Functional characterization of four soybean C2H2 zinc-finger genes in Phytophthora resistance.

IF 3.6 Plant signaling & behavior Pub Date : 2025-12-01 Epub Date: 2025-03-20 DOI:10.1080/15592324.2025.2481185
Yuting Chen, Xinyue Liu, Yanyan Zhou, Yu Zheng, Yating Xiao, Xingxing Yuan, Qiang Yan, Xin Chen
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Abstract

Soybean (Glycine max) is one of the most important industrial and oilseed crops; however, the yield is threatened by the invasion of various pathogens. Soybean stem and root rot, caused by Phytophthora sojae, is a destructive disease that significantly damages soybean production worldwide. C2H2 zinc finger protein (C2H2-ZFP) is a large transcription factor family in plants that plays crucial roles in stress response and hormone signal transduction. Given its importance, we analyzed the expression patterns of C2H2-ZFP family genes in response to P. sojae infection and selected four candidate genes to explore their molecular characteristics and functions related to P. sojae resistance. Subcellular localization analysis indicated that three ZFPs (GmZFP2, GmZFP3, and GmZFP4) were localized in the nucleus, while GmZFP1 was found in both the nucleus and plasma membrane. Dual-luciferase transient expression analysis revealed that all four ZFPs possessed transcriptional repression activation. Further transient expression in N. benthamiana leaves demonstrated that GmZFP2 induced significant cell death and reactive oxygen species (ROS) accumulation. GmZFP2 significantly enhanced the resistance to Phytophthora pathogens in N. benthamiana leaves and soybean hairy roots. This study provides insights in to the functional characterization of soybean ZFPs in Phytophthora resistance and demonstrates that GmZFP2 plays a positive role in P. sojae resistance in soybeans.

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四种大豆 C2H2 锌指基因在抵抗 Phytophthora 方面的功能特征。
大豆(Glycine max)是最重要的工业和油料作物之一;然而,产量受到各种病原体入侵的威胁。大豆根茎腐病是由大豆疫霉(Phytophthora sojae)引起的一种严重危害大豆生产的破坏性病害。C2H2锌指蛋白(C2H2- zfp)是植物中一个重要的转录因子家族,在逆境反应和激素信号转导中起着重要作用。考虑到C2H2-ZFP家族基因的重要性,我们分析了C2H2-ZFP家族基因在大豆大豆疫病感染中的表达模式,并选择了4个候选基因,探索其与大豆大豆疫病抗性相关的分子特征和功能。亚细胞定位分析表明,三个ZFPs (GmZFP2、GmZFP3和GmZFP4)定位在细胞核中,而GmZFP1在细胞核和质膜中均有发现。双荧光素酶瞬时表达分析显示,所有四种zfp都具有转录抑制激活。进一步在benthamiana叶片中的瞬时表达表明,GmZFP2诱导了显著的细胞死亡和活性氧(ROS)积累。GmZFP2显著增强了大豆毛状根和大豆叶片对疫霉病原菌的抗性。本研究为大豆ZFPs在抗疫疫病中的功能特性提供了新的认识,并证明了GmZFP2在大豆抗疫疫病中发挥了积极作用。
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