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锌指蛋白 5(ZFP5)与乙烯信号转导相关,共同调控拟南芥在磷钾缺乏诱导下的根毛发育。

Zinc finger protein 5 (ZFP5) associates with ethylene signaling to regulate the phosphate and potassium deficiency-induced root hair development in Arabidopsis.

机构信息

Department of Agronomy, College of Agriculture and Biotechnology, Zhejiang University, 866 Yuhangtang Rd, Hangzhou, 310058, China.

College of Life Sciences, Northwest A&F University, 22 Xinong Rd, Yangling, 712100, Shaanxi Province, China.

出版信息

Plant Mol Biol. 2020 Jan;102(1-2):143-158. doi: 10.1007/s11103-019-00937-4. Epub 2019 Nov 28.

Abstract

Zinc finger protein transcription factor ZFP5 positively regulates root hair elongation in response to Pi and potassium deficiency by mainly activating the expression of EIN2 in Arabidopsis. Phosphate (Pi) and potassium (K) are major plant nutrients required for plant growth and development, and plants respond to low-nutrient conditions via metabolic and morphology changes. The C2H2 transcription factor ZFP5 is a key regulator of trichome and root hair development in Arabidopsis. However, its role in regulating root hair development under nutrient deprivations remains unknown. Here, we show that Pi and potassium deficiency could not restore the short root hair phenotype of zfp5 mutant and ZFP5 RNAi lines to wild type level. The deprivation of either of these nutrients also induced the expression of ZFP5 and the activity of an ethylene reporter, pEBS:GUS. The significant reduction of root hair length in ein2-1 and ein3-1 as compared to wild-type under Pi and potassium deficiency supports the involvement of ethylene in root hair elongation. Furthermore, the application of 1-aminocyclopropane-1-carboxylic acid (ACC) significantly enhanced the expression level of ZFP5 while the application of 2-aminoethoxyvinyl glycine (AVG) had the opposite effect when either Pi or potassium was deprived. Further experiments reveal that ZFP5 mainly regulates transcription of ETHYLENE INSENSITIVE 2 (EIN2) to control deficiency-mediated root hair development through ethylene signaling. Generally, these results suggest that ZFP5 regulates root hair elongation by interacting with ethylene signaling mainly through regulates the expression of EIN2 in response to Pi and potassium deficiency in Arabidopsis.

摘要

锌指蛋白转录因子 ZFP5 通过主要激活拟南芥 EIN2 的表达正向调控根毛伸长对磷和钾缺乏的反应。磷酸盐(Pi)和钾(K)是植物生长和发育所必需的主要植物养分,植物通过代谢和形态变化对低营养条件做出反应。C2H2 转录因子 ZFP5 是拟南芥毛状体和根毛发育的关键调节因子。然而,其在调节营养缺乏下根毛发育中的作用尚不清楚。在这里,我们表明,Pi 和钾缺乏不能将 zfp5 突变体和 ZFP5 RNAi 系的短根毛表型恢复到野生型水平。这些养分的任何一种缺乏也诱导了 ZFP5 的表达和乙烯报告基因 pEBS:GUS 的活性。与野生型相比,在 Pi 和钾缺乏下,ein2-1 和 ein3-1 的根毛长度显著减少,这支持了乙烯在根毛伸长中的作用。此外,1-氨基环丙烷-1-羧酸(ACC)的应用显著增强了 ZFP5 的表达水平,而当 Pi 或钾缺乏时,2-氨基乙氧基乙烯基甘氨酸(AVG)的应用则产生相反的效果。进一步的实验表明,ZFP5 主要通过乙烯信号调节 ETHYLENE INSENSITIVE 2(EIN2)的转录来控制通过乙烯信号对 Pi 和钾缺乏介导的根毛发育的调控。总的来说,这些结果表明,ZFP5 通过与乙烯信号相互作用主要通过调节 EIN2 的表达来调控根毛伸长,以响应拟南芥中的 Pi 和钾缺乏。

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