Legume genetic resources: management, diversity assessment, and utilization in crop improvement
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A. Flavell | S. Sharma | H. Upadhyaya | P. Smýkal | N. Ellis | J. Berger | M. Ambrose | G. Duc | S. Dwivedi | D. Debouck | D. Dumet | N. Mallikarjuna | C. Gowda | S. Sharma
[1] R. Malhotra,et al. Chickpea evolution has selected for contrasting phenological mechanisms among different habitats , 2011, Euphytica.
[2] P. Smýkal,et al. Molecular evidence of genetic diversity changes in pea (Pisum sativum L.) germplasm after long-term maintenance , 2011, Genetic Resources and Crop Evolution.
[3] Rajeev K. Varshney,et al. Pigeonpea composite collection and identification of germplasm for use in crop improvement programmes , 2011, Plant Genetic Resources.
[4] J. Corander,et al. Phylogeny, phylogeography and genetic diversity of the Pisum genus , 2010, Plant Genetic Resources.
[5] M. Blair,et al. Using Genomics to Exploit Grain Legume Biodiversity in Crop Improvement , 2010 .
[6] R. Varshney,et al. Male‐sterility systems in pigeonpea and their role in enhancing yield , 2010 .
[7] J. Berger,et al. Flowering time control in annual legumes: prospects in a changing global climate , 2010 .
[8] Paul D. Shaw,et al. The genetic diversity and evolution of field pea (Pisum) studied by high throughput retrotransposon based insertion polymorphism (RBIP) marker analysis , 2010, BMC Evolutionary Biology.
[9] M. Santalla,et al. Integration of genome and phenotypic scanning gives evidence of genetic structure in Mesoamerican common bean (Phaseolus vulgaris L.) landraces from the southwest of Europe , 2010, Theoretical and Applied Genetics.
[10] L. Guarino,et al. Trends in ex situ conservation of plant genetic resources: a review of global crop and regional conservation strategies , 2010, Genetic Resources and Crop Evolution.
[11] M. Baum,et al. Diversity maintenance and use of Vicia faba L. genetic resources , 2010 .
[12] P. Arese,et al. Nutritional value of faba bean (Vicia faba L.) seeds for feed and food , 2010 .
[13] J. Berger,et al. Stress gradients select for ecotype formation in Cicer judaicum Boiss., a wild relative of domesticated chickpea , 2010, Genetic Resources and Crop Evolution.
[14] M. Blair,et al. Extensive diversity and inter-genepool introgression in a world-wide collection of indeterminate snap bean accessions , 2010, Theoretical and Applied Genetics.
[15] W. Suhua,et al. Genetic Diversity of Adzuki Bean Germplasm Resources Revealed by SSR Markers , 2009 .
[16] M. Kawase,et al. Consequences of ex situ Conservation on the Genetic Integrity of Germplasm Held at Different Gene Banks: A Case Study of Bread Wheat Collected in Pakistan , 2009 .
[17] C. Rogers,et al. Deletion-Based Reverse Genetics in Medicago truncatula1[W][OA] , 2009, Plant Physiology.
[18] M. Blair,et al. Genetic diversity, seed size associations and population structure of a core collection of common beans (Phaseolus vulgaris L.) , 2009, Theoretical and Applied Genetics.
[19] A. Campa,et al. Genetic Diversity in a Core Collection Established from the Main Bean Genebank in Spain , 2009 .
[20] Li Changyou,et al. Screening and Application of SSR Molecular Markers for Genetic Diversity Analysis of Chinese Adzuki Bean Germplasm Resources , 2009 .
[21] K. Basford,et al. Variation in adzuki bean (vigna angularis) germplasm grown in China , 2009 .
[22] M. Blair,et al. Generation of a mutant population for TILLING common bean genotype BAT 93. , 2009 .
[23] K. Street,et al. Sources of wheat resistance to Sunn pest, Eurygaster integriceps Puton, in Syria , 2009, Genetic Resources and Crop Evolution.
[24] P. Velasco,et al. Effect of regeneration procedures on the genetic integrity of Brassica oleracea accessions , 2009, Molecular Breeding.
[25] P. Gepts,et al. The Putative Mesoamerican Domestication Center of Phaseolus vulgaris Is Located in the Lerma–Santiago Basin of Mexico , 2009 .
[26] S. Udupa,et al. Development of new microsatellite markers and their application in the analysis of genetic diversity in lentils , 2009 .
[27] P. Nichols,et al. Evolution over 16 years in a bulk-hybrid population of subterranean clover (Trifolium subterraneum L.) at two contrasting sites in south-western Australia , 2009, Euphytica.
[28] Jin Liu. Analysis of Genetic Diversity and Population Structure in Lentil ( Lens culinaris Medik.) Germplasm by SSR Markers: Analysis of Genetic Diversity and Population Structure in Lentil ( Lens culinaris Medik.) Germplasm by SSR Markers , 2009 .
[29] G. Hoheisel,et al. Resistance of peas to Sclerotinia sclerotiorum in the Pisum core collection , 2009 .
[30] M. L. Ramos,et al. Identification and characterization of a hypoallergenic ortholog of Ara h 2.01 , 2009, Plant Molecular Biology.
[31] R. Redden,et al. Molecular variation among Chinese and global winter faba bean germplasm , 2009, Theoretical and Applied Genetics.
[32] P. Gepts,et al. Structure of genetic diversity in the two major gene pools of common bean (Phaseolus vulgaris L., Fabaceae) , 2009, Theoretical and Applied Genetics.
[33] A. Flavell,et al. Effort towards a world pea (Pisum sativum L.) germplasm core collection: The case for common markers and data compatibility. , 2008 .
[34] J. Iriondo,et al. Gap analysis: a tool for complementary genetic conservation assessment , 2008 .
[35] Z. Xiaoyan,et al. Genetic Diversity and Population Structure in Lentil (Lens culinaris Medik.) Germplasm Detected by SSR Markers , 2008 .
[36] S. Udupa,et al. Genetic structure, diversity, and allelic richness in composite collection and reference set in chickpea (Cicer arietinum L.) , 2008, BMC Plant Biology.
[37] G. Yan,et al. Genetic analysis of pod and seed resistance to pea weevil in a Pisum sativum x P. fulvum interspecific cross , 2008 .
[38] R. Ford,et al. Genetic Diversity and Core Collection of Alien Pisum sativum L. Germplasm , 2008 .
[39] J. Berger,et al. Ecogeography of the Old World lupins. 1. Ecotypic variation in yellow lupin (Lupinus luteus L.) , 2008 .
[40] N. Tomooka,et al. Genetic diversity of the azuki bean (Vigna angularis (Willd.) Ohwi & Ohashi) gene pool as assessed by SSR markers. , 2008, Genome.
[41] X. Zong,et al. Genetic Diversity Among Chinese Pea (Pisum sativum L.) Landraces as Revealed by SSR Markers , 2008 .
[42] A. Jarvis,et al. The effect of climate change on crop wild relatives , 2008 .
[43] J. Corander,et al. Genetic diversity and population structure of pea (Pisum sativum L.) varieties derived from combined retrotransposon, microsatellite and morphological marker analysis , 2008, Theoretical and Applied Genetics.
[44] B. Keller,et al. Molecular approaches for characterization and use of natural disease resistance in wheat , 2008, European Journal of Plant Pathology.
[45] Bas Eickhout,et al. Scenarios of biodiversity loss in southern Africa in the 21st century , 2008 .
[46] H. T. Stalker,et al. Enhancing Crop Gene Pools with Beneficial Traits Using Wild Relatives , 2008 .
[47] J. E. Fernández,et al. Chloridazon and lenacil dissipation in a clayey soil of the Guadalquivir river marshes (southwest Spain) , 2008 .
[48] D. Rubiales,et al. Identification and validation of RAPD and SCAR markers linked to the gene Er3 conferring resistance to Erysiphe pisi DC in pea , 2008, Molecular Breeding.
[49] P. Gepts,et al. Prebreeding in Common Bean and Use of Genetic Diversity from Wild Germplasm , 2007 .
[50] R. Ortiz,et al. Cowpea [Vigna unguiculata (L.) Walp.] core collection defined by geographical, agronomical and botanical descriptors , 2007, Plant Genetic Resources.
[51] A. Flavell,et al. Gene-Based Sequence Diversity Analysis of Field Pea (Pisum) , 2007, Genetics.
[52] J. Berger. Ecogeographic and evolutionary approaches to improving adaptation of autumn-sown chickpea (Cicer arietinum L.) to terminal drought: The search for reproductive chilling tolerance , 2007 .
[53] N. Weeden. Genetic Changes Accompanying the Domestication of Pisum sativum: Is there a Common Genetic Basis to the ‘Domestication Syndrome’ for Legumes? , 2007, Annals of botany.
[54] A. Casas,et al. Conservation and sustainable use of crop wild relatives , 2007 .
[55] G. Stacey,et al. Distinct, crucial roles of flavonoids during legume nodulation. , 2007, Trends in plant science.
[56] Rick Roush,et al. The Endangered Species Act at Thirty, vols. 1 and 2 , 2007 .
[57] A. Flavell,et al. Genetic diversity analysis in Vicia species using retrotransposon-based SSAP markers , 2007, Molecular Genetics and Genomics.
[58] Helmut Knüpffer,et al. Analysis of the contribution of Mesoamerican and Andean gene pools to European common bean (Phaseolus vulgaris L.) germplasm and strategies to establish a core collection , 2007, Genetic Resources and Crop Evolution.
[59] S. S. Yadav,et al. Chickpea Breeding and Management , 2007 .
[60] J. Corander,et al. Random Partition Models and Exchangeability for Bayesian Identification of Population Structure , 2007, Bulletin of mathematical biology.
[61] B. Vosman,et al. The distribution of genetic diversity in a Brassica oleracea gene bank collection related to the effects on diversity of regeneration, as measured with AFLPs , 2007, Theoretical and Applied Genetics.
[62] R. Guralnick,et al. BioGeomancer: Automated Georeferencing to Map the World's Biodiversity Data , 2006, PLoS biology.
[63] N. Galic,et al. Rapid differentiation of experimental populations of wheat for heading time in response to local climatic conditions. , 2006, Annals of botany.
[64] H. Upadhyaya,et al. Identification of Sources of Multiple Disease Resistance in Mini-core Collection of Chickpea. , 2006, Plant disease.
[65] L. J. Reddy,et al. Development of a Mini Core Subset for Enhanced and Diversified Utilization of Pigeonpea Germplasm Resources , 2006 .
[66] P. Basu,et al. Genotype by environment studies demonstrate the critical role of phenology in adaptation of chickpea (Cicer arietinum L.) to high and low yielding environments of India , 2006 .
[67] N. Mallikarjuna,et al. Introgression of Cajanus platycarpus genome into cultivated pigeonpea, C. cajan , 2006, Euphytica.
[68] P. Byrne,et al. Reaction to Three Races of Fusarium Wilt in the Phaseolus vulgaris Core Collection , 2006 .
[69] B. Furman. Methodology to establish a composite collection: case study in lentil , 2006, Plant Genetic Resources.
[70] T. Motley,et al. Darwin's harvest: new approaches to the origins, evolution and conservation of crops. , 2006 .
[71] G. Duc,et al. Germplasm Management of Faba Bean (Vicia faba L.): Monitoring Intercrossing between Accessions with Inter-plot Barriers , 2006, Genetic Resources and Crop Evolution.
[72] Wei Zhao,et al. Panzea: a database and resource for molecular and functional diversity in the maize genome , 2005, Nucleic Acids Res..
[73] Richard M Bruskiewich,et al. The International Rice Information System. A Platform for Meta-Analysis of Rice Crop Data , 2005, Plant Physiology.
[74] Sarvjeet Singh,et al. Introgression from wild Cicer reticulatum to cultivated chickpea for productivity and disease resistance , 2005 .
[75] M. P. Vega,et al. Assessment of genetic variation and species relationships in a collection of Lens using RAPD and ISSR [Inter-simple sequence repeats] , 2004 .
[76] E. J. Knights,et al. Genotype by environment studies across Australia reveal the importance of phenology for chickpea (Cicer arietinum L.) improvement , 2004 .
[77] Susan McCouch,et al. Diversifying Selection in Plant Breeding , 2004, PLoS biology.
[78] D. Zamir,et al. Unused Natural Variation Can Lift Yield Barriers in Plant Breeding , 2004, PLoS biology.
[79] P. Marget,et al. Overcoming hybridization barriers between pea and some of its wild relatives , 2004, Euphytica.
[80] Toby Hodgkin,et al. In situ conservation of crop wild relatives: status and trends , 2004, Biodiversity & Conservation.
[81] B. Rannala,et al. The Bayesian revolution in genetics , 2004, Nature Reviews Genetics.
[82] G. Aubert,et al. Genetic diversity within Pisum sativum using protein- and PCR-based markers , 2004, Theoretical and Applied Genetics.
[83] O. Phillips,et al. Extinction risk from climate change , 2004, Nature.
[84] M. Knox,et al. Transposable elements reveal the impact of introgression, rather than transposition, in Pisum diversity, evolution, and domestication. , 2003, Molecular biology and evolution.
[85] M. Briard,et al. Genebank biodiversity assessments regarding optimal sample size and seed harvesting techniques for the regeneration of carrot accessions , 2003, Biodiversity & Conservation.
[86] C. Vance,et al. Legumes: Importance and Constraints to Greater Use , 2003, Plant Physiology.
[87] Martin Parniske,et al. A TILLING Reverse Genetics Tool and a Web-Accessible Collection of Mutants of the Legume Lotus japonicus 1 , 2003, Plant Physiology.
[88] K. Singh,et al. Registration of ILC 10765 and ILC 10766 Chickpea Germplasm Lines Resistant to Cyst Nematode , 2002 .
[89] M. Hulme,et al. A high-resolution data set of surface climate over global land areas , 2002 .
[90] John F. McLaughlin,et al. Climate change hastens population extinctions , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[91] D. Zamir. Improving plant breeding with exotic genetic libraries , 2001, Nature Reviews Genetics.
[92] E. Pang,et al. Prospecting for sources of resistance to ascochyta blight in wild Cicer species , 2001, Australasian Plant Pathology.
[93] B. Pengelly,et al. Lablab purpureus (L.) Sweet – diversity, potential use and determination of a core collection of this multi-purpose tropical legume , 2001, Genetic Resources and Crop Evolution.
[94] H. Upadhyaya,et al. A mini core subset for capturing diversity and promoting utilization of chickpea genetic resources in crop improvement , 2001, Theoretical and Applied Genetics.
[95] R. Ennos,et al. Genetic diversity of barley landrace accessions (Hordeum vulgare ssp. vulgare) conserved for different lengths of time in ex situ gene banks , 2000, Heredity.
[96] O. Yu,et al. Identification and expression of isoflavone synthase, the key enzyme for biosynthesis of isoflavones in legumes , 2000, Nature Biotechnology.
[97] M. Matzke,et al. Rapid structural and epigenetic changes in polyploid and aneuploid genomes , 1999, BioEssays : news and reviews in molecular, cellular and developmental biology.
[98] H. Getahun,et al. Epidemic of neurolathyrism in Ethiopia , 1999, The Lancet.
[99] J. Enjalbert,et al. Molecular markers to study genetic drift and selection in wheat populations , 1999 .
[100] I. Bisht,et al. The use of characterisation data to establish the Indian mungbean core collection and assessment of genetic diversity , 1998, Genetic Resources and Crop Evolution.
[101] P. Ruckenbauer,et al. Maintenance in genebanks, a case study: contaminations observed in the Nu¨rnberg oats of 1831 , 1997, Genetic Resources and Crop Evolution.
[102] S. Tanksley,et al. Seed banks and molecular maps: unlocking genetic potential from the wild. , 1997, Science.
[103] Jeffrey D. Ehlers,et al. Cowpea (Vigna unguiculata L. Walp.) , 1997 .
[104] M. P. Vega,et al. Genetic resources of Centrosema spp.: genetic changes associated to the handling of an active collection , 1996, Genetic Resources and Crop Evolution.
[105] P. Perrino,et al. Changes in the genetic structure of wheat germplasm accessions during seed rejuvenation , 1995 .
[106] Ipgri. Agreement between the International Plant Genetic Resources Institute/International Network for the Improvement of Banana and Plantain and the Food and Agriculture Organization of the United Nations Placing Collections of Plant Germplasm under the Auspice , 1994 .
[107] C. Cardona,et al. Inheritance of Resistance to Mexican Bean Weevil in Common Bean, Determined by Bioassay and Biochemical Tests , 1993 .
[108] K. Singh,et al. Associations of some characters with seed yield in chickpea collections , 1990, Euphytica.
[109] R. Provvidenti. Inheritance of Resistance to Pea Mosaic Virus in Pisum sativum , 1990 .
[110] A. Brown,et al. Core collections: a practical approach to genetic resources management , 1989 .
[111] R. Allard. The Wilhelmine E. Key 1987 invitational lecture. Genetic changes associated with the evolution of adaptedness in cultivated plants and their wild progenitors. , 1988, The Journal of heredity.
[112] D. S. Hayman. The physiology of vesicular-arbuscular endomycorrhizal symbiosis , 1983 .
[113] P. Tinker,et al. Phosphate flow into mycorrhizal roots , 1973 .
[114] 村山. Phaseolus vulgaris の根の形成に影響する因子 , 1941 .
[115] A. R. Reddy,et al. Flavonoid Biosynthetic Pathway and Cereal Defence Response: An Emerging Trend in Crop Biotechnoloy , 2012, Journal of Plant Biochemistry and Biotechnology.
[116] H. Upadhyaya,et al. Enhancing the value of plant genetic resources of chickpea, pigeonpea and groundnut , 2009 .
[117] Wang Li. Genetic Diversity of Adzuki Bean Germplasm Resources Revealed by SSR Markers , 2009 .
[118] H. Upadhyaya. Crop Germplasm and wild relatives: a source of novel variation for crop improvement , 2008 .
[119] K. Street,et al. Swimming in the genepool - a rational approach to exploiting large genetic resource collections , 2008 .
[120] Guan Jian. Analysis of Genetic Diversity and Population Structure in Lentil(Lens cu-linaris Medik.) Germplasm by SSR Markers , 2008 .
[121] F. Muehlbauer,et al. Chickpea, a Common Source of Protein and Starch in the Semi-Arid ropics , 2008 .
[122] Long Yan,et al. Analysis of a diverse global Pisum sp. collection and comparison to a Chinese local P. sativum collection with microsatellite markers , 2008, Theoretical and Applied Genetics.
[123] D. G. Debouck,et al. Flujos de germoplasma en las Américas. 30 años de distribución de muestras de frijol por parte del Centro Internacional de Agricultura Tropical , 2008 .
[124] N. Turner,et al. The Ecology of Chickpea , 2007 .
[125] H. Upadhyaya,et al. Exploitation of wild relatives of pigeonpea and chickpea for resistance to Helicoverpa armigera , 2007 .
[126] Xu Yan. Genetic Diversity Analysis of Cowpea Germplasm Resources by SSR , 2007 .
[127] Pushpam Kumar. Agriculture (Chapter8) in IPCC, 2007: Climate change 2007: Mitigation of Climate Change. Contribution of Working Group III to the Fourth assessment Report of the Intergovernmental Panel on Climate Change , 2007 .
[128] N. Mallikarjuna,et al. A new cytoplasmic nuclear male-sterility system derived from cultivated pigeonpea cytoplasm , 2005, Euphytica.
[130] Matthias Frisch,et al. Genetical and Mathematical Properties of Similarity and Dissimilarity Coefficients Applied in Plant Breeding and Seed Bank Management , 2005 .
[131] M. Vicente,et al. Molecular markers for genebank management , 2005 .
[132] C. Gowda,et al. Hybrid breeding in grain legumes - a success story of pigeonpea , 2005 .
[133] M. Grusak,et al. Variation for pea seed protein concentration in the USDA Pisum core collection , 2005 .
[134] T. Ehrman,et al. Reproductive patterns in annual legume species on an aridity gradient , 2004, Vegetatio.
[135] L. Pecetti,et al. Climatic adaptation in subterranean clover populations , 2004, Euphytica.
[136] M. Vicente. The evolving role of genebanks in the fast-developing field of molecular genetics , 2004 .
[137] N. Polans,et al. A phylogenetic analysis of Pisum based on morphological characters, and allozyme and RAPD markers , 2004, Theoretical and Applied Genetics.
[138] M. Vinagre,et al. Assessment of genetic variation and species relationships in a collection of "Lens" using RAPD and ISSR , 2004 .
[139] Luigi Guarino,et al. Computer tools for spatial analysis of plant genetic resources data: 1. DIVA-GIS , 2001 .
[140] Hari D. Upadhyaya,et al. Development of a Chickpea Core Subset Using Geographic Distribution and Quantitative Traits , 2001 .
[141] F. Muehlbauer,et al. Resistance to Fusarium Wilt Race 2 in the Pisum Core Collection , 1999 .
[142] J. Engels,et al. Regeneration of accessions in seed collections: a decision guide , 1997 .
[143] S. Bennett. Genetic variation between and within two populations of Trifolium glomeratum (cluster clover) in Western Australia , 1997 .
[144] R. N. Adsule,et al. Faba bean ( Vicia faba L.) , 1996 .
[145] K. Lamkey,et al. Isozyme allelic frequency changes following maize (Zea mays L.) germplasm regeneration , 1995 .
[146] M. Goodman. Genetic and germ plasm stocks worth conserving. , 1990, The Journal of heredity.
[147] J. Smartt. Grain Legumes: Introduction: biosystematics of the legumes , 1990 .
[148] M. Davisson,et al. Patchy fur (Paf), a semidominant X-linked gene associated with a high level of X-Y nondisjunction in male mice. , 1990, The Journal of heredity.
[149] M. Goodman,et al. What genetic and germplasm stocks are worth conserving , 1990 .
[150] E. Bréese. Regeneration and multiplication of germplasm resources in seed genebanks: the scientific backgraund / E.L. Breese , 1989 .
[151] E. Bréese. Regeneration and multiplication of germplasm resources in seed genebanks: The scientific background , 1989 .
[152] Werner Arber,et al. Genetic manipulation : impact on man and society , 1984 .
[153] Philippe L. de Vilmorin. IVe Conférence internationale de génétique, Paris 1911 : comptes rendus et rapports , 1913 .
[154] C. Tebaldi,et al. References and Notes Supporting Online Material Materials and Methods Figs. S1 and S2 Tables S1 and S2 References Prioritizing Climate Change Adaptation Needs for Food Security in 2030 , 2022 .
[155] P. Moore. Genomics of Tropical Crop Plants , 2022 .