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水稻诱变育种:培育新型超级作物的基础。

Mutagenesis in Rice: The Basis for Breeding a New Super Plant.

作者信息

Viana Vívian Ebeling, Pegoraro Camila, Busanello Carlos, Costa de Oliveira Antonio

机构信息

Centro de Genômica e Fitomelhoramento, Faculdade de Agronomia Eliseu Maciel, Departamento de Fitotecnia, Universidade Federal de Pelotas, Campus Capão do Leão, Rio Grande do Sul, Brazil.

出版信息

Front Plant Sci. 2019 Nov 8;10:1326. doi: 10.3389/fpls.2019.01326. eCollection 2019.

Abstract

The high selection pressure applied in rice breeding since its domestication thousands of years ago has caused a narrowing in its genetic variability. Obtaining new rice cultivars therefore becomes a major challenge for breeders and developing strategies to increase the genetic variability has demanded the attention of several research groups. Understanding mutations and their applications have paved the way for advances in the elucidation of a genetic, physiological, and biochemical basis of rice traits. Creating variability through mutations has therefore grown to be among the most important tools to improve rice. The small genome size of rice has enabled a faster release of higher quality sequence drafts as compared to other crops. The move from structural to functional genomics is possible due to an array of mutant databases, highlighting mutagenesis as an important player in this progress. Furthermore, due to the synteny among the Poaceae, other grasses can also benefit from these findings. Successful gene modifications have been obtained by random and targeted mutations. Furthermore, following mutation induction pathways, techniques have been applied to identify mutations and the molecular control of DNA damage repair mechanisms in the rice genome. This review highlights findings in generating rice genome resources showing strategies applied for variability increasing, detection and genetic mechanisms of DNA damage repair.

摘要

自数千年前水稻驯化以来,在水稻育种中施加的高强度选择压力导致其遗传变异性变窄。因此,培育新的水稻品种成为育种者面临的一项重大挑战,而制定增加遗传变异性的策略已引起多个研究团队的关注。对突变及其应用的了解为阐明水稻性状的遗传、生理和生化基础方面的进展铺平了道路。因此,通过突变创造变异性已成为改良水稻的最重要工具之一。与其他作物相比,水稻较小的基因组规模使得能够更快地发布更高质量的序列草图。由于一系列突变体数据库的存在,从结构基因组学向功能基因组学的转变成为可能,这突出了诱变在这一进程中的重要作用。此外,由于禾本科植物之间的共线性,其他禾本科植物也能从这些研究结果中受益。通过随机突变和定向突变已成功实现了基因修饰。此外,沿着突变诱导途径,已应用多种技术来鉴定水稻基因组中的突变以及DNA损伤修复机制的分子调控。本综述重点介绍了在生成水稻基因组资源方面的研究成果,展示了用于增加变异性、检测DNA损伤修复的遗传机制的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2923/6857675/b3466d069fff/fpls-10-01326-g001.jpg

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