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甘薯扩张蛋白cDNA(IbEXP1)的过表达提高了拟南芥的种子产量。

Overexpression of sweetpotato expansin cDNA (IbEXP1) increases seed yield in Arabidopsis.

作者信息

Bae Jung Myung, Kwak Man Sup, Noh Seol Ah, Oh Mi-Joung, Kim Youn-Sung, Shin Jeong Sheop

机构信息

Division of Life Sciences, Korea University, Seoul, 136-701, Republic of Korea,

出版信息

Transgenic Res. 2014 Aug;23(4):657-67. doi: 10.1007/s11248-014-9804-1. Epub 2014 May 8.

DOI:10.1007/s11248-014-9804-1
PMID:24806537
Abstract

Results of transcriptome analyses suggest that expansin genes play an active role in seed development and yield, but gain- or loss-of-function studies have not yet elucidated the functional role(s) of the expansin gene(s) in these processes. We have overexpressed a sweetpotato expansin gene (IbEXP1) in Arabidopsis under the control of cauliflower mosaic 35S promoter in an attempt to determine the effect of the expansin gene in seed development and yield in heterologous plants. The growth rate was enhanced in IbEXP1-overexpressing (ox) plants relative to wild-type Col-0 plants during early vegetative growth stage. At the reproductive stage, the number of rosette leaves was higher in IbEXP1-ox plants than that in Col-0 plants, and siliques were thicker. IbEXP1-ox plants produced larger seeds, accumulated more protein and starch in each seed, and produced more inflorescence stems and siliques than Col-0 plants, leading to a 2.1-2.5-fold increase in total seed yield per plant. The transcript level of IbEXP1 was up-regulated in response to brassinosteroid (BR) treatment in sweetpotato, and the transcript levels of three BR-responsive genes, fatty acid elongase 3-ketoacyl-CoA synthase 1, HAIKU1 and MINISEED3, were also increased in IbEXP1-ox Arabidopsis plants, suggesting a possible involvement of IbEXP1 in at least one of the BR signaling pathways. Based on these results, we suggest that overexpression of IbEXP1 gene in heterologous plants is effective in increasing seed size and number and, consequently, seed yield.

摘要

转录组分析结果表明,扩张蛋白基因在种子发育和产量方面发挥着积极作用,但功能获得或丧失研究尚未阐明扩张蛋白基因在这些过程中的功能作用。我们在花椰菜花叶病毒35S启动子的控制下,在拟南芥中过表达了一个甘薯扩张蛋白基因(IbEXP1),试图确定扩张蛋白基因对异源植物种子发育和产量的影响。在早期营养生长阶段,与野生型Col-0植物相比,过表达IbEXP1(ox)的植物生长速率加快。在生殖阶段,IbEXP1-ox植物的莲座叶数量比Col-0植物多,角果更厚。IbEXP1-ox植物产生的种子更大,每个种子中积累的蛋白质和淀粉更多,并且比Col-0植物产生更多的花序茎和角果,导致单株种子总产量增加2.1至2.5倍。甘薯中IbEXP1的转录水平在油菜素内酯(BR)处理后上调,并且在过表达IbEXP1的拟南芥植物中,三个BR响应基因脂肪酸延长酶3-酮酰辅酶A合酶1、HAIKU1和MINISEED3的转录水平也增加,这表明IbEXP1可能参与了至少一条BR信号通路。基于这些结果,我们认为在异源植物中过表达IbEXP1基因可有效增加种子大小和数量,从而提高种子产量。

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