Academic literature on the topic 'Raphanus brassica'

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Journal articles on the topic "Raphanus brassica"

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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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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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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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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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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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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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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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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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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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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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Dissertations / Theses on the topic "Raphanus brassica"

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Brown, Angela Philip. "Pollen, embryo and endosperm development following cross-pollination within and between the crop species Brassica campestris, Brassica oleracea, Brassica napus and Raphanus sativus." Thesis, University of Edinburgh, 1985. http://hdl.handle.net/1842/12858.

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Pellan-Delourme, Régine. "Etude de deux systemes de sterilite male genocytoplasmique introduits chez le colza (brassica napus l. ) par croisements intergeneriques avec raphanus et diphotaxis." Rennes 1, 1986. http://www.theses.fr/1986REN10003.

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Pellan-Delourme, Régine. "Etude de deux systèmes de stérilité mâle génocytoplasmique introduits chez le Colza (Brassica napus L.) par croisements intergénériques avec Raphanus et Diplotaxis." Grenoble 2 : ANRT, 1986. http://catalogue.bnf.fr/ark:/12148/cb37600358h.

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BARANGER, ALAIN. "Evaluation en conditions naturelles des risques de flux d'un transgene d'un colza (brassica napus l. ) resistant a un herbicide a une espece adventice (raphanus raphanistrum l. )." Paris 11, 1995. http://www.theses.fr/1995PA112316.

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Les frequences d'hybridation interspecifique entre differentes lignees et hybrides male-steriles transgeniques de colza (brassica napus l, aacc 2n=38) avec des populations de ravenelle (raphanus raphanistrum l, rrrr 2n=18) ont ete evaluees en conditions naturelles. Les graines recoltees sur les genotypes de colza montrant un dimorphisme de taille, elles ont ete tamisees. Les grosses graines etaient toutes du colza. 72 a 100 pourcent des petites graines se sont averees etre des hybrides triploides acrr 2n=28, et 0 a 12 pourcent des amphidiploides aaccrrrr 2n=56. Des differences significatives d
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Liu, Yongbo. "Conséquences écologiques et évolutives du flux de gènes entre Brassica napus transgénique et ses apparentés sauvages." Phd thesis, Université de Bourgogne, 2010. http://tel.archives-ouvertes.fr/tel-00584017.

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Les conséquences des flux de gènes et de l'introgression entre les cultures transgéniques et leurs apparentés sauvages sont encore au cœur des débats associés à la commercialisation des plantes génétiquement modifiées. J'ai développé mon étude sur les conséquences écologiques et évolutives du flux de gènes entre le colza (Brassica napus) et ses apparentés, la moutarde brune sauvage (B. juncea) et la ravenelle (Raphanus raphanistrum), en réalisant une série d'expériences en serre, au jardin et au champ à Beijing et à Dijon. En premier, j'ai présenté une revue synthétique de la littérature publi
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Holmén, Bränn Kristina. "Pollination processes - maternal and offspring performance." Doctoral thesis, Stockholm University, Department of Botany, 2007. http://urn.kb.se/resolve?urn=urn:nbn:se:su:diva-6709.

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<p>Pollination is one of the most important factors determining the reproductive success of plants. This thesis examines processes associated to varying pollination, with focus on plant responses. The first aim was to examine the possibility and constraints for short-term evolution of flower size in <i>Raphanus raphanistrum</i>. The results showed that there exists a possibility for pollinator-mediated short-term evolution of flower size in the study species. Flower size was strongly correlated to plant size. Since flower size cannot evolve separately from plant size, this correlation may cons
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Guerrier, Gilles. "Recherche de tests physiologiques de vigueur germinative en milieu NaCl." Grenoble 2 : ANRT, 1986. http://catalogue.bnf.fr/ark:/12148/cb375980647.

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Kleier, Catherine. "Responses of Raphanus sativa L. and Brassica rapa L. to ozone and modified root temperature." Thesis, 1996. http://hdl.handle.net/1957/34076.

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Ngoasheng, Matsobane Alpheus. "Effect of planting dates and cutting stages on raphanus sativus and brassica rapa in contribution of fodder flow planning." Thesis, 2014. http://hdl.handle.net/10386/1282.

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Thesis (M.A. Agricultural Administration (Pasture Science)) -- University of Limpopo, 2014<br>In the summer rainfall areas of South Africa small scale farmers, as well as commercial farmers experience low animal production due to a lack of good quality roughage. The nutritional value of the rangeland cannot maintain livestock during autumn and winter. Producing winter fodder could be expensive and literature showed that planting fodder radish and turnip might be a cheap relative option (not in sweet veld). Winter supplementation contributes largely to high input costs in livestock production,
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Hurst, Michael James. "Intergeneric hybrids designed to transfer restoration of male fertility from radish (Raphanus sativus) to rape (Brassica napus) with the ogu male sterile cytoplasm and the effect of elevated temperatures on seed production from intergeneric crosses." 1985. http://hdl.handle.net/1993/28892.

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Books on the topic "Raphanus brassica"

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International Board for Plant Genetic Resources. and Commission of the European Communities., eds. Descriptors for Brassica and Raphanus. IBPGR, 1990.

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Lelivelt, Cilia L. C. Introduction of beet cyst nematode resistance from Sinapis alba L. and Raphanus sativus L. into Brassica napus L. (oil-seed rape) through sexual and somatic hybridization. [s.n.], 1993.

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Verma, P. R. Alternaria brassicae (Berk.) Sacc., A. brassicicola (Schwein.) Wiltsh. and A. raphani Groves and Skolko: Introduction, bibliography and subject index. Agriculture Canada, Research Branch, 1993.

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Brassica and Raphanus. International Plant Genetics Research Institute, 1990.

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Kleier, Catherine. Responses of Raphanus sativa L. and Brassica rapa L. to ozone and modified root temperature. 1996.

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Dong, Fugui. Analysis of mitochondrial cox2 genes from Brassica campestris and Raphanus sativus, and evolution of the cox2i1 intron in vascular plants. 1997.

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Book chapters on the topic "Raphanus brassica"

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Sakai, T., and J. Imamura. "Somatic Hybridization Between Radish (Raphanus sativus) and Rapeseed (Brassica napus)." In Somatic Hybridization in Crop Improvement I. Springer Berlin Heidelberg, 1994. http://dx.doi.org/10.1007/978-3-642-57945-5_21.

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Muruhan, Sridevi, Subalashmi Elumalai, Deivanai Palanirajan, Elanchezian Elangovan, Aravind Selvaraj, and Nirmala Chockalingam. "In Silico Homology Modeling to Identify the Anti-Inflammatory Proteins from Raphanus sativus and Brassica oleracea." In Computational Biology in Drug Discovery and Repurposing. Apple Academic Press, 2024. http://dx.doi.org/10.1201/9781003455424-20.

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Namai, Hyoji, and Ryo Ohsawa. "Evidence for Non-random Seed Setting of Ovules in the Pod of the Cruciferous Plants Brassica juncea and Raphanus sativus." In Angiosperm Pollen and Ovules. Springer New York, 1992. http://dx.doi.org/10.1007/978-1-4612-2958-2_70.

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Lee, Soo-Seong, Jiha Kim, Jin Hoe Huh, Hyun Hee Kim, and Jongkee Kim. "Perspective Chapter: Creation and Evolution of Intergeneric Hybrids between Brassica rapa and Raphanus sativus." In Brassica - Recent Advances [Working Title]. IntechOpen, 2022. http://dx.doi.org/10.5772/intechopen.105695.

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Although research has been conducted on intergeneric hybridization between Brassica and Raphanus, much of it remains unpublished. We have acquired numerous Brassica rapa ssp. pekinensis (kimchi cabbage) and R. sativus var. major (“big root radish”) hybrids, originally classified as intergeneric hybrids and named “baechumu” in 1995. A cultivar was identified BB#12, (renamed BB#1 for registration) in baemoochae following stabilization via a microspore mutation in 2006. Numerous hybrids were created for various purposes; some were sterile when self-pollinated but fertile in crosses with other cul
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Conference papers on the topic "Raphanus brassica"

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Спивак, В. В. "USING THE METHOD OF EMBRYOCULTURE TO OBTAIN INTERSPECIFIC HYBRIDS BRASSICA × RAPHANUS." In Биотехнология в растениеводстве, животноводстве и сельскохозяйственной микробиологии. Crossref, 2021. http://dx.doi.org/10.48397/arriab.2021.21.xxi.077.

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Отдаленная гибридизация – один из методов селекции для решения ключевых проблем современного растениеводства, позволяющий создать генотипы с уникальным набором хозяйственно-ценных признаков. Его использование сопряжено с трудностями по сохранению полученных объектов в результате их гибели на ранних этапах развития. Применение культуры изолированных зародышей для преодоления проблемы гибели зародыша при межвидовой гибридизации широко применяется в селекции различных культур. Remote hybridization is one of the breeding methods for solving the key problems of modern crop production, which makes i
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Маманазарова, К. С., та М. Б. Турабоев. "Первые находка Alternaria brassicae Sacc. на сельскохозяйственных культурах Узбекистана". У III молодёжная всероссийская научная конференция с международным участием «PLANTAE & FUNGI». Botanical Garden-Institute FEB RAS, 2023. http://dx.doi.org/10.17581/paf2023.56.

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Увеличение сельскохозяйственного производства необходимо для обеспечения глобальной продовольственной безопасности и продовольствия для растущего населения. В мире 68 % потерь сельскохозяйственной продукции приходится на различные вредители и болезни (микробные болезни - 16 %, животные и насекомые - 18 %, сорняки - 34 %, патогенные грибы - 70-80 %) [1]. Учитывая, что Узбекистан является регионом, специализирующимся на агрокультуре, основная доля потребляемых сельскохозяйственных продуктов приходится на территорию республики. В проведенных исследованиях 2021-2022 гг., хозяйственно важных культу
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Мурзина, Э. Р., and С. Г. Монахос. "INTROGRESSION OF A FERTILITY RESTORER GENE FROM RAPHANUS SATIVUS L. INTO BRASSICA NAPUS L. BY REMOTE HYBRIDIZATION." In Биотехнология в растениеводстве, животноводстве и сельскохозяйственной микробиологии. Crossref, 2022. http://dx.doi.org/10.48397/arriab.2022.22.xxii.021.

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Рапс – одна из трех важнейших масличных культур, выращиваемых в России. По своим характеристикам рапсовое масло не уступает оливковому маслу. По данным Росстата за прошедшие 10 лет посевные площади, занятые этой культурой в России увеличиваются, что связанно с государственной поддержкой этой отрасли, а также высокой маржинальностью рапсового масла. Повышение урожайности рапса связанно прежде всего с использованием гибридных семян, так в прошедшем году больше 50% площадей были засеяны гибридными семенами. На осень 2022 году в Российском государственном реестре селекционных достижений не зарегис
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Bernate, Ilze, and Martins Sabovics. "Research on germinated wheat grain, broccoli, alfalfa, radish and hemp seeds microbiological safety." In Research for Rural Development 2021 : annual 27th International scientific conference proceedings. Latvia University of Life Sciences and Technologies, 2021. http://dx.doi.org/10.22616/rrd.27.2021.013.

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For a long time, germinated seeds have been used in food as a healthy product with high nutritional value and as a decor for exquisite dishes today. However, there have been many foodborne outbreaks in Europe, the United States, and other parts of the world associated with pathogens contamination of sprouts. These outbreaks pose a constant challenge to the entire sprouts industry. The aim of this study was to determine the presence of Shiga toxin-producing Escherichia coli (STEC), Salmonella spp., and potentially pathogenic bacteria in germinated grains and seeds intended for industrial food p
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