Key Laboratory of Crop Biology of Anhui Province, School of Life Sciences, Anhui Agricultural University, Hefei, 230031, China.
Mol Genet Genomics. 2014 Dec;289(6):1061-74. doi: 10.1007/s00438-014-0867-8. Epub 2014 Sep 12.
By promoting cell wall loosening, expansins contribute to cell enlargement during various developmental processes. Nevertheless, the role of expansins in the expansion and development of endosperm--a major seed component whose cell size is significantly associated with grain yield--is poorly understood. To explore associated biological processes and the evolution of expansins in maize, we performed a systematic analysis of the expansin gene family encompassing gene structure, phylogeny, chromosomal location, gene duplication, and gene ontology. A total of 88 maize expansin genes (ZmEXPs) were identified and categorized into three subfamilies according to their phylogenetic relationships. Expression patterns of ZmEXPs were also investigated in nine different tissues by semi-quantitative RT-PCR. The expression of eight ZmEXPs was detected in endosperm, with five showing endosperm-specific expression. Quantitative RT-PCR was used to analyze expression patterns of the eight ZmEXPs in endosperm (10 days after pollination) under abscisic acid (ABA) and gibberellic acid (GA3) treatments. All eight ZmEXPs were found to be significantly regulated by ABA and GA3 in endosperm, suggesting important roles for these hormones in the regulation of ZmEXPs during endosperm development. Our results provide essential information for ZmEXPs cloning and functional exploration, which will assist research on expansin-related mechanisms and contribute to future enhancement of maize grain yield.
通过促进细胞壁松弛,扩展蛋白有助于在各种发育过程中促进细胞增大。然而,扩展蛋白在胚乳——种子的主要成分——的扩展和发育中的作用还知之甚少,胚乳细胞大小与谷物产量密切相关。为了探索与玉米中扩展蛋白相关的生物学过程和进化,我们对扩展蛋白基因家族进行了系统分析,包括基因结构、系统发育、染色体定位、基因复制和基因本体论。共鉴定出 88 个玉米扩展蛋白基因(ZmEXPs),并根据其系统发育关系分为三个亚家族。还通过半定量 RT-PCR 研究了 9 种不同组织中 ZmEXPs 的表达模式。在授粉后 10 天的胚乳中检测到 8 个 ZmEXPs 的表达,其中 5 个表现出胚乳特异性表达。通过定量 RT-PCR 分析了 ABA 和 GA3 处理下胚乳中 8 个 ZmEXPs 的表达模式。发现所有 8 个 ZmEXPs 在胚乳中均受到 ABA 和 GA3 的显著调控,表明这些激素在胚乳发育过程中对 ZmEXPs 的调控中起重要作用。我们的研究结果为 ZmEXPs 的克隆和功能探索提供了重要信息,这将有助于研究与扩展蛋白相关的机制,并为未来提高玉米的谷物产量做出贡献。