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分子标记技术的进展及其在多样性研究中的应用。

Advancements in molecular marker technologies and their applications in diversity studies.

作者信息

Ramesh Palakurthi, Mallikarjuna Gunti, Sameena Shaik, Kumar Anand, Gurulakshmi Kola, Reddy B Vigneswara, Reddy P Chandra Obul, Sekhar Akila Chandra

机构信息

Molecular Genetics and Functional Genomics Laboratory, Department of Biotechnology, School of Life Sciences, Yogi Vemana University, Kadapa, India.

出版信息

J Biosci. 2020;45.

Abstract

Crop improvement is a continuous effort, since some 10,000 years ago when primitive man made the transition from hunting and foraging to domestication and crop cultivation. Since then, man-made interventions have changed the entire scenario of crop evolution, by means of genetic alterations of plants and animals made to satisfy man's needs. The process of domestication has led to dramatic changes in their appearance, quality and productivity that have contributed substantially to global food security. The tremendous decline in cultivable land, freshwater, and increasing risk of biotic and abiotic stress demand immediate attention on crop improvement to cope with the higher demand of ∼ 40% of the food by 2020. Therefore, plant genetic variation plays a key role in plant breeding for its improvement. Most of the genetic variations useful for crop improvement have been deposited and maintained in seed gene banks across the world; they need to be brought into the mainstream of breeding lines. Recent advances and progress made in molecular markers have been substantial tools for deeper insights of genetics, and greatly complemented breeding strategies. Integration of the next-generation sequencing (NGS) technologies with precise phenotyping, association mapping, proteome and metabolome studies has increased the chances of finding candidate genes and their allelic variants controlling a trait of interest. Further, these functional markers (FMMs), genotype-by-sequencing and association mapping methodologies have opened new avenues for identification of novel genetic resources (lines) that can facilitate accelerated crop breeding programs for increased yield, high nutritional quality, and tolerance to a variety of abiotic and biotic stresses. The details of popular molecular markers, advancement in the technologies and strategies for crop diversity studies and their application in crop breeding programs are presented here.

摘要

作物改良是一项持续不断的工作,自约一万年前原始人从狩猎和觅食过渡到驯化和作物种植以来就是如此。从那时起,人为干预通过对动植物进行基因改造以满足人类需求,改变了作物进化的整个局面。驯化过程导致了作物在外观、品质和生产力方面发生了巨大变化,这对全球粮食安全做出了重大贡献。可耕地、淡水的大量减少,以及生物和非生物胁迫风险的增加,要求立即关注作物改良,以应对到2020年约40%的粮食更高需求。因此,植物遗传变异在植物育种改良中起着关键作用。大多数对作物改良有用的遗传变异已保存在世界各地的种子基因库中;需要将它们引入育种系的主流。分子标记方面的最新进展和成果已成为深入了解遗传学的重要工具,并极大地补充了育种策略。将下一代测序(NGS)技术与精确表型分析、关联作图、蛋白质组和代谢组研究相结合,增加了找到控制感兴趣性状的候选基因及其等位变异的机会。此外,这些功能标记(FMMs)、测序分型和关联作图方法为鉴定新的遗传资源(品系)开辟了新途径,这些资源有助于加速作物育种计划,以提高产量、改善营养品质,并增强对各种非生物和生物胁迫的耐受性。本文介绍了常用分子标记的详细信息、技术进展以及作物多样性研究策略及其在作物育种计划中的应用。

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