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玉米(Zea mays L.)植株形态、产量、持绿性和病毒病抗性QTL的综合荟萃分析。

A comprehensive meta-analysis of plant morphology, yield, stay-green, and virus disease resistance QTL in maize (Zea mays L.).

作者信息

Wang Yijun, Xu Jing, Deng Dexiang, Ding Haidong, Bian Yunlong, Yin Zhitong, Wu Yarong, Zhou Bo, Zhao Ye

出版信息

Planta. 2016 Feb;243(2):459-71. doi: 10.1007/s00425-015-2419-9. Epub 2015 Oct 16.

Abstract

The meta-QTL and candidate genes will facilitate the elucidation of molecular bases underlying agriculturally important traits and open new avenues for functional markers development and elite alleles introgression in maize breeding program. A large number of QTLs attributed to grain productivity and other agriculturally important traits have been identified and deposited in public repositories. The integration of fruitful QTL becomes a major issue in current plant genomics. To this end, we first collected QTL for six agriculturally important traits in maize, including yield, plant height, ear height, leaf angle, stay-green, and maize rough dwarf disease resistance. The meta-analysis method was then employed to retrieve 113 meta-QTL. Additionally, we also isolated candidate genes for target traits by the bioinformatic technique. Several candidates, including some well-characterized genes, GA3ox2 for plant height, lg1 and lg4 for leaf angle, zfl1 and zfl2 for flowering time, were co-localized with established meta-QTL intervals. Intriguingly, in a relatively narrow meta-QTL region, the maize ortholog of rice yield-related gene GW8/OsSPL16 was believed to be a candidate for yield. Leveraging results presented in this study will provide further insights into the genetic architecture of maize agronomic traits. Moreover, the meta-QTL and candidate genes reported here could be harnessed for the enhancement of stress tolerance and yield performance in maize and translation to other crops.

摘要

元QTL和候选基因将有助于阐明农业重要性状的分子基础,并为玉米育种计划中功能标记开发和优良等位基因渗入开辟新途径。大量归因于谷物生产力和其他农业重要性状的QTL已被鉴定并保存在公共数据库中。有效QTL的整合成为当前植物基因组学中的一个主要问题。为此,我们首先收集了玉米六个农业重要性状的QTL,包括产量、株高、穗位高、叶夹角、持绿性和玉米粗缩病抗性。然后采用元分析方法检索到113个元QTL。此外,我们还通过生物信息学技术分离了目标性状的候选基因。几个候选基因,包括一些特征明确的基因,如控制株高的GA3ox2、控制叶夹角的lg1和lg4、控制开花时间的zfl1和zfl2,与已确定的元QTL区间共定位。有趣的是,在一个相对狭窄的元QTL区域,水稻产量相关基因GW8/OsSPL16的玉米直系同源基因被认为是产量的候选基因。利用本研究的结果将为玉米农艺性状的遗传结构提供进一步的见解。此外,本文报道的元QTL和候选基因可用于提高玉米的抗逆性和产量表现,并应用于其他作物。

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