA RAPA AND RAPHANUS SATIVUS AS GENETIC RESOURCES." Acta Horticulturae, no. 706 (April 2006): 141–44. http://dx.doi.org/10.17660/actahortic.2006.706.15.

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Chen, H. G., and J. S. Wu. "Characterization of fertile amphidiploid between Raphanus sativus and Brassica alboglabra and the crossability with Brassica species." Genetic Resources and Crop Evolution 55, no. 1 (2007): 143–50. http://dx.doi.org/10.1007/s10722-007-9223-8.

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YAMANAKA, Hisako, Yasuhisa KUGlNUKI, Tsuguo KANNO, and Takeshi NISHIO. "Efficient Production of Somatic Hybrids between Raphanus sativus and Brassica oleracea." Ikushugaku zasshi 42, no. 2 (1992): 329–39. http://dx.doi.org/10.1270/jsbbs1951.42.329.

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Guéritaine, G., S. Bazot, and H. Darmency. "Emergence and growth of hybrids between Brassica napus and Raphanus raphanistrum." New Phytologist 158, no. 3 (2003): 561–67. http://dx.doi.org/10.1046/j.1469-8137.2003.00755.x.

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Francois, L. E. "Effect of Excess Boron on Broccoli, Cauliflower, and Radish." Journal of the American Society for Horticultural Science 111, no. 4 (1986): 494–98. http://dx.doi.org/10.21273/jashs.111.4.494.

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Abstract The boron tolerance of broccoli (Brassica oleracea L. Italica Group), cauliflower (Brassica oleracea L. Botrytis Group), and radish (Raphanus sativus L.) was determined in large, outdoor sand cultures. Boron treatments were imposed by irrigation with culture solutions that contained 1.0, 4.0, 8.0, 12.0, 16.0, or 20.0 mg B·liter−1 for broccoli and cauliflower, and 1.0, 3.0, 6.0, 10.0, 13.0, or 16.0 mg B·liter−1 for radish. Relative yield was reduced 1.8%, 1.9%, and 1.4% with each unit (mg·liter−1) increase in soil solution B (Bsw) above 1.0, 4.0, and 1.0 mg B·liter−1 for broccoli, caul
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Ullah Lone*, Inayat, Anita Kumari, and Sajad Ahmad Khan. "Impact of Various Brassica species on The Developmental Response of Pieris brassicae (Linnaeus) (Lepidoptera: Pieridae), Its Extent of Damage, And Report of Its Biocontrol Agent In District Rajouri of Pir Panjal Region of Himalaya." Current Agriculture Research Journal 11, no. 2 (2023): 667–79. http://dx.doi.org/10.12944/carj.11.2.28.

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Cole crops are globally consumed as vegetables and are important sources of our dietary requirements, but they are infested by an array of pests, specifically the large white butterfly, Pieris brassicae (L). It is a critical global pest of cruciferous vegetable crops. We investigated the consequences of diverse cruciferous vegetables on the fitness of P. brassicae under laboratory conditions in 2021-22, to survive, develop, and reproduce under laboratory conditions, the extent of damage, and the report of the biocontrol agent, Cotesia glomerata (L). Under laboratory conditions, the effect of r
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42

Nava-Ruiz, Paulina, Ricardo Meraz-Álvarez, Jorge Valdez-Carrasco, Onésimo Chávez-López, and Néstor Bautista-Martínez. "Parasitoids of Delia planipalpis (Meigen) and Delia platura (Stein) (Diptera, Anthomyiidae) in Mexico." ZooKeys 1046 (June 21, 2021): 177–87. http://dx.doi.org/10.3897/zookeys.1046.64405.

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Among the insect pests that affect crucifer crops in Mexico are Delia planipalpis (Meigen) and D. platura (Stein). They are a threat to the production of these vegetables since the damage they cause directly and indirectly affects yield, quality, and commercialization of these crops. Nevertheless, the existence of natural enemies of these dipterans is still unknown. It is fundamental to determine which parasitoids or predators can be considered possible biological control agents in an integrated pest management program. The sampling sites were located in Guanajuato, Puebla, and the State of Me
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Nava-Ruiz, Paulina, Ricardo Meraz-Álvarez, Jorge Valdez-Carrasco, Onésimo Chávez-López, and Néstor Bautista-Martínez. "Parasitoids of Delia planipalpis (Meigen) and Delia platura (Stein) (Diptera, Anthomyiidae) in Mexico." ZooKeys 1046 (June 21, 2021): 177–87. https://doi.org/10.3897/zookeys.1046.64405.

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Among the insect pests that affect crucifer crops in Mexico are Delia planipalpis (Meigen) and D. platura (Stein). They are a threat to the production of these vegetables since the damage they cause directly and indirectly affects yield, quality, and commercialization of these crops. Nevertheless, the existence of natural enemies of these dipterans is still unknown. It is fundamental to determine which parasitoids or predators can be considered possible biological control agents in an integrated pest management program. The sampling sites were located in Guanajuato, Puebla, and the State of Me
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L. L. Ntsoane, Manyasha, Vimbainashe E. Manhivi, Tinotenda Shoko, Faith Seke, Martin M. Maboko, and Dharini Sivakumar. "The Phytonutrient Content and Yield of Brassica Microgreens Grown in Soilless Media with Different Seed Densities." Horticulturae 9, no. 11 (2023): 1218. http://dx.doi.org/10.3390/horticulturae9111218.

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Microgreens are increasingly valued by consumers for their phytonutritional benefits. There is limited information to growers on the influence of growth media and seed density on antioxidant properties of Brassica microgreens. Therefore, the study was conducted to determine the effect of seedling media (Hygromix, Promix, and TS1) and seed density (4, 8, and 12 seeds per seed cavity) on morphological parameters, yield, color, antioxidant components, and their activities in radish (Raphanus sativus), cabbage (Brassica oleracea), and rocket (Eruca sativa) microgreens. Fourteen days after seeding,
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Kawakubo, Shusuke, Fangluan Gao, Shifang Li, et al. "Genomic analysis of the brassica pathogen turnip mosaic potyvirus reveals its spread along the former trade routes of the Silk Road." Proceedings of the National Academy of Sciences 118, no. 12 (2021): e2021221118. http://dx.doi.org/10.1073/pnas.2021221118.

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Plant pathogens have agricultural impacts on a global scale and resolving the timing and route of their spread can aid crop protection and inform control strategies. However, the evolutionary and phylogeographic history of plant pathogens in Eurasia remains largely unknown because of the difficulties in sampling across such a large landmass. Here, we show that turnip mosaic potyvirus (TuMV), a significant pathogen of brassica crops, spread from west to east across Eurasia from about the 17th century CE. We used a Bayesian phylogenetic approach to analyze 579 whole genome sequences and up to 71
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Stivers-Young, Lydia. "Evaluating Fall Cover Crops Following Early Harvested Vegetables." HortScience 30, no. 4 (1995): 807B—807. http://dx.doi.org/10.21273/hortsci.30.4.807b.

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Vegetable growers in the northeastern United States who want to use cover crops are limited by the relatively short growing season and by a lack of cover crop species options. Seven cover crops that winter-kill under NE US conditions were evaluated in on-farm trials for their suitability for following early harvested vegetables. Plots of oilseed radish (Raphanus sativus), white senf mustard (Brassica hirta), phacelia (Phacelia tanacetifolia), oats (Avena sativa), and a bare control were planted on 25 Aug. and 8 Sept. 1993, following a lettuce crop. In the early planting, oilseed radish, white
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Bang, Woo Sang, Daisuke lida, Yukio Kaneko, and Yasuo Matsuzawa. "Production of New Intergeneric Hybrids between Raphanus sativus and Brassica Wild Species." Ikushugaku zasshi 47, no. 3 (1997): 223–28. http://dx.doi.org/10.1270/jsbbs1951.47.223.

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Kaneko, Yano, Bang, and Matsuzawa. "Production and characterization of Raphanus sativus-Brassica rapa monosomic chromosome addition lines." Plant Breeding 120, no. 2 (2001): 163–68. http://dx.doi.org/10.1046/j.1439-0523.2001.00576.x.

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Wang, Y. P., K. Sonntag, E. Rudloff, I. Groeneveld, J. Gramenz, and C. C. Chu. "Production and characterization of somatic hybrids between Brassica napus and Raphanus sativus." Plant Cell, Tissue and Organ Culture 86, no. 2 (2006): 279–83. http://dx.doi.org/10.1007/s11240-006-9118-y.

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Umar, Muhammad, Tahir Farooq, Robert S. Tegg, Tamilarasan Thangavel, and Calum R. Wilson. "Genomic Characterisation of an Isolate of Brassica Yellows Virus Associated with Brassica Weed in Tasmania." Plants 11, no. 7 (2022): 884. http://dx.doi.org/10.3390/plants11070884.

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Brassica yellows virus (BrYV), a tentative species in the genus Polerovirus, of the Solemoviridae family, is a phloem-restricted and aphid-transmitted virus with at least three genotypes (A, B, and C). It has been found across mainland China, South Korea, and Japan. BrYV was previously undescribed in Tasmania, and its genetic variability in the state remains unknown. Here, we describe a near-complete genome sequence of BrYV (genotype A) isolated from Raphanus raphanistrum in Tasmania using next-generation sequencing and sanger sequencing of RT-PCR products. BrYV-Tas (GenBank Accession no. OM46
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