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不同的、和等位基因控制中国东北水稻的抽穗期和产量潜力。 你提供的原文中存在一些不完整的表述,比如“Divergent,, and ”这里有缺失信息,但大致翻译如上。

Divergent , , and Alleles Control Heading Date and Yield Potential of Rice in Northeast China.

作者信息

Ye Jing, Niu Xiaojun, Yang Yaolong, Wang Shan, Xu Qun, Yuan Xiaoping, Yu Hanyong, Wang Yiping, Wang Shu, Feng Yue, Wei Xinghua

机构信息

State Key Laboratory of Rice Biology, China National Rice Research Institute, Hangzhou, China.

College of Agronomy, Shenyang Agricultural University, Shenyang, China.

出版信息

Front Plant Sci. 2018 Jan 26;9:35. doi: 10.3389/fpls.2018.00035. eCollection 2018.

Abstract

The heading date is a vital factor in achieving a full rice yield. Cultivars with particular flowering behaviors have been artificially selected to survive in the long-day and low-temperature conditions of Northeast China. To dissect the genetic mechanism responsible for heading date in rice populations from Northeast China, association mapping was performed to identify major controlling loci. A genome-wide association study (GWAS) identified three genetic loci, , , and , using general and mixed linear models. The three genes were sequenced to analyze natural variations and identify their functions. Loss-of-function alleles of these genes contributed to early rice heading dates in the northern regions of Northeast China, while functional alleles promoted late rice heading dates in the southern regions of Northeast China. Selecting environmentally appropriate allele combinations in new varieties is recommended during breeding. Introducing the early rice's genetic background into Northeast rice is a reasonable strategy for improving genetic diversity.

摘要

抽穗期是实现水稻高产的关键因素。具有特定开花习性的品种已被人工选择,以适应中国东北地区长日照和低温的条件。为了剖析中国东北水稻群体抽穗期的遗传机制,进行了关联分析以鉴定主要控制位点。全基因组关联研究(GWAS)使用一般线性模型和混合线性模型鉴定出了三个基因座, 、 和 。对这三个基因进行测序以分析自然变异并确定其功能。这些基因的功能缺失等位基因导致中国东北地区北部水稻早熟,而功能等位基因则促进中国东北地区南部水稻晚熟。建议在育种过程中选择适合环境的等位基因组合用于新品种培育。将早稻的遗传背景引入东北水稻是提高遗传多样性的合理策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0189/5790996/32a3077714b1/fpls-09-00035-g001.jpg

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