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1

Talybov, T., P. Fatullayev, and T. Pashayev. "Study of perspective beer crops in conditions of Nakhchivan autonomous republic of Azerbaijan." Bulletin of Science and Practice, no. 11 (November 13, 2017): 119–25. https://doi.org/10.5281/zenodo.1048322.

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The solution of the problem of fodder and food vegetable protein in the Nakhchivan Autonomous Republic of Azerbaijan is an urgent task. One of the most important sources for solving this problem is the study of different varieties of basic leguminous plants. The purpose of the selection work of the laboratory "Grain, Legumes and Technical Cultures" of the Institute of Bioresources of the Nakhchivan Branch of the NAS of Azerbaijan is the creation of a mutually complementary set of adapted varieties for the Autonomous Republic. During 2017, we studied 25 white seed varieties of chickpeas (Cicer
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2

Basch, Ethan, Catherine Ulbricht, Michelle Harrison, et al. "Alfalfa (Medicago sativa L.)." Journal Of Herbal Pharmacotherapy 3, no. 2 (2003): 69–90. http://dx.doi.org/10.1300/j157v03n02_09.

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3

Blondon, François, Dominique Marie, Spencer Brown, and Adam Kondorosi. "Genome size and base composition in Medicago sativa and M. truncatula species." Genome 37, no. 2 (1994): 264–70. http://dx.doi.org/10.1139/g94-037.

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The genome size (1C value) and base composition of 14 ecotypes of two species of tetraploid and diploid Medicago have been assessed by flow cytometry. These parameters vary both between and within species. The diploid annual Medicago truncatula Gaertn. had the smallest genome of the group studied (which also covered M. sativa L. subsp. sativa, M. sativa L. subsp. caerulea (Less. ex Ledeb.) Schmalh., M. sativa L. subsp. quasifalcata Sinsk., M. sativa L. subsp. × varia (Martyn) Arcangeli; however, its ecotypes revealed substantial intraspecific variation. The smallest M. truncatula genome observ
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4

Hambakodu, Marselinus, Yessy Tamu Ina, and Ferdy A. J. Jutalo. "Pengaruh Pemberian Pupuk Bokashi Feses Sapi Sumba Ongole terhadap Pertumbuhan Tanaman Alfalfa (Medicago sativa L.)." Pastura 12, no. 2 (2023): 101. http://dx.doi.org/10.24843/pastura.2023.v12.i02.p06.

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 ABSTRAK 
 Alfalfa (Medicago sativa L.) merupakan salah satu leguminosa dengan kandungan nutrisi tinggi dengan tingkat palatabilitas yang baik pada ternak ruminansia. Penelitian ini bertujuan untuk mengevaluasi pengaruh pemberian pupuk bokashi feses sapi Sumba Ongole terhadap pertumbuhan dan nilai biologi tanaman alfalfa (Medicago sativa L.). Bahan yang digunakan dalam penelitian adalah pupuk bokashi yang tersusun atas feses sapi Sumba Ongole kering, gulma Chromolaena ordorata, sekam padi bakar, gula lontar, dan EM4. Penelitian menggunakan metode eksperimental rancangan acak lengkap
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5

Malysheva, N. Yu, N. L. Isaeva, E. A. Gubanova, and L. L. Malyshev. "EVALUATION OF COMMERCIAL TRAITS IN THE ACCESSIONS OF MEDICAGO SATIVA L. FROM ASIA MINOR." PROCEEDINGS ON APPLIED BOTANY, GENETICS AND BREEDING 179, no. 4 (2018): 82–90. http://dx.doi.org/10.30901/2227-8834-2018-4-82-90.

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6

Ержанова, Сакыш, Серик Абаев, Ғалиолла Мейірман та ін. "СОЗДАНИЕ ИСХОДНЫХ ФОРМ ДЛЯ СЕЛЕКЦИИ МЕТОДОМ БЕККРОССИРОВАНИЯ У МЕЖВИДОВЫХ ГИБРИДОВ MEDICAGO FALCATE L. С MEDICAGO SATIVA L." Izdenister natigeler, № 2-1 (special) (29 червня 2024): 367–79. http://dx.doi.org/10.37884/2-1-2024/576.

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В связи климатическим изменением и дефицита воды возникает необходимость создания засухоустойчивых и маловодопотребляемых на единицу продукции сортов люцерны. Она является наиболее востребованной культурой в кормопроизводстве Казахстана. Во флоре Казахстана встречаются 7 диких видов люцерны. Среди них более распространенным Medicago falcata L.- засухоустойчивый вид с многочисленными экотипами. Экотипы этого вида участвует в беккроссных скрещиваниях с культурной люцерной M.sativa L. в качестве источника для усиления адаптационного потенциала культур в условиях дефицита воды в регионе. Настоящая
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7

Spaner and A. G. Todd, D. "Farmer-directed on-farm experimentation examining the impact of companion planting barley and oats on timothyalfalfa forage establishment in central Newfoundland." Canadian Journal of Plant Science 84, no. 1 (2004): 217–21. http://dx.doi.org/10.4141/p03-020.

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Oats (Avena sativa L.) or barley (Hordeum vulgare L.) sown at increasing seeding rates of 23, 45 and 68 kg ha-1 with a timothy (Phleum pratense L.)-alfalfa (Medicago sativa L.) mixture (harvested at cereal soft dough) resulted in increasing forage yields containing decreasing alfalfa, crude protein, P and Ca percentage in the planting year. Barley out-yielded oats by 11% in the planting year. Oats or barley sown at seeding rates up to 68 kg ha-1 do not impede underseeded forage establishment or forage production in the subsequent year in central Newfoundland. The implications of farmer-directe
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8

Small, Ernest. "Taxonomy of glandular wild alfalfa (Medicago sativa)." Canadian Journal of Botany 64, no. 9 (1986): 2125–29. http://dx.doi.org/10.1139/b86-280.

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Yellow-flowered plants of Medicago sativa L. sensu lato with coiled pods covered with glandular trichomes are treated as M. sativa subsp. glomerata (Balbis) Rouy, and those with yellow flowers and uncoiled glandular pods as M. sativa subsp. falcata (L.) Arcangeli var. viscosa (Reichenb.) Posp. Synonymy of these and common hybrid forms is given.
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9

HANNA, M. R., and H. C. HUANG. "BARRIER ALFALFA." Canadian Journal of Plant Science 67, no. 3 (1987): 827–30. http://dx.doi.org/10.4141/cjps87-116.

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Barrier is the first Canadian cultivar of alfalfa (Medicago sativa L.) developed with resistance to verticillium wilt disease. It also has very good resistance to bacterial wilt. Barrier is adapted to the irrigated areas in Southern Alberta and British Columbia where these diseases are prevalent.Key words: Medicago sativa L., alfalfa, cultivar description, verticillium wilt, bacterial wilt
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10

Bray, RA, and JAG Irwin. "Medicago sativa L. (lucerne) cv. Quadrella." Australian Journal of Experimental Agriculture 32, no. 2 (1992): 263. http://dx.doi.org/10.1071/ea9920263.

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11

Waterhouse, DB, and RW Williams. "Medicago sativa L. (lucerne) cv. Aquarius." Australian Journal of Experimental Agriculture 33, no. 2 (1993): 257. http://dx.doi.org/10.1071/ea9930257.

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12

Williams, RW, and RR Young. "Medicago sativa L. (lucerne) cv. Genesis." Australian Journal of Experimental Agriculture 36, no. 4 (1996): 521. http://dx.doi.org/10.1071/ea9960521.

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13

Hall, J. W., and W. Majak. "Effect of time of grazing or cutting and feeding on the incidence of alfalfa bloat in cattle." Canadian Journal of Animal Science 75, no. 2 (1995): 271–73. http://dx.doi.org/10.4141/cjas95-041.

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More bloat occurred after early than after late morning feeding. Cattle were either grazing or fed cut alfalfa (Medicago sativa L.) for 4 h once a day. Rumen chlorophyll concentrations were higher before the early feeding. There were no consistent differences in plant DM, ADF, NDF, chlorophyll or total or soluble N. Key words: Cattle, bloat, legumes, Medicago sativa L.
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14

Molor, Adiyasuren, Altantsetseg Khajidsuren, Uuganzaya Myagmarjav, and Enkhchimeg Vanjildorj. "COMPARATIVE ANALYSIS OF DROUGHT TOLERANCE OF MEDICAGO L. PLANTS UNDER STRESSED CONDITIONS." Mongolian Journal of Agricultural Sciences 19, no. 3 (2017): 32–40. http://dx.doi.org/10.5564/mjas.v19i3.733.

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As a perennial forage crop, alfalfa (Medicago L.) can be cultivated in marginal lands and has a high yield and good quality of high-protein content. Alfalfa has deep vertical roots; this species is able to absorb even depth waters about 5 m depth and more. This advantage saves plant’s life in long term drought. The objective of this study was to compare the performance of drought stress during germination and growth stage of 2 species (Medicago sativa, Medicago falcata) and 2 varieties (Mongolian Medicago varia Marthz var.Burgaltai and Inner Mongolian Medicago varia Martyn var.Nutag Belcheer-2
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15

Zhang, Xue Kun, and Chun Hua Zhao. "Experimental Research on Cracking Resistance of Alfalfa Seed." Applied Mechanics and Materials 488-489 (January 2014): 1165–68. http://dx.doi.org/10.4028/www.scientific.net/amm.488-489.1165.

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The compression properties of three varieties of alfalfa seeds, such as Medicago sativa L. cv. Gannong No.3, Medicago sativa L. Longdong and Medicago sativa L. cv. Golden Empress, are studied by extrusion experiments using SANS universal material testing machine. The results of Longdong alfalfa seed show that the fracture load has relation with shape and size of the alfalfa seeds. For both of ellipsoidal seed and arched seed, the fracture load of single seed is about 19N to 30N. The fracture load increases linearly with the thickness of plump seed with the ratio of thickness to width greater t
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16

McCoy, T. J. "Interspecific hybridization of Medicago sativa L. and M. rupestris M. B. using ovule–embryo culture." Canadian Journal of Genetics and Cytology 27, no. 2 (1985): 238–45. http://dx.doi.org/10.1139/g85-035.

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An ovule–embryo culture method was used to produce the first interspecific hybrids between alfalfa (Medicago sativa L.) and Medicago rupestris M. B. Culture of fertilized ovules from the cross diploid (2n = 2x = 16) M. sativa (jpjp) × diploid (2n = 2x = 16) M. rupestris began 14 days after pollination. After 5 days in culture, the interspecific hybrid embryo was removed and transferred to fresh medium, where development into a plant occurred. Forty-six M. sativa – M. rupestris F1 hybrids have been recovered using this technique. All but one of the 46 F1 hybrids were diploid (2n = 2x = 16); the
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17

Jaksic, Snezana, Savo Vuckovic, Sanja Vasiljevic, et al. "Accumulation of heavy metals in Medicago sativa L. and Trifolium pratense L. at the contaminated fluvisol." Chemical Industry 67, no. 1 (2013): 95–101. http://dx.doi.org/10.2298/hemind1203302045j.

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Recently, heavy metals concentrations increased in some agricultural areas due to the consequences of anthropogenic impacts. The aim of this study was to determine the level of heavy metals (As, Cr, Ni and Pb) in Medicago sativa L. and Trifolium pratense L. grown on fluvisol, in order to obtain information on safety of these nutrients. The total content of Pb, As, Cr and Ni in the samples of fluvisol was above the maximum allowable amount. The content of heavy metals in Medicago sativa L. and Trifolium pratense L. was below the critical and toxic concentrations in all samples originating from
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18

Kumar, T., A. K. Bao, Z. Bao, F. Wang, L. Gao, and S. M. Wang. "The progress of genetic improvement in alfalfa (Medicago sativa L.)." Czech Journal of Genetics and Plant Breeding 54, No. 2 (2018): 41–51. http://dx.doi.org/10.17221/46/2017-cjgpb.

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Alfalfa (Medicago sativa L.) is a perennial and outcrossing species, widely grown as a forage legume for hay, pasture and silage. The genetic engineering approaches involve the transfer of useful or novel gene(s) into alfalfa to improve desired traits. The recent development of genetic engineering is extensively applied to basic and applied research for alfalfa improvement, including improvement of herbicide resistance, reinforcement of the resistance to biotic and abiotic stresses, production of novel compounds, improved yield for industrial and/or pharmaceutical proteins and renewable energy
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19

Gafarova, B., and A. Mammadova. "Indicative properties study of Medicago sativa L. culture under the oil-polluted condition." Bulletin of Science and Practice 5, no. 2 (2019): 19–25. http://dx.doi.org/10.33619/2414-2948/39/03.

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For indicative properties study of plant culture with Medicago sativa L. was made an effort in oil-polluted areas under the Abcheron condition. With this purpose the sprouting ability of the plant seeds treated by different density 1%; 5%; 10%; 15%; 50%. Crude oil was determined, and the morphometric measurements of the inducted seeds were performed in their ontogenesis first stage.
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20

BOSTAN, Cristian, Nicolae Marinel HORABLAGA, Dorin RECHIŢEAN, et al. "NORMALIZED DIFFERENCE VEGETATION INDEX (NDVI) IN THE EVALUATION OF PHENOLOGICAL DYNAMICS IN DACTYLIS GLOMERATA L. AND MEDICAGO SATIVA L." LIFE SCIENCE AND SUSTAINABLE DEVELOPMENT 3, no. 1 (2022): 106–12. http://dx.doi.org/10.58509/lssd.v3i1.174.

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The fodder species Medicago sativa L. and Dactylis glomerata L. are appreciated for their yield, due to their high perenniality and the large number of scythes in a year, as well as for their different use. In recent years, fodder crops and grasslands have been given a special place in precision agriculture, and by using remote sensing and implicitly the Normalized Difference Vegetation Index (NDVI), the vegetation status of crops is appreciated. In this context, the paper aims to capture the time dynamics, in different phenological stages, of the species Dactylis glomerata L. and Medicago sat
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21

BOSTAN, Cristian, Nicolae Marinel HORABLAGA, Dorin RECHITEAN, et al. "NORMALIZED DIFFERENCE VEGETATION INDEX (NDVI) IN THE EVALUATION OF PHENOLOGICAL DYNAMICS IN DACTYLIS GLOMERATA L. AND MEDICAGO SATIVA L." LIFE SCIENCE AND SUSTAINABLE DEVELOPMENT 3, no. 1 (2022): 106–12. https://doi.org/10.58509/dbmqf451.

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The fodder species Medicago sativa L. and Dactylis glomerata L. are appreciated for their yield, due to their high perenniality and the large number of scythes in a year, as well as for their different use. In recent years, fodder crops and grasslands have been given a special place in precision agriculture, and by using remote sensing and implicitly the Normalized Difference Vegetation Index (NDVI), the vegetation status of crops is appreciated. In this context, the paper aims to capture the time dynamics, in different phenological stages, of the species Dactylis glomerata L. and Medicago sat
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22

Tani, Eleni, Efi Sarri, Maria Goufa, et al. "Seedling Growth and Transcriptional Responses to Salt Shock and Stress in Medicago sativa L., Medicago arborea L., and Their Hybrid (Alborea)." Agronomy 8, no. 10 (2018): 231. http://dx.doi.org/10.3390/agronomy8100231.

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Salinity is a major limiting factor in crop productivity worldwide. Medicago sativa L. is an important fodder crop, broadly cultivated in different environments, and it is moderately tolerant of salinity. Medicago arborea L. is considered a stress-tolerant species and could be an important genetic resource for the improvement of M. sativa’s salt tolerance. The aim of the study was to evaluate the seedling response of M. sativa, M. arborea, and their hybrid (Alborea) to salt shock and salt stress treatments. Salt treatments were applied as follows: salt stress treatment at low dose (50 mM NaCl)
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23

Wang, Dan, Muhammad Khurshid, Zhan Min Sun, Yi Xiong Tang, Mei Liang Zhou, and Yan Min Wu. "Genetic Engineering of Alfalfa (Medicago sativa L.)." Protein & Peptide Letters 23, no. 5 (2016): 495–502. http://dx.doi.org/10.2174/0929866523666160314152618.

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24

Dalkin, Karen, Robert Edwards, Brent Edington, and Richard A. Dixon. "Stress Responses in Alfalfa (Medicago sativa L.)." Plant Physiology 92, no. 2 (1990): 440–46. http://dx.doi.org/10.1104/pp.92.2.440.

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25

Jorrin, Jesus, and Richard A. Dixon. "Stress Responses in Alfalfa (Medicago sativa L.)." Plant Physiology 92, no. 2 (1990): 447–55. http://dx.doi.org/10.1104/pp.92.2.447.

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26

Kessmann, Helmut, Robert Edwards, Paul W. Geno, and Richard A. Dixon. "Stress Responses in Alfalfa (Medicago sativa L.)." Plant Physiology 94, no. 1 (1990): 227–32. http://dx.doi.org/10.1104/pp.94.1.227.

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27

Choudhary, Arvind D., Christopher J. Lamb, and Richard A. Dixon. "Stress Responses in Alfalfa (Medicago sativa L.)." Plant Physiology 94, no. 4 (1990): 1802–7. http://dx.doi.org/10.1104/pp.94.4.1802.

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28

Gowri, Ganesan, Robert C. Bugos, Wilbur H. Campbell, Carl A. Maxwell, and Richard A. Dixon. "Stress Responses in Alfalfa (Medicago sativa L.)." Plant Physiology 97, no. 1 (1991): 7–14. http://dx.doi.org/10.1104/pp.97.1.7.

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29

Hernández-Fernández, M. M., and B. R. Christie. "Inheritance of somatic embryogenesis in alfalfa (Medicago sativa L.)." Genome 32, no. 2 (1989): 318–21. http://dx.doi.org/10.1139/g89-447.

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To study the inheritance of somatic embryogenesis in alfalfa (Medicago sativa L.), three alfalfa genotypes were self-pollinated and intercrossed. A70-34 is a highly embryogenic genotype; R3 produced callus but not embryos; and MK does not produce callus. Callus production was controlled by one locus with complete dominance. In a survey of 107 alfalfa genotypes, the dominant and recessive alleles were present in equal frequencies. Embryogenesis among those plants producing callus was controlled by two complementary loci with additivity within each locus. The suggested designations for the two g
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30

Sroka, Zbigniew, Marian Jurzysta, Joanna Tylcz, and Halina Rządkowska-Bodalska. "Stimulation of Pancreatic Lipase Activity by Saponins Isolated from Medicago sativa L." Zeitschrift für Naturforschung C 52, no. 3-4 (1997): 235–39. http://dx.doi.org/10.1515/znc-1997-3-415.

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Abstract Saponins isolated from Medicago sativa L. appeared to stimulate lipolytic activity and did not influence amylolytic or proteolytic activity of Neopancreatinum (extract of pancreatic enzymes: lipase, proteases and amylases). Saponins isolated from the aerial part of Medicago sativa L. were demonstrated to stimulate lipase activity more effectively than saponins sepa­ rated from the root of this plant. When saponins were treated with 0.02 m HC1 at 37 °C for 1 hour their lipase stimulation ability did not change. The saponins stimulated Neopancreatinum lipolytic activity more in­ tensive
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31

Al-Ashbal, H. N., K. R. Al-Joboury, and S. J. Jalil. "Insects Infestation for Plants of Fabaceae in Different Areas in Iraq." IOP Conference Series: Earth and Environmental Science 1449, no. 1 (2025): 012057. https://doi.org/10.1088/1755-1315/1449/1/012057.

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Abstract In this study, 191 specimens of insects that infect species of the Fabaceae family, including: Pisum sativum L. (1753), Lens esculenta Moench (1794) and Vigna unguiculata subsp. sesquipedalis (L.) Verdc. (1763), Vicia faba L. (1753), Phaseolus vulgaris L. (1753), Medicago sativa L. (1753), Trifolium campestre Schreb. (1804), were collected from four governorates: Baghdad, Karbala, Wasit, and Anbar. Four orders, five families, 17 species belonging to 10 genera have been identified; these species are: Liriomyza brassicae Riley (1885), Liriomyza bryoniae Kaltenbach (1858), Liriomyza sati
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32

Marinov-Serafimov, Plamen, Irena Golubinova, and Diana Marinova. "Allelopathic tolerance of alfalfa (Medicago sativa L.) varieties to dodder (Cuscuta epithymum L.)." Pesticidi i fitomedicina 32, no. 1 (2017): 51–59. http://dx.doi.org/10.2298/pif1701051m.

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Allelopathic effects of cold water extracts of Cuscuta epithymum L. on seed germination and initial development of Medicago sativa L. varieties were investigated under laboratory conditions at the Institute of Forage Crops, Pleven, during 2016-2017. It was found that the water extracts from dry biomass of C. epithymum had a considerably stronger inhibitory effect on the studied M. sativa varieties (IR 32.7-100.0 %), as compared to the extracts of fresh biomass (IR 0.2-40.5%). Depending on the kind of C. epithymum extract (fresh or dry parasitic weed biomass), IRs for seed germination of the te
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33

Mizia, P. "Alfalfa (Medicago sativa L.) genotype screening in search of somatic embryogenesis capability." Modern Phytomorphology 2 (April 1, 2012): 21. https://doi.org/10.5281/zenodo.162426.

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Alfalfa (Medicago sativa L.) has been regarded as a plant species recalcitrant to plant regeneration under in vitro conditions. In addition, strong relation between genotype and ability to somatic embryogenesis (SE) and organogenesis in this species was described. In our studies we tested the ability for SE in several alfalfa cultivars (Bonat, Hamadany, Makojaran, Planet, Ulstar, Frawer, La Bella Campagniola, Comet, L104) which have not been used in plant regeneration experiments, so far. As explants we used hypocotyls and cotyledons of light- and dark-grown seedlings. The results revealed tha
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34

Medeiros, A. R. M., L. A. S. Castro, and A. A. Lucchesi. "Efeitos alelopáticos de algumas leguminosas e gramíneas sobre a flora invasora." Anais da Escola Superior de Agricultura Luiz de Queiroz 47, no. 1 (1990): 1–10. http://dx.doi.org/10.1590/s0071-12761990000100001.

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Foram estudados os efeitos alelopáticos produzidos por cinco espécies vegetais: as gramíneas Avena sativa L., e Lolium multiflorum Lamb.; e as leguminosas Vicia sp., Mediaago sativa L. e Trifolium repens L. Canteiros isolados foram preparados, adubados e semeados de acordo com as recomendações técnicas usuais. Nos resultados obtidos observou-se alta incidência de invasoras nos canteiros de Trifolium repens L. e Medicago sativa L., contrastando com os canteiros de Avena sativa L. e Lolium multiflorum Lamb., onde poucas foram as espécies encontradas; enquanto o canteiro de Vicia sp. manteve posi
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35

Damiani, F., M. Pezzotti, and S. Arcioni. "Electric Field Mediated Fusion of Protoplasts of Medicago sativa L. and Medicago arborea L." Journal of Plant Physiology 132, no. 4 (1988): 474–79. http://dx.doi.org/10.1016/s0176-1617(88)80066-x.

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36

Nenz, E., F. Pupilli, F. Damiani, and S. Arcioni. "Somatic hybrid plants between the forage legumes Medicago sativa L. and Medicago arborea L." TAG Theoretical and Applied Genetics 93, no. 1-2 (1996): 183–89. http://dx.doi.org/10.1007/s001220050264.

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37

Nenz, E., F. Pupilli, F. Damiani, and S. Arcioni. "Somatic hybrid plants between the forage legumes Medicago sativa L. and Medicago arborea L." Theoretical and Applied Genetics 93-93, no. 1-2 (1996): 183–89. http://dx.doi.org/10.1007/bf00225744.

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38

Wang, Shaoke, M. A. Brick, and C. E. Townsend. "Response of alfalfa to bidirectional selection for root bark area and xylem vessel diameter." Canadian Journal of Plant Science 71, no. 2 (1991): 427–35. http://dx.doi.org/10.4141/cjps91-059.

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Development of alfalfa [Medicago sativa L. ssp. sativa and M. sativa ssp. falcata (L.) Arcangeli] germplasm with contrasting root bark area and xylem vessel area could be useful to evaluate relationships between anatomical root characteristics and plant functions such as drought tolerance. This study was conducted to determine the response of alfalfa to bidirectional selection for root bark area and xylem vessel area of the largest vessels as viewed in cross section. Bidirectional selection for large and small root bark area and for large and small xylem vessel area was conducted for two cycle
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39

McCoy, T. J., C. S. Echt, and L. C. Mancino. "Segregation of molecular markers supports an allotetraploid structure for Medicago sativa × Medicago papillosa interspecific hybrid." Genome 34, no. 4 (1991): 574–78. http://dx.doi.org/10.1139/g91-088.

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Cytogenetic analysis has indicated there is little genomic affinity between the genomes of Medicago sativa L. and Medicago papillosa Boiss. The objective of this study was to determine whether disomic segregation of alleles at isozyme and restriction fragment length polymorphism (RFLP) loci occurs in F1 hybrids of M. sativa × M. papillosa. We examined segregation of alleles at seven isozyme loci and 13 RFLP loci. Of the 20 loci analyzed, 11 exhibited a disomic pattern of inheritance, indicative of strict species-specific chromosome pairing in the M. sativa × M. papillosa hybrids. The other nin
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40

Krakowska, Aneta, Katarzyna Rafińska, Justyna Walczak, Tomasz Kowalkowski, and Bogusław Buszewski. "Comparison of Various Extraction Techniques of Medicago sativa: Yield, Antioxidant Activity, and Content of Phytochemical Constituents." Journal of AOAC INTERNATIONAL 100, no. 6 (2017): 1681–93. http://dx.doi.org/10.5740/jaoacint.17-0234.

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Abstract Medicago sativa L. (M. sativa) is a source of many valuable secondary metabolites. Extraction yield and the concentration of phenolics, flavonoids, and saponins, as well as antioxidant potential were determined in extracts from different parts of M. sativa obtained using extraction methods such as maceration, ultrasound-assisted extraction (UAE), accelerated solvent extraction (ASE), and supercritical fluid extraction (SFE). The concentrations of the listed groups of compounds were spectrophotometrically determined and confirmed by HPLC-MS. The results showed that ASE of flowers with
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41

Segovia-Lerma, A., R. G. Cantrell, J. M. Conway, and I. M. Ray. "AFLP-based assessment of genetic diversity among nine alfalfa germplasms using bulk DNA templates." Genome 46, no. 1 (2003): 51–58. http://dx.doi.org/10.1139/g02-100.

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Improving commercial utilization of perennial Medicago collections requires developing approaches that can rapidly and accurately characterize genetic diversity among large numbers of populations. This study evaluated the potential of using amplified fragment length polymorphism (AFLP) DNA markers, in combination with DNA bulking over multiple genotypes, as a strategy for high-throughput characterization of genetic distances (D) among alfalfa (Medicago sativa L.) accessions. Bulked DNA templates from 30 genotypes within each of nine well-recognized germplasms (African, Chilean, Flemish, Indian
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42

McCoy, T. J. "A potential solution to the chromosome instability problem in hexaploid alfalfa, Medicago sativa L." Genome 32, no. 2 (1989): 302–6. http://dx.doi.org/10.1139/g89-444.

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Autohexaploid alfalfa (2n = 6x = 48) is chromosomally unstable, which prevents commercial use. The objective of this investigation was to test whether synthesizing Medicago hexaploids (2n = 6x = 48) that are alloautohexaploids results in chromosomally stable hexaploid populations. Previous research in our laboratory demonstrated a lack of affinity between the genomes of alfalfa and M. papillosa Boiss. Triploid (2n = 3x = 24) interspecific hybrids with two M. papillosa genomes and one genome of M. sativa were readily recovered from seed following the cross (2x) M. sativa × (4x) M. papillosa. Fo
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43

ROBINSON, PATRICK S., CAROL J. COOKE, RUSSELL P. NEWTON, TERENCE J. WALTON, and CHRISTOPHER J. SMITH. "Cyclic Nucleotide Phosphodiesterase Activity of Medicago Sativa L." Biochemical Society Transactions 20, no. 4 (1992): 355S. http://dx.doi.org/10.1042/bst020355s.

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44

GEORGIEVA, Natalia GEORGI. "NODULATION DYNAMICS IN ALFALFA VARIETIES (Medicago sativa L.)." Banat's Journal of Biotechnology VI, no. 11 (2015): 83–89. http://dx.doi.org/10.7904/2068-4738-vi(11)-83.

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45

Downes, RW. "Medicago sativa L. (lucerne) cv. Alfanafa (syn. Sirosal)." Australian Journal of Experimental Agriculture 34, no. 2 (1994): 299. http://dx.doi.org/10.1071/ea9940299.

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46

Альтангадас, О., Э. Ванжилдорж та Г. Дамдинсурэн. "СРАВНЕНИЕ ЗАСУХОУСТОЙЧИВОСТИ СОРТОВ КУЛЬТУРНОЙ ЛЮЦЕРНЫ (MEDICAGO SATIVA L.)". Природа Внутренней Азии Nature of Inner Asia 128, № 2-3 (2022): 7–19. http://dx.doi.org/10.18101/2542-0623-2022-2/3-7-19.

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47

Spanò, L., D. Mariotti, M. Pezzotti, F. Damiani, and S. Arcioni. "Hairy root transformation in alfalfa (Medicago sativa L.)." Theoretical and Applied Genetics 73, no. 4 (1987): 523–30. http://dx.doi.org/10.1007/bf00289189.

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48

Goins, Gregory D., and Michael P. Russelle. "Fine root demography in alfalfa (Medicago sativa L.)." Plant and Soil 185, no. 2 (1996): 281–91. http://dx.doi.org/10.1007/bf02257534.

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49

Gafarova, B., and A. Mammadova. "Indicative properties study of Medicago sativa L. culture under the oil-polluted condition." Bulletin of Science and Practice 5, no. 2 (2019): 19–25. https://doi.org/10.33619/2414-2948/39/03.

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For indicative properties study of plant culture with <em>Medicago sativa</em> L. was made an effort in oil-polluted areas under the Abcheron condition. With this purpose the sprouting ability of the plant seeds treated by different density 1%; 5%; 10%; 15%; 50%. Crude oil was determined, and the morphometric measurements of the inducted seeds were performed in their ontogenesis first stage.
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50

Tani, Eleni, Evangelia Chronopoulou, Nikolaos Labrou, et al. "Growth, Physiological, Biochemical, and Transcriptional Responses to Drought Stress in Seedlings of Medicago sativa L., Medicago arborea L. and Their Hybrid (Alborea)." Agronomy 9, no. 1 (2019): 38. http://dx.doi.org/10.3390/agronomy9010038.

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Medicago sativa L. is a tetraploid perennial forage legume of great agronomical interest. The increasing need for its use under water-deficit conditions as well as low-input systems demands further improvement of its drought tolerance. On the other hand, Medicagoarborea L. is a perennial leguminous shrub, which is knownas a drought-tolerant species. In the present study, drought stress responses of the aforementioned medicago species, along with their hybrid, named Alborea, were comparatively assayed at the morphological, physiological, biochemical, and transcriptional levels. In particular, t
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