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拟南芥 GSM1 参与高糖条件下早期幼苗生长中 ABI4 调控的 ABA 信号通路。

Arabidopsis GSM1 is involved in ABI4-regulated ABA signaling under high-glucose condition in early seedling growth.

机构信息

Key Laboratory of Eco-environments of Three Gorges Reservoir Region, Ministry of Education, School of Life Sciences, Southwest University, Chongqing 400715, China; Chongqing Key Laboratory of Plant Resource Conservation and Germplasm Innovation, Southwest University, Chongqing 400715, China.

Key Laboratory of Eco-environments of Three Gorges Reservoir Region, Ministry of Education, School of Life Sciences, Southwest University, Chongqing 400715, China; Chongqing Key Laboratory of Plant Resource Conservation and Germplasm Innovation, Southwest University, Chongqing 400715, China.

出版信息

Plant Sci. 2019 Oct;287:110183. doi: 10.1016/j.plantsci.2019.110183. Epub 2019 Jul 4.

Abstract

In plants, sugar acts as an essential signaling molecule that modulates various aspects of metabolism, growth and development, which are also controlled by phytohormones. However, the molecular mechanism of cross-talk between sugar and phytohormones still remains to be elucidated. We have identified gsm1 (glucose-hypersensitive mutant 1) as a mutant with impaired cotyledon development that shows sensitivity to exogenous abscisic acid (ABA). The addition of fluridone can reverse the glucose (Glc) inhibitory effect in gsm1, implying that endogenous ABA is involved in the Glc response of gsm1. In 4.5% Glc, the expression of Glc-induced ABA-responsive genes in gsm1-1 was nearly two times higher than that in the wild type. Compared to gsm1-1, the gsm1-1 abi4-1 double mutant exhibited reduced sensitivity to Glc and ABA, which was similar to the Glc and ABA insensitive phenotype of abi4-1, suggesting that ABI4 is epistatic to GSM1. In the treatment with 4.5% Glc, the GSM1 transcript level was greatly increased in abi4-1 by almost 4-fold of that in the wild type. These data suggest that GSM1 plays an important role in the ABI4-regulated Glc-ABA signaling cascade during Arabidopsis early seedling growth.

摘要

在植物中,糖作为一种重要的信号分子,调节代谢、生长和发育的各个方面,这些方面也受到植物激素的控制。然而,糖和植物激素之间的交流的分子机制仍有待阐明。我们已经鉴定出 gsm1(葡萄糖敏感突变体 1)是一种子叶发育受损的突变体,对外源脱落酸(ABA)表现出敏感性。添加氟啶酮可以逆转 gsm1 中葡萄糖(Glc)的抑制作用,这表明内源性 ABA 参与了 gsm1 的 Glc 反应。在 4.5%的 Glc 中,gsm1-1 中 Glc 诱导的 ABA 响应基因的表达比野生型高近两倍。与 gsm1-1 相比,gsm1-1 abi4-1 双突变体对 Glc 和 ABA 的敏感性降低,这与 abi4-1 的 Glc 和 ABA 不敏感表型相似,表明 ABI4 对 GSM1 是上位的。在 4.5% Glc 的处理中,abi4-1 中 GSM1 转录本水平比野生型增加了近 4 倍。这些数据表明,GSM1 在拟南芥早期幼苗生长过程中 ABI4 调节的 Glc-ABA 信号级联中起着重要作用。

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