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昆虫病原真菌的比较基因组分析揭示了一组复杂的分泌蛋白。

Comparative genome analysis of entomopathogenic fungi reveals a complex set of secreted proteins.

作者信息

Staats Charley Christian, Junges Angela, Guedes Rafael Lucas Muniz, Thompson Claudia Elizabeth, de Morais Guilherme Loss, Boldo Juliano Tomazzoni, de Almeida Luiz Gonzaga Paula, Andreis Fábio Carrer, Gerber Alexandra Lehmkuhl, Sbaraini Nicolau, da Paixão Rana Louise de Andrade, Broetto Leonardo, Landell Melissa, Santi Lucélia, Beys-da-Silva Walter Orlando, Silveira Carolina Pereira, Serrano Thaiane Rispoli, de Oliveira Eder Silva, Kmetzsch Lívia, Vainstein Marilene Henning, de Vasconcelos Ana Tereza Ribeiro, Schrank Augusto

机构信息

Centro de Biotecnologia, Universidade Federal do Rio Grande do Sul (UFRGS), P, O, Box 15005, Porto Alegre, RS CEP 91501-970, Brazil.

出版信息

BMC Genomics. 2014 Sep 29;15:822. doi: 10.1186/1471-2164-15-822.

Abstract

BACKGROUND

Metarhizium anisopliae is an entomopathogenic fungus used in the biological control of some agricultural insect pests, and efforts are underway to use this fungus in the control of insect-borne human diseases. A large repertoire of proteins must be secreted by M. anisopliae to cope with the various available nutrients as this fungus switches through different lifestyles, i.e., from a saprophytic, to an infectious, to a plant endophytic stage. To further evaluate the predicted secretome of M. anisopliae, we employed genomic and transcriptomic analyses, coupled with phylogenomic analysis, focusing on the identification and characterization of secreted proteins.

RESULTS

We determined the M. anisopliae E6 genome sequence and compared this sequence to other entomopathogenic fungi genomes. A robust pipeline was generated to evaluate the predicted secretomes of M. anisopliae and 15 other filamentous fungi, leading to the identification of a core of secreted proteins. Transcriptomic analysis using the tick Rhipicephalus microplus cuticle as an infection model during two periods of infection (48 and 144 h) allowed the identification of several differentially expressed genes. This analysis concluded that a large proportion of the predicted secretome coding genes contained altered transcript levels in the conditions analyzed in this study. In addition, some specific secreted proteins from Metarhizium have an evolutionary history similar to orthologs found in Beauveria/Cordyceps. This similarity suggests that a set of secreted proteins has evolved to participate in entomopathogenicity.

CONCLUSIONS

The data presented represents an important step to the characterization of the role of secreted proteins in the virulence and pathogenicity of M. anisopliae.

摘要

背景

绿僵菌是一种用于生物防治某些农业害虫的昆虫病原真菌,目前正在努力将这种真菌用于控制虫媒传播的人类疾病。随着绿僵菌从腐生阶段转变为感染阶段,再到植物内生阶段,即经历不同的生活方式,它必须分泌大量蛋白质以应对各种可用营养物质。为了进一步评估绿僵菌的预测分泌组,我们采用了基因组和转录组分析,并结合系统发育基因组分析,重点关注分泌蛋白的鉴定和表征。

结果

我们测定了绿僵菌E6基因组序列,并将该序列与其他昆虫病原真菌基因组进行了比较。生成了一个强大的流程来评估绿僵菌和其他15种丝状真菌的预测分泌组,从而鉴定出了一组核心分泌蛋白。在蜱微小牛蜱角质层感染模型的两个感染时期(48小时和144小时)进行转录组分析,从而鉴定出了几个差异表达基因。该分析得出结论,在本研究分析的条件下,预测分泌组编码基因中有很大一部分转录水平发生了变化。此外,绿僵菌的一些特定分泌蛋白具有与白僵菌/虫草菌直系同源物相似的进化历史。这种相似性表明,一组分泌蛋白已经进化以参与昆虫致病性。

结论

所呈现的数据是表征分泌蛋白在绿僵菌毒力和致病性中作用的重要一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e476/4246632/dbffb3e6e32f/12864_2014_6687_Fig1_HTML.jpg

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