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一种WD40蛋白AtGHS40,在高糖条件下的幼苗生长过程中对脱落酸降解和信号转导基因起负调控作用。

A WD40 protein, AtGHS40, negatively modulates abscisic acid degrading and signaling genes during seedling growth under high glucose conditions.

作者信息

Hsiao Yu-Chun, Hsu Yi-Feng, Chen Yun-Chu, Chang Yi-Lin, Wang Co-Shine

机构信息

Graduate Institute of Biotechnology, National Chung Hsing University, Taichung, 40227, Taiwan.

NCHU-UCD Plant and Food Biotechnology Center, NCHU, Taichung, 40227, Taiwan.

出版信息

J Plant Res. 2016 Nov;129(6):1127-1140. doi: 10.1007/s10265-016-0849-5. Epub 2016 Jul 21.

Abstract

The Arabidopsis thaliana T-DNA insertion mutant glucose hypersensitive (ghs) 40-1 exhibited hypersensitivity to glucose (Glc) and abscisic acid (ABA). The ghs40-1 mutant displayed severely impaired cotyledon greening and expansion and showed enhanced reduction in hypocotyl elongation of dark-grown seedlings when grown in Glc concentrations higher than 3 %. The Glc-hypersensitivity of ghs40-1 was correlated with the hyposensitive phenotype of 35S::AtGHS40 seedlings. The phenotypes of ghs40-1 were recovered by complementation with 35S::AtGHS40. The AtGHS40 (At5g11240) gene encodes a WD40 protein localized primarily in the nucleus and nucleolus using transient expression of AtGHS40-mRFP in onion cells and of AtGHS40-EGFP and EGFP-AtGHS40 in Arabidopsis protoplasts. The ABA biosynthesis inhibitor fluridone extensively rescued Glc-mediated growth arrest. Quantitative real time-PCR analysis showed that AtGHS40 was involved in the control of Glc-responsive genes. AtGHS40 acts downstream of HXK1 and is activated by ABI4 while ABI4 expression is negatively modulated by AtGHS40 in the Glc signaling network. However, AtGHS40 may not affect ABI1 and SnRK2.6 gene expression. Given that AtGHS40 inhibited ABA degrading and signaling gene expression levels under high Glc conditions, a new circuit of fine-tuning modulation by which ABA and ABA signaling gene expression are modulated in balance, occurred in plants. Thus, AtGHS40 may play a role in ABA-mediated Glc signaling during early seedling development. The biochemical function of AtGHS40 is also discussed.

摘要

拟南芥T-DNA插入突变体葡萄糖超敏(ghs)40-1对葡萄糖(Glc)和脱落酸(ABA)表现出超敏反应。ghs40-1突变体的子叶绿化和扩展严重受损,并且当在高于3%的Glc浓度下生长时,黑暗生长的幼苗的下胚轴伸长表现出更强的降低。ghs40-1的Glc超敏反应与35S::AtGHS40幼苗的低敏表型相关。通过用35S::AtGHS40互补,ghs40-1的表型得以恢复。AtGHS40(At5g11240)基因编码一种WD40蛋白,通过在洋葱细胞中瞬时表达AtGHS40-mRFP以及在拟南芥原生质体中表达AtGHS40-EGFP和EGFP-AtGHS40,该蛋白主要定位于细胞核和核仁。ABA生物合成抑制剂氟啶酮广泛地挽救了Glc介导的生长停滞。实时定量PCR分析表明AtGHS40参与了对Glc响应基因的调控。AtGHS40在HXK1的下游起作用,并被ABI4激活,而在Glc信号网络中,AtGHS40对ABI4的表达起负调控作用。然而,AtGHS40可能不影响ABI1和SnRK2.6基因的表达。鉴于AtGHS40在高Glc条件下抑制ABA降解和信号转导基因的表达水平,植物中出现了一种新的微调调节回路,通过该回路可平衡地调节ABA和ABA信号转导基因的表达。因此,AtGHS40可能在幼苗早期发育过程中的ABA介导的Glc信号传导中发挥作用。还讨论了AtGHS40的生化功能。

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