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轮枝镰孢菌在不同温度条件下与马铃薯叶片互作的分泌物武器揭示了一个 CL[xxxx]LHM - 基序。

Secretome weaponries of Cochliobolus lunatus interacting with potato leaf at different temperature regimes reveal a CL[xxxx]LHM - motif.

机构信息

Institute of Bioresources and Sustainable Development (IBSD), Takyelpat, Imphal 795001, Manipur, India.

出版信息

BMC Genomics. 2014 Mar 20;15:213. doi: 10.1186/1471-2164-15-213.

Abstract

BACKGROUND

Plant and animal pathogenic fungus Cochliobolus lunatus cause great economic damages worldwide every year. C. lunatus displays an increased temperature dependent-virulence to a wide range of hosts. Nonetheless, this phenomenon is poorly understood due to lack of insights on the coordinated secretome weaponries produced by C. lunatus under heat-stress conditions on putative hosts. To understand the mechanism better, we dissected the secretome of C. lunatus interacting with potato (Solanum tuberosum L.) leaf at different temperature regimes.

RESULTS

C. lunatus produced melanized colonizing hyphae in and on potato leaf, finely modulated the ambient pH as a function of temperature and secreted diverse set of proteins. Using two dimensional gel electrophoresis (2-D) and mass spectrometry (MS) technology, we observed discrete secretomes at 20°C, 28°C and 38°C. A total of 21 differentially expressed peptide spots and 10 unique peptide spots (that did not align on the gels) matched with 28 unique protein models predicted from C. lunatus m118 v.2 genome peptides. Furthermore, C. lunatus secreted peptides via classical and non-classical pathways related to virulence, proteolysis, nucleic acid metabolism, carbohydrate metabolism, heat stress, signal trafficking and some with unidentified catalytic domains.

CONCLUSIONS

We have identified a set of 5 soluble candidate effectors of unknown function from C. lunatus secretome weaponries against potato crop at different temperature regimes. Our findings demonstrate that C. lunatus has a repertoire of signature secretome which mediates thermo-pathogenicity and share a leucine rich "CL[xxxx]LHM"-motif. Considering the rapidly evolving temperature dependent-virulence and host diversity of C. lunatus, this data will be useful for designing new protection strategies.

摘要

背景

植物和动物病原菌新月弯孢菌每年在全球范围内造成巨大的经济损失。新月弯孢菌对广泛的宿主表现出温度依赖性的增强毒力。然而,由于缺乏对新月弯孢菌在潜在宿主上热应激条件下产生的协调分泌武器的深入了解,这种现象仍未得到很好的理解。为了更好地理解这一机制,我们在不同温度条件下剖析了与马铃薯叶片相互作用的新月弯孢菌的分泌组。

结果

新月弯孢菌在马铃薯叶片上产生了黑色素化的定殖菌丝,精细地调节了环境 pH 值,作为温度的函数,并分泌了多种蛋白质。使用二维凝胶电泳(2-D)和质谱(MS)技术,我们在 20°C、28°C 和 38°C 时观察到了离散的分泌组。共有 21 个差异表达的肽点和 10 个独特的肽点(未在凝胶上对齐)与来自新月弯孢菌 m118 v.2 基因组肽的 28 个独特蛋白质模型相匹配。此外,新月弯孢菌通过与毒力、蛋白水解、核酸代谢、碳水化合物代谢、热应激、信号转导和一些具有未知催化结构域相关的经典和非经典途径分泌肽。

结论

我们从新月弯孢菌对不同温度条件下马铃薯作物的分泌武器中鉴定出了一组 5 个可溶性未知功能的候选效应子。我们的研究结果表明,新月弯孢菌具有一套特征性的分泌组,介导其热致病性,并具有富含亮氨酸的“CL[xxxx]LHM”-基序。考虑到新月弯孢菌快速进化的温度依赖性毒力和宿主多样性,这些数据将有助于设计新的保护策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bfe/4000054/daec1167eb39/1471-2164-15-213-1.jpg

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