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赋予基因功能:通过功能基因组学实现水稻遗传改良的历程

Ascribing Functions to Genes: Journey Towards Genetic Improvement of Rice Via Functional Genomics.

作者信息

Mustafiz Ananda, Kumari Sumita, Karan Ratna

机构信息

South Asian University, Akbar Bhawan, Chanakyapuri, New Delhi.

Sher-e-Kashmir University of Agriculture Sciences and Technology, Jammu 180009, India.

出版信息

Curr Genomics. 2016 Jun;17(3):155-76. doi: 10.2174/1389202917666160202215135.

Abstract

Rice, one of the most important cereal crops for mankind, feeds more than half the world population. Rice has been heralded as a model cereal owing to its small genome size, amenability to easy transformation, high synteny to other cereal crops and availability of complete genome sequence. Moreover, sequence wealth in rice is getting more refined and precise due to resequencing efforts. This humungous resource of sequence data has confronted research fraternity with a herculean challenge as well as an excellent opportunity to functionally validate expressed as well as regulatory portions of the genome. This will not only help us in understanding the genetic basis of plant architecture and physiology but would also steer us towards developing improved cultivars. No single technique can achieve such a mammoth task. Functional genomics through its diverse tools viz. loss and gain of function mutants, multifarious omics strategies like transcriptomics, proteomics, metabolomics and phenomics provide us with the necessary handle. A paradigm shift in technological advances in functional genomics strategies has been instrumental in generating considerable amount of information w.r.t functionality of rice genome. We now have several databases and online resources for functionally validated genes but despite that we are far from reaching the desired milestone of functionally characterizing each and every rice gene. There is an urgent need for a common platform, for information already available in rice, and collaborative efforts between researchers in a concerted manner as well as healthy public-private partnership, for genetic improvement of rice crop better able to handle the pressures of climate change and exponentially increasing population.

摘要

水稻是人类最重要的谷类作物之一,养活了世界一半以上的人口。由于其基因组规模小、易于转化、与其他谷类作物的同源性高以及拥有完整的基因组序列,水稻被誉为谷类作物的典范。此外,由于重测序工作,水稻的序列资源越来越精细和精确。这一庞大的序列数据资源给研究界带来了巨大的挑战,同时也是一个对基因组的表达部分和调控部分进行功能验证的绝佳机会。这不仅有助于我们理解植物结构和生理的遗传基础,还将引导我们培育出改良品种。没有单一的技术能够完成如此艰巨的任务。功能基因组学通过其多样的工具,即功能丧失和功能获得突变体,以及转录组学、蛋白质组学、代谢组学和表型组学等多种组学策略,为我们提供了必要的手段。功能基因组学策略的技术进步发生了范式转变,这有助于生成大量有关水稻基因组功能的信息。我们现在有几个用于功能验证基因的数据库和在线资源,但尽管如此,我们距离对每一个水稻基因进行功能表征的理想目标仍相距甚远。迫切需要一个通用平台,整合水稻已有的信息,研究人员之间需要协同努力,以及建立良好的公私合作伙伴关系,以实现水稻作物的遗传改良,使其更好地应对气候变化的压力和人口的指数增长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18c0/4869004/465c46036737/CG-17-155_F1.jpg

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