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Development of Genomic Resources in the Species of Trifolium L. and Its Application in Forage Legume Breeding

机译:三叶草种的基因组资源开发及其在牧草豆科植物育种中的应用

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Clovers (genus Trifolium) are a large and widespread genus of legumes. A number of clovers are of agricultural importance as forage crops in grassland agriculture, particularly temperate areas. White clover (Trifolium repens L.) is used in grazed pasture and red clover (T. pratense L.) is widely cut and conserved as a winter feed. For the diploid red clover, genetic and genomic tools and resources have developed rapidly over the last five years including genetic and physical maps, BAC (bacterial artificial chromosome) end sequence and transcriptome sequence information. This has paved the way for the use of genome wide selection and high throughput phenotyping in germplasm development. For the allotetraploid white clover progress has been slower although marker assisted selection is in use and relatively robust genetic maps and QTL (quantitative trait locus) information now exist. For both species the sequencing of the model legume Medicago truncatula gene space is an important development to aid genomic, biological and evolutionary studies. The first genetic maps of another species, subterranean clover (Trifolium subterraneum L.) have also been published and its comparative genomics with red clover and M. truncatula conducted. Next generation sequencing brings the potential to revolutionize clover genomics, but international consortia and effective use of germplasm, novel population structures and phenomics will be required to carry out effective translation into breeding. Another avenue for clover genomic and genetic improvement is interspecific hybridization. This approach has considerable potential with regard to crop improvement but also opens windows of opportunity for studies of biological and evolutionary processes.
机译:三叶草(三叶草属)是一种广泛的豆科植物。许多三叶草在草原农业中,特别是在温带地区,作为饲料作物具有重要的农业意义。白三叶草(Trifolium repens L.)用于草场牧场,红三叶草(T. pratense L.)被广泛砍伐并作为冬季饲料保存。对于二倍体红三叶草,遗传和基因组工具和资源在过去五年中发展迅速,包括遗传和物理图谱,BAC(细菌人工染色体)末端序列和转录组序列信息。这为在种质开发中使用全基因组选择和高通量表型铺平了道路。尽管使用了标记辅助选择,并且对于等位四倍体的白色三叶草进展较慢,并且现在存在相对可靠的遗传图谱和QTL(定量性状基因座)信息。对于这两个物种,豆科植物紫花苜蓿模型基因空间的测序是有助于基因组,生物学和进化研究的重要进展。另一个物种,地下三叶草(Trifolium subterraneum L.)的第一个遗传图谱也已经出版,并进行了与红三叶草和t藜的比较基因组学研究。下一代测序带来了革命性三叶草基因组学的潜力,但是需要国际联盟和有效利用种质,新颖的种群结构和表观基因组,才能有效地进行育种转化。三叶草基因组和遗传改良的另一个途径是种间杂交。这种方法在作物改良方面具有相当大的潜力,但也为生物学和进化过程的研究打开了机会之窗。

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