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首页> 外文期刊>Frontiers in Plant Science >Gene Discovery and Advances in Finger Millet [ Eleusine coracana (L.) Gaertn.] Genomics—An Important Nutri-Cereal of Future
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Gene Discovery and Advances in Finger Millet [ Eleusine coracana (L.) Gaertn.] Genomics—An Important Nutri-Cereal of Future

机译:谷子的基因发现和进展[ Eleusine coracana (L.)Gaertn。]基因组学-未来重要的营养谷物

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The rapid strides in molecular marker technologies followed by genomics, and next generation sequencing advancements in three major crops (rice, maize and wheat) of the world have given opportunities for their use in the orphan, but highly valuable future crops, including finger millet [ Eleusine coracana (L.) Gaertn.]. Finger millet has many special agronomic and nutritional characteristics, which make it an indispensable crop in arid, semi-arid, hilly and tribal areas of India and Africa. The crop has proven its adaptability in harsh conditions and has shown resilience to climate change. The adaptability traits of finger millet have shown the advantage over major cereal grains under stress conditions, revealing it as a storehouse of important genomic resources for crop improvement. Although new technologies for genomic studies are now available, progress in identifying and tapping these important alleles or genes is lacking. RAPDs were the default choice for genetic diversity studies in the crop until the last decade, but the subsequent development of SSRs and comparative genomics paved the way for the marker assisted selection in finger millet. Resistance gene homologs from NBS-LRR region of finger millet for blast and sequence variants for nutritional traits from other cereals have been developed and used invariably. Population structure analysis studies exhibit 2–4 sub-populations in the finger millet gene pool with separate grouping of Indian and exotic genotypes. Recently, the omics technologies have been efficiently applied to understand the nutritional variation, drought tolerance and gene mining. Progress has also occurred with respect to transgenics development. This review presents the current biotechnological advancements along with research gaps and future perspective of genomic research in finger millet.
机译:分子标记技术的飞速发展,随后是基因组学的发展,以及世界上三种主要农作物(水稻,玉米和小麦)的下一代测序技术的进步,为它们在孤儿但极有价值的未来农作物(包括小米)中的应用提供了机会。 Eleusine coracana(L.)Gaertn。]。小米具有许多特殊的农艺学和营养学特征,使其成为印度和非洲干旱,半干旱,丘陵和部落地区必不可少的作物。该作物已证明其在恶劣条件下的适应性,并表现出对气候变化的适应力。手指小米的适应性状在胁迫条件下已显示出优于主要谷物的优势,表明它是重要的基因组资源库,可改善作物生长。尽管现在有用于基因组研究的新技术,但在鉴定和筛选这些重要的等位基因或基因方面仍缺乏进展。直到最近十年,RAPDs一直是作物遗传多样性研究的默认选择,但是随后SSRs和比较基因组学的发展为在手指小米中进行标记辅助选择铺平了道路。已经开发并始终使用来自小米NBS-LRR区域的稻瘟病抗性基因同源物和其他谷物营养性状的序列变异。人口结构分析研究在手指粟基因库中显示了2-4个亚种群,分别具有印度和外来基因型分组。最近,组学技术已被有效地应用于理解营养变异,抗旱性和基因挖掘。转基因技术的发展也取得了进展。这篇综述介绍了目前的生物技术进步以及研究差距以及手指小米基因组研究的未来前景。

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