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新型 PSK 编码基因的表达提高了转基因植物种子的生长和产量。

Expression of a novel PSK-encoding gene from soybean improves seed growth and yield in transgenic plants.

机构信息

Shanghai Key Lab of Bio-energy Crops, Plant Science Center, School of Life Sciences, Shanghai University, Shanghai, 200444, China.

National Key Laboratory of Plant Molecular Genetics, CAS Center for Excellence in Molecular Plant Sciences, Institute of Plant Physiology and Ecology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai, 200032, China.

出版信息

Planta. 2019 Apr;249(4):1239-1250. doi: 10.1007/s00425-019-03101-w. Epub 2019 Feb 12.

Abstract

Expression of GmPSKγ1 , a novel PSK-encoding gene from soybean, increases seed size and yield in transgenic plants by promoting cell expansion. Phytosulfokine-α (PSK-α), a sulfated pentapeptide hormone with the sequence YIYTQ, plays important roles in many aspects of plant growth and development. In this study, we identified a pair of putative precursor genes in soybean, GmPSKγ1 and -2, encoding a PSK-like peptide: PSK-γ. Similar to PSK-α in amino acid composition, the sequence of PSK-γ is YVYTQ, and the tyrosines undergo sulfonylation. Treatment of Arabidopsis seedlings with synthetic sulfated PSK-γ significantly enhanced root elongation, indicating that PSK-γ might be a functional analog of PSK-α. Expression pattern analysis revealed that the two GmPSKγ genes, especially GmPSKγ1, are primarily expressed in developing soybean seeds. Heterologous expression of GmPSKγ1 under the control of a seed-specific promoter markedly increased seed size and weight in Arabidopsis, and this promoting effect of PSK-γ on seed growth was further confirmed in transgenic tobacco constitutively expressing GmPSKγ1. Cytological analysis of transgenic Arabidopsis seeds revealed that PSK-γ promotes seed growth by inducing embryo cell expansion. In addition, expression analysis of downstream candidate genes suggested that PSK-γ signaling might regulate cell wall loosening to promote cell expansion in Arabidopsis seeds. Overall, our results shed light on the mechanism by which PSK-γ promotes seed growth, paving the way for the use of this new peptide for biotechnological improvement of crop seed/grain size and yield.

摘要

大豆新型 PSK 编码基因 GmPSKγ1 的表达通过促进细胞扩张增加转基因植物的种子大小和产量。植物磺基肽-α(PSK-α)是一种具有 YIYTQ 序列的磺化五肽激素,在植物生长和发育的许多方面发挥着重要作用。在本研究中,我们在大豆中鉴定了一对假定的前体基因 GmPSKγ1 和 -2,它们编码一种 PSK 样肽:PSK-γ。与 PSK-α在氨基酸组成上相似,PSK-γ的序列为 YVYTQ,且酪氨酸发生磺化。合成的磺化 PSK-γ 处理拟南芥幼苗显著增强了根的伸长,表明 PSK-γ可能是 PSK-α的功能类似物。表达模式分析表明,这两个 GmPSKγ 基因,特别是 GmPSKγ1,主要在发育中的大豆种子中表达。在种子特异性启动子的控制下异源表达 GmPSKγ1 显著增加了拟南芥种子的大小和重量,并且在稳定表达 GmPSKγ1 的转基因烟草中进一步证实了 PSK-γ对种子生长的促进作用。对转基因拟南芥种子的细胞学分析表明,PSK-γ通过诱导胚细胞扩张促进种子生长。此外,下游候选基因的表达分析表明,PSK-γ 信号可能调节细胞壁松弛以促进拟南芥种子中细胞的扩张。总体而言,我们的结果阐明了 PSK-γ 促进种子生长的机制,为利用这种新肽生物技术改良作物种子/谷物大小和产量铺平了道路。

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