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Legume genetic resources: management, diversity assessment, and utilization in crop improvement

机译:豆类遗传资源:经营,多样性评估和作物改善的利用

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摘要

Grain legumes contribute significantly to total world food production. Legumes are the primary source of dietary proteins in many developing countries, where protein hunger and malnutrition are widespread. Grain legumes germplasm constitute ~15% of the 7.4 M accessions preserved globally. Nearly, 78% of the CGIAR’s, 0.217 M accessions, have been characterized, compared to 34% of national genebank collections. Interestingly, limited data on grain quality are available as the primary focus has been on morpho-agronomic traits. Clearly, more resources should be targeted on biochemical evaluation to identify nutritionally rich and genetically diverse germplasm. The formation of core and mini core collections has provided crop breeders with a systematic yet manageable entry point into global germplasm resources. These subsets have been reported for most legumes and have proved useful in identifying new sources of variation. They may however not eliminate the need to evaluate entire collections, particularly for very rare traits. Molecular characterization and association mapping will further aid to insights into the structure of legume diversity and facilitate greater use of collections. The use of high resolution elevational climate models has greatly improved our capacity to characterize plant habitats and species’ adaptive responses to stresses. Evidence suggests that there has been increased use of wild relatives as well as new resources resulting from mutagenesis to enhance the genetic base of legume cultigens.
机译:谷物豆类对世界全球粮食生产有贡献。豆类是许多发展中国家中膳食蛋白的主要来源,蛋白质饥饿和营养不良是普遍的。粮食豆类种质占全球7.4米住宿的15%。差不多,78%的CGIAR,0.217米的加入,相比之下,相比之下的34%的国家基因库系列。有趣的是,有限的关于粮食质量数据可用,因为主要关注于Morpho - 农艺性状。显然,更多的资源应针对生化评估来鉴定营养丰富和遗传多样的种质。核心和迷你核心系列的形成为作物育种者提供了系统尚可易于管理的入学点,进入全球种质资源。已向大多数豆类报告这些子集,并证明有助于识别新的变化来源。然而,它们可能不会消除评估整个集合的需要,特别是对于非常罕见的特征。分子表征和关联映射将进一步帮助见解豆类多样性的结构,并促进更多使用收藏品。高分辨率高度气候模型的使用大大提高了我们对植物栖息地和物种适应性反应的能力提高了能力。证据表明,野生亲属的使用以及由诱变引起的新资源增加,以增强豆科植物的遗传基础。

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