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[玉米不同杂种优势近等基因系的基因表达分析]

[Gene expression analysis of near-isogenic lines for different heterosis in maize].

作者信息

Wang Ze-Lio, Wang Lu-Xin, Zhang Yong-Hui, Ma Jun-Ye

机构信息

College of Life Science, Shandong Agricultural University, Taian 271018, China.

出版信息

Yi Chuan Xue Bao. 2004 Apr;31(4):345-8.

Abstract

In this report, we used three pairs of near-isogenic lines( NILs) 478,488-1 and 488-2, which are different in seed size and leaves above the top ear, to make a survey of the expressions of six genes in leaf tissues of these NILs series in order to find whether these genes serve as models for the rate-limiting genes in the heterosis. Our results showed that some of genes may play a role in heterosis response either through increased or decreased expression. When all six genes were considered as a whole, they showed a tendency for higher gene expression in 488-1 than in 488-2 and in 478, and in 488-1 x 340 than in 478 x 340 and in 488-2 x 340. Sus1, Sh1 and ZmSps34-3' were good candidate genes because they have been proposed to be rate-limiting for the seed size and grain weight of the individuals heterosis. And also, in order to seek a molecular genetic dissection of heterosis, two main theories, dominance and overdominance, which hold the classical explanation for the heterosis, were discussed too.

摘要

在本报告中,我们使用了三对近等基因系(NILs)478、488-1和488-2,它们在种子大小和顶部穗以上叶片方面存在差异,对这些NILs系列叶片组织中六个基因的表达进行了调查,以确定这些基因是否作为杂种优势中限速基因的模型。我们的结果表明,一些基因可能通过增加或减少表达在杂种优势反应中发挥作用。当将所有六个基因作为一个整体考虑时,它们在488-1中比在488-2和478中,以及在488-1×340中比在478×340和488-2×340中表现出更高的基因表达趋势。Sus1、Sh1和ZmSps34-3'是很好的候选基因,因为它们被认为是个体杂种优势种子大小和粒重的限速基因。此外,为了寻求杂种优势的分子遗传剖析,还讨论了两种对杂种优势具有经典解释的主要理论,即显性和超显性。

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