Gao Jian, Cao Mingna, Ye Wenwu, Li Haiyang, Kong Liang, Zheng Xiaobo, Wang Yuanchao
Department of Plant Pathology, Nanjing Agricultural University, Nanjing 210095, China.
Mol Plant Pathol. 2015 Jan;16(1):61-70. doi: 10.1111/mpp.12163. Epub 2014 Jun 30.
The sensing of stress signals and their transduction into appropriate responses are crucial for the adaptation, survival and infection of phytopathogenic fungi and oomycetes. Amongst evolutionarily conserved pathways, mitogen-activated protein kinase (MAPK) cascades function as key signal transducers that use phosphorylation to convey information. In this study, we identified a gene, designated PsMPK7, one of 14 predicted genes encoding MAPKs in Phytophthora sojae. PsMPK7 was highly transcribed in each tested stage, but was up-regulated in the zoospore, cyst and cyst germination stages. Silencing of PsMPK7 affected the growth of germinated cysts, oospore production and the pathogenicity of soybean. PsMPK7 transcription was induced by stresses from sorbitol, NaCl and hydrogen peroxide. Transformants in which PsMPK7 expression was silenced (PsMPK7-silenced) were significantly more sensitive to osmotic and oxidative stress. Aniline blue and diaminobenzidine staining revealed that the silenced lines did not suppress the host reactive oxygen species (ROS) burst, indicating that either the inoculated plants activated stronger defence responses to the transformants and/or the PsMPK7-silenced transformants failed to overcome plant defences. In addition, extracellular secretion of laccase decreased in the silenced lines. Overall, our results indicate that the PsMPK7 gene encodes a stress-associated MAPK in P. sojae that is important not only for responses to various stresses, but also for ROS detoxification, cyst germination, sexual oospore production and infection of soybean.
应激信号的感知及其转化为适当的反应对于植物病原真菌和卵菌的适应、生存和侵染至关重要。在进化保守的信号通路中,丝裂原活化蛋白激酶(MAPK)级联作为关键信号转导因子,通过磷酸化来传递信息。在本研究中,我们鉴定了一个基因,命名为PsMPK7,它是大豆疫霉中14个预测的MAPK编码基因之一。PsMPK7在每个测试阶段都有高转录,但在游动孢子、孢囊和孢囊萌发阶段上调。沉默PsMPK7影响了萌发孢囊的生长、卵孢子的产生以及大豆的致病性。PsMPK7的转录受到山梨醇、NaCl和过氧化氢胁迫的诱导。PsMPK7表达被沉默的转化体(PsMPK7沉默体)对渗透胁迫和氧化胁迫显著更敏感。苯胺蓝和二氨基联苯胺染色显示,沉默株系不能抑制寄主活性氧(ROS)的爆发,这表明要么接种的植物对转化体激活了更强的防御反应,要么PsMPK7沉默的转化体未能克服植物的防御。此外,沉默株系中漆酶的胞外分泌减少。总体而言,我们的结果表明,PsMPK7基因在大豆疫霉中编码一种与胁迫相关的MAPK,它不仅对各种胁迫反应很重要,而且对ROS解毒、孢囊萌发、有性卵孢子产生和大豆侵染也很重要。