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赋予水稻(Oryza sativa L.)高产的直立穗型穗基因EP的鉴定与特性分析。

Identification and characterization of the erect-pose panicle gene EP conferring high grain yield in rice (Oryza sativa L.).

作者信息

Wang Jiayu, Nakazaki Tetsuya, Chen Shuqian, Chen Wenfu, Saito Hiroki, Tsukiyama Takuji, Okumoto Yutaka, Xu Zhenjin, Tanisaka Takatoshi

机构信息

Key Laboratory of Crop Physiology, Ecology, Genetics and Breeding, Ministry of Agriculture/Key Laboratory of Northern Japonica Rice Breeding of Liaoning, Shenyang Agricultural University, Shenyang, China.

出版信息

Theor Appl Genet. 2009 Jun;119(1):85-91. doi: 10.1007/s00122-009-1019-0. Epub 2009 Apr 29.

Abstract

The breeding of japonica varieties with erect-pose panicle (EP) has recently progressed in the northern part of China, because these varieties exhibit a far higher grain yield than the varieties with normal-pose panicle (NP). A genetic analysis using the F(2) population from the cross between Liaojing5, the first japonica EP variety in China, and the Japanese japonica NP variety Toyonishiki revealed that EP is governed by a single dominant gene EP. Based on previous studies, map-based cloning of EP locus was conducted using Liaojing5, Toyonishiki, their F(2) population, and a pair of near-isogenic lines for EP locus (ZF14 and WF14) derived from the cross between the two varieties; consequently, the STS marker H90 was found to completely cosegregate with panicle pose. The H90 is located in the coding sequence AK101247 in the database, and the AK101247 of Liaojing5 has a 12 bp sequence in exon 5 replaced with a 637 bp sequence of its wild type allele. It was therefore considered that the AK101247 encodes the protein of the wild type allele at EP locus, and that the sequence substitution in exon 5 of Liaojing5 is crucial for expression of the EP phenotype. The effects of EP gene on agronomic traits were investigated using two pairs of near-isogenic lines (ZF6 vs. WF6 and ZF14 vs. WF14) derived from the cross between the two varieties. Experimental results showed that EP gene markedly enhanced grain yield, chiefly by increasing number of secondary branches and number of grains on the secondary branch. EP gene also produced a remarkable increase in grain density.

摘要

直立穗型粳稻品种的培育近年来在中国北方取得了进展,因为这些品种的产量远高于常规穗型品种。利用中国首个直立穗型粳稻品种辽粳5号与日本粳稻常规穗型品种丰锦杂交的F₂群体进行遗传分析,结果表明直立穗型受单一显性基因EP控制。基于先前的研究,利用辽粳5号、丰锦、它们的F₂群体以及由这两个品种杂交衍生的一对EP基因座近等基因系(ZF14和WF14),对EP基因座进行了图位克隆;结果发现,STS标记H90与穗型完全共分离。H90位于数据库中的编码序列AK101247中,辽粳5号的AK101247在第5外显子中有一个12 bp的序列被其野生型等位基因的637 bp序列所取代。因此,可以认为AK101247编码EP基因座野生型等位基因的蛋白质,辽粳5号第5外显子中的序列替换对EP表型的表达至关重要。利用由这两个品种杂交衍生的两对近等基因系(ZF6与WF6以及ZF14与WF14),研究了EP基因对农艺性状的影响。实验结果表明,EP基因显著提高了产量,主要是通过增加二次枝梗数和二次枝梗上的粒数。EP基因还使籽粒密度显著增加。

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