Department of Plant Pathology, Shandong Agricultural University, No. 61 Daizong street, Tai'an 271018, PR China.
Microb Pathog. 2010 Jul-Aug;49(1-2):23-31. doi: 10.1016/j.micpath.2010.03.004. Epub 2010 Mar 20.
The Phytophthora capsici inflicts damage on numerous crop plants by secreting a series of pectinase including pectin methylesterase (PME). We identified a PME gene (pcpme6) from a genomic library of a highly virulent P. capsici strain SD33 which had an encoded a polypeptide of 348 amino acid residues with a predicted molecular mass of 38.18 kDa. We also confirmed that pcpme6 was increasingly expressed during symptom development following P. capsici infection of pepper leaves. The wild-type protein (PCPME6) ca. 50 kDa was obtained from pcpme6 expression, and PME activity trend in PCPME6-treated pepper leaves increased with symptom development. PCPME6 degraded leaf cell walls, resulting in the production of necrotic lesions. Mutation of Asp residues in active sites within pcpme6 affected PCPME6 activity and its virulence on pepper leaves. Results show that pcpme6 is a gene within the pme gene family that is important for pathogenesis of P. capsici on pepper.
辣椒疫霉通过分泌一系列果胶酶,包括果胶甲酯酶(PME),对许多作物植物造成损害。我们从高度毒力的辣椒疫霉菌株 SD33 的基因组文库中鉴定出一个 PME 基因(pcpme6),该基因编码一个由 348 个氨基酸残基组成的多肽,预测分子量为 38.18 kDa。我们还证实,在辣椒叶片受到辣椒疫霉感染后,pcpme6 在症状发展过程中表达增加。从 pcpme6 表达中获得了约 50 kDa 的野生型蛋白(PCPME6),并且在 PCPME6 处理的辣椒叶片中 PME 活性趋势随着症状的发展而增加。PCPME6 降解叶片细胞壁,导致坏死病变的产生。pcpme6 中活性位点天冬氨酸残基的突变影响 PCPME6 的活性及其在辣椒叶片上的毒力。结果表明,pcpme6 是 pme 基因家族中的一个基因,对辣椒疫霉在辣椒上的致病性很重要。