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大豆疫霉 TatD 核酸酶正向调控孢子形成,负向调控致病力。

Phytophthora sojae TatD nuclease positively regulates sporulation and negatively regulates pathogenesis.

出版信息

Mol Plant Microbe Interact. 2014 Oct;27(10):1070-80. doi: 10.1094/MPMI-05-14-0153-R.

Abstract

During pathogenic interactions, both the host and pathogen are exposed to conditions that induce programmed cell death (PCD). Certain aspects of PCD have been recently examined in eukaryotic microbes but not in oomycetes. Here, we identified conserved TatD proteins in Phytophthora sojae; the proteins are key components of DNA degradation in apoptosis. We selected PsTatD4 for further investigation because the enzyme is unique to the oomycete branch of the phylogenetic tree. The purified protein exhibited DNase activity in vitro. Its expression was upregulated in sporangia and later infective stages but downregulated in cysts and during early infection. Functional analysis revealed that the gene was required for sporulation and zoospore production, and the expression levels were associated with the numbers of hydrogen-peroxide-induced terminal dUTP nick end-labeling-positive cells. Furthermore, overexpression of PsTatD4 gene reduced the virulence in a susceptible soybean cultivar. Together, these data suggest that apoptosis may play different roles in the early and late infective stages of P. sojae, and that PsTatD4 is a key regulator of infection. The association of PsTatD4 and apoptosis will lay a foundation to understanding the basic biology of apoptosis and its roles in P. sojae disease cycle.

摘要

在致病相互作用中,宿主和病原体都暴露于诱导程序性细胞死亡(PCD)的条件下。最近在真核微生物中检查了 PCD 的某些方面,但在卵菌中没有检查。在这里,我们在大豆疫霉菌中鉴定了保守的 TatD 蛋白;这些蛋白质是细胞凋亡中 DNA 降解的关键组成部分。我们选择 PsTatD4 进行进一步研究,因为该酶是在卵菌进化枝中特有的。纯化的蛋白质在体外表现出 DNA 酶活性。其表达在游动孢子和后期侵染阶段上调,但在休眠孢子囊和早期侵染时下调。功能分析表明,该基因对于孢子形成和游动孢子产生是必需的,并且表达水平与过氧化氢诱导的末端 dUTP 缺口末端标记阳性细胞数量相关。此外,PsTatD4 基因的过表达降低了在易感大豆品种中的毒力。总之,这些数据表明细胞凋亡可能在大豆疫霉菌的早期和晚期侵染阶段发挥不同的作用,并且 PsTatD4 是侵染的关键调节因子。PsTatD4 与细胞凋亡的关联将为理解细胞凋亡的基本生物学及其在大豆疫霉菌疾病周期中的作用奠定基础。

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