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Tracing QTLs for Leaf Blast Resistance and Agronomic Performance of Finger Millet (Eleusine coracana (L.) Gaertn.) Genotypes through Association Mapping and in silico Comparative Genomics Analyses

机译:通过关联映射和计算机模拟比较基因组分析追踪QTLs对小米(Eleusine coracana(L.)Gaertn。)基因型的抗叶瘟性和农艺性能的研究

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摘要

Finger millet is one of the small millets with high nutritive value. This crop is vulnerable to blast disease caused by Pyricularia grisea, which occurs annually during rainy and winter seasons. Leaf blast occurs at early crop stage and is highly damaging. Mapping of resistance genes and other quantitative trait loci (QTLs) for agronomic performance can be of great use for improving finger millet genotypes. Evaluation of one hundred and twenty-eight finger millet genotypes in natural field conditions revealed that leaf blast caused severe setback on agronomic performance for susceptible genotypes, most significant traits being plant height and root length. Plant height was reduced under disease severity while root length was increased. Among the genotypes, IE4795 showed superior response in terms of both disease resistance and better agronomic performance. A total of seven unambiguous QTLs were found to be associated with various agronomic traits including leaf blast resistance by association mapping analysis. The markers, UGEP101 and UGEP95, were strongly associated with blast resistance. UGEP98 was associated with tiller number and UGEP9 was associated with root length and seed yield. Cross species validation of markers revealed that 12 candidate genes were associated with 8 QTLs in the genomes of grass species such as rice, foxtail millet, maize, Brachypodium stacei, B. distachyon, Panicum hallii and switchgrass. Several candidate genes were found proximal to orthologous sequences of the identified QTLs such as 1,4-β-glucanase for leaf blast resistance, cytokinin dehydrogenase (CKX) for tiller production, calmodulin (CaM) binding protein for seed yield and pectin methylesterase inhibitor (PMEI) for root growth and development. Most of these QTLs and their putatively associated candidate genes are reported for first time in finger millet. On validation, these novel QTLs may be utilized in future for marker assisted breeding for the development of fungal resistant and high yielding varieties of finger millet.
机译:手指小米是具有高营养价值的小米之一。这种作物易受稻瘟病菌引起的稻瘟病的侵害,这种病每年在雨季和冬季发生。稻瘟病发生在作物的早期阶段,具有很高的破坏力。抗性基因和其他数量性状基因座(QTL)的农艺性状作图对于改善小米的基因型很有用。在自然田间条件下对128个手指粟的基因型进行评估后发现,叶瘟对易感基因型的农艺性能造成了严重的挫折,最显着的性状是植物的高度和根长。在病害严重时,株高降低,而根长增加。在基因型中,IE4795在抗病性和更好的农艺性能方面均显示出优异的响应。通过关联作图分析发现总共七个明确的QTL与各种农艺性状相关,包括抗叶瘟性。标记UGEP101和UGEP95与抗瘟性密切相关。 UGEP98与分till数相关,UGEP9与根长和种子产量相关。标记物的跨物种验证显示,在水稻,狐尾粟,玉米,短枝史塔赫,B。distachyon,Hanic panii和柳枝switch等草科物种的基因组中,有12个候选基因与8个QTL相关。在已鉴定QTL的直系同源序列附近发现了几个候选基因,例如用于叶瘟的1,4-β-葡聚糖酶,用于分till生产的细胞分裂素脱氢酶(CKX),用于种子产量的钙调蛋白(CaM)结合蛋白和果胶甲基酯酶抑制剂( PMEI)促进根的生长和发育。这些QTL中的大多数及其推定相关的候选基因首次在小米中报道。经验证,这些新的QTL将来可用于标记辅助育种,以开发抗真菌和高产的小米品种。

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