Transgenic poplar with the Zygophyllum xanthoxylon zinc finger protein transcription factor ZxZF gene shows improved drought resistance by regulating hormone signal

IF 4.5 2区 生物学 Q2 ENVIRONMENTAL SCIENCES
Tongtong Yao , Hongjiao Zhang , Weixi Zhang , Zhe Zhang , Kexin Wang , Dongxue Zhao , Hongrui Zhang , Nan Sun , Tanhang Zhang , Wenxu Zhu , Changjun Ding , Huihui Zhang
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Abstract

Drought stress has emerged as a primary factor constraining the growth, development, and yield of plants. The synthesis and signal transduction pathways of plant hormones play key roles in physiological adaptation to drought stress. The drought-resistance-associated C2H2 zinc finger protein transcription factor gene (ZxZF), which we previously identified, was transformed into Bofeng No. 1 poplar (Populus × euramericana c1. ‘Bofeng1’). This study evaluated the mechanism of drought resistance improvement from the perspective of gene interaction networks between transcription factors and genes that regulate plant hormone signals. Transcriptome analysis shows that many differentially expressed genes (DEGs) between before and after drought and between wild-type (WT) and ZxZF-overexpression (OE) lines was significantly enriched in plant hormone signal transduction pathways in the KEGG pathway. Quantitative analysis of hormone content and expression of genes related to synthesis and signal transduction showed that abscisic acid (ABA) content and proline content in OE lines increased significantly after drought stress, which could not only enhance water retention ability of plants, but also avoid excessive amplification of ABA signals. Drought stress also increases the jasmonic acid (JA) content in OE lines, and JA can increase the content of antioxidant enzymes in OE lines through downstream signal transduction pathways, thus further eliminating ROS in plant leaves. In addition, as growth hormones, IAA and GA could be associated with ABA and JA through various downstream signal transduction pathways, and the interaction between hormones and hormone signal transduction pathways could jointly improve the drought resistance of ZxZF-OE lines.

带有黄龙锌指蛋白转录因子 ZxZF 基因的转基因杨树通过调节激素信号提高了抗旱性
干旱胁迫已成为制约植物生长、发育和产量的一个主要因素。植物激素的合成和信号转导途径在对干旱胁迫的生理适应中起着关键作用。我们之前发现的抗旱相关 C2H2 锌指蛋白转录因子基因(ZxZF)被转化到了波丰 1 号杨树(Populus × euramericana c1. 'Bofeng1')中。本研究从转录因子与调控植物激素信号的基因之间相互作用网络的角度评估了抗旱性提高的机制。转录组分析表明,干旱前后、野生型(WT)和ZxZF高表达(OE)品系之间的许多差异表达基因(DEGs)在KEGG通路中的植物激素信号转导通路中显著富集。激素含量及合成和信号转导相关基因表达的定量分析表明,干旱胁迫后,OE株中脱落酸(ABA)含量和脯氨酸含量明显增加,这不仅能增强植物的保水能力,还能避免ABA信号的过度放大。干旱胁迫还能增加 OE 株系中茉莉酸(JA)的含量,而 JA 能通过下游信号转导途径增加 OE 株系中抗氧化酶的含量,从而进一步消除植物叶片中的 ROS。此外,IAA和GA作为生长素,可通过各种下游信号转导途径与ABA和JA发生关联,激素与激素信号转导途径之间的相互作用可共同提高ZxZF-OE株系的抗旱性。
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来源期刊
Environmental and Experimental Botany
Environmental and Experimental Botany 环境科学-环境科学
CiteScore
9.30
自引率
5.30%
发文量
342
审稿时长
26 days
期刊介绍: Environmental and Experimental Botany (EEB) publishes research papers on the physical, chemical, biological, molecular mechanisms and processes involved in the responses of plants to their environment. In addition to research papers, the journal includes review articles. Submission is in agreement with the Editors-in-Chief. The Journal also publishes special issues which are built by invited guest editors and are related to the main themes of EEB. The areas covered by the Journal include: (1) Responses of plants to heavy metals and pollutants (2) Plant/water interactions (salinity, drought, flooding) (3) Responses of plants to radiations ranging from UV-B to infrared (4) Plant/atmosphere relations (ozone, CO2 , temperature) (5) Global change impacts on plant ecophysiology (6) Biotic interactions involving environmental factors.
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