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ZmGE2 基因内的转座元件插入与玉米中胚乳比的增加有关。

A transposable element insertion within ZmGE2 gene is associated with increase in embryo to endosperm ratio in maize.

机构信息

National Maize Improvement Center of China, Beijing Key Laboratory of Crop Genetic Improvement, China Agricultural University, Yuanmingyuan West Road, Haidian, Beijing, 100193, China.

出版信息

Theor Appl Genet. 2012 Nov;125(7):1463-71. doi: 10.1007/s00122-012-1926-3. Epub 2012 Jul 7.

Abstract

Most of the maize kernel oil is located in the embryo while the majority of starch is located in the endosperm. Maize kernel composition and value are affected significantly by the ratio of the embryo size to the endosperm size; however, the genetic regulation of embryo to endosperm ratio (EER) in maize is unknown. Here we identified ZmGE2 gene, which encodes a cytochrome p450 protein, as a gene associated with EER variation in maize. We first expressed rice Giant Embryo (GE) gene driven by oleosin promoter in maize and detected a 23.2 % reduction in EER in transgenic seeds, demonstrating the existence of evolutionarily conserved mechanisms for EER determination in rice and maize. We next identified maize GE2, a homolog of rice GE sharing 70 % identity in amino sequence, as a candidate based on the similar expression pattern and co-localization with a previously detected QTL for EER. Followed by linkage and association mapping, a 247-bp transposable element (TE) insertion in 3'-untranslated region of ZmGE2 gene was identified to be associated with increase in EER and kernel oil content. Expression level of the favorable ZmGE2 allele containing the 247-bp TE insertion was strongly reduced. In addition, the 247-bp TE insertion site was a selection target during the artificial long-term selection for the high EER trait in a high oil population. This is the first report that demonstrates an association of ZmGE2 with EER variation in maize and identifies ZmGE2 gene as a promising target for manipulation of EER and grain composition by either transgenic approach or molecular breeding in maize.

摘要

大多数玉米胚乳中的油位于胚乳中,而大部分淀粉位于胚乳中。玉米胚乳的组成和价值受到胚大小与胚乳大小之比的显著影响;然而,玉米胚乳比(EER)的遗传调控尚不清楚。在这里,我们鉴定了 ZmGE2 基因,它编码一种细胞色素 P450 蛋白,是与玉米 EER 变化相关的基因。我们首先在玉米中表达了由油蛋白启动子驱动的水稻巨型胚(GE)基因,并检测到转基因种子中 EER 降低了 23.2%,证明了在水稻和玉米中存在进化保守的 EER 决定机制。接下来,我们根据相似的表达模式和与先前检测到的 EER 数量性状位点的共定位,鉴定了玉米 GE2 作为候选基因,它是水稻 GE 的同源物,在氨基酸序列上有 70%的同一性。随后进行连锁和关联作图,发现 ZmGE2 基因 3'非翻译区的一个 247-bp 转座元件(TE)插入与 EER 和 kernel oil content 的增加有关。含有 247-bp TE 插入的有利 ZmGE2 等位基因的表达水平显著降低。此外,247-bp TE 插入位点是人工长期选择高 EER 性状的高油群体中的一个选择目标。这是第一个证明 ZmGE2 与玉米 EER 变化相关的报告,并确定 ZmGE2 基因是通过转基因方法或分子育种操纵 EER 和谷物组成的有前途的靶标。

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