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CYP78A13 编码区的变异影响水稻的粒长和产量。

Variations in CYP78A13 coding region influence grain size and yield in rice.

机构信息

State Key Laboratory of Plant Genomics, National Center for Plant Gene Research (Beijing), Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing, 100101, China; University of the Chinese Academy of Sciences, Yuquan Road, Beijing, 100039, China.

出版信息

Plant Cell Environ. 2015 Apr;38(4):800-11. doi: 10.1111/pce.12452. Epub 2014 Nov 11.

Abstract

Grain size is one of the most important determinants of crop yield in cereals. Here, we identified a dominant mutant, big grain2 (bg2-D) from our enhancer-trapping population. Genetic analysis and SiteFinding PCR (polymerase chain reaction) revealed that BG2 encodes a cytochrome P450, OsCYP78A13. Sequence search revealed that CYP78A13 has a paralogue Grain Length 3.2 (GL3.2, LOC_Os03g30420) in rice with distinct expression patterns, analysis of transgenic plants harbouring either CYP78A13 or GL3.2 showed that both can promote grain growth. Sequence polymorphism analysis with 1529 rice varieties showed that the nucleotide diversity at CYP78A13 gene body and the 20 kb flanking region in the indica varieties were markedly higher than those in japonica varieties. Further, comparison of the genomic sequence of CYP78A13 in the japonica cultivar Nipponbare and the indica cultivar 9311 showed that there were three InDels in the promoter region and eight SNPs (single nucleotide polymorphism) in its coding sequence. Detailed examination of the transgenic plants with chimaeric constructs suggested that variation in CYP78A13 coding region is responsible for the variation of grain yield. Taken together, our results suggest that the variations in CYP78A13 in the indica varieties hold potential in rice breeding for application of grain yield improvement.

摘要

粒型是决定谷物产量的最重要因素之一。在这里,我们从我们的增强子捕获群体中鉴定出一个显性突变体,大粒 2 型(bg2-D)。遗传分析和 SiteFinding PCR(聚合酶链反应)显示,BG2 编码一个细胞色素 P450,OsCYP78A13。序列搜索表明,CYP78A13 在水稻中有一个等位基因 Grain Length 3.2(GL3.2,LOC_Os03g30420),其表达模式不同,分析含有 CYP78A13 或 GL3.2 的转基因植物表明,两者都可以促进籽粒生长。对 1529 个水稻品种进行序列多态性分析表明,CYP78A13 基因体和 indica 品种侧翼 20kb 区的核苷酸多样性明显高于 japonica 品种。此外,比较 japonica 品种 Nipponbare 和 indica 品种 9311 中 CYP78A13 的基因组序列表明,在启动子区域有三个 InDels,在其编码序列中有八个 SNPs(单核苷酸多态性)。对具有嵌合构建体的转基因植物的详细检查表明,CYP78A13 编码区的变异是导致粒重变异的原因。综上所述,我们的研究结果表明, indica 品种中 CYP78A13 的变异在水稻育种中具有提高粒重的潜力。

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