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真菌共表达网络分析确定了与宿主昆虫入侵相关的病原体基因模块。

Fungal co-expression network analyses identify pathogen gene modules associated with host insect invasion.

作者信息

Huang Shuaishuai, Zhao Xin, Luo Zhibing, Tang Xiaohan, Zhou Yonghong, Keyhani Nemat, Zhang Yongjun

机构信息

Key Laboratory of Agricultural Biosafety and Green Production of Upper Yangtze River (Ministry of Education), College of Plant Protection, Southwest University , Chongqing, China.

Key Laboratory of Biodiversity and Environment on the Qinghai-Tibet Plateau (Ministry of Education), School of Ecology and Environment, Tibet University , Tibet, China.

出版信息

Microbiol Spectr. 2023 Sep 1;11(5):e0180923. doi: 10.1128/spectrum.01809-23.

Abstract

The broad host range fungal insect pathogen, , has been commercialized as an alternative to chemical insecticides for pest control worldwide. represents a unique model system with which to examine host-pathogen interactions, and a wide range of genes and processes have been studied. However, significant aspects of virulence, particularly on the genomic scale, remain poorly studied. Here, we have combined available transcriptomes with three newly generated data sets for a combined total analysis of 76 deep-sequenced samples covering growth, development, stress responses, and infection during the life cycle of . Co-expression network analyses resulted in the identification of gene modules enriched during two critical stages of the infection process, namely (i) cuticle penetration and (ii) hyphal body (dimorphic transition) growth capable of avoiding innate and humoral immune defenses. These analyses identify unique signatures of metabolism, signaling, secondary metabolite production, host defense suppression, membrane reorganization, effector production, and secretion for each stage, including genetic regulators and epigenetic patterns. These data provide a comprehensive framework for understanding and probing fungal adaptations to its pathogenic life cycle and expand the candidate repertoire for continued dissection of the host-pathogen interaction. IMPORTANCE Insect fungal pathogens have evolved unique strategies for overcoming host structural and immunological defenses that span from the sclerotized cuticle to innate and humoral cellular responses. Two critical stages of the infection process involve (i) cuticle penetration and (ii) immune evasion within the insect hemocoel. A set of 76 global transcriptomic data for that include the cuticle penetration and hemocoel growth stages were analyzed for patterns (gene modules) of expression, yielding unique insights into these different life stages. These analyses integrate gene networks involved in fungal development, stress response and pathogenesis to further the systematic understanding of the global processes integral to the unique adaptation employed by fungal pathogens of insects.

摘要

广泛宿主范围的真菌性昆虫病原体已作为化学杀虫剂的替代品在全球范围内商业化用于害虫防治。它代表了一个研究宿主 - 病原体相互作用的独特模型系统,并且已经对广泛的基因和过程进行了研究。然而,毒力的重要方面,特别是在基因组规模上,仍研究不足。在这里,我们将现有的转录组与三个新生成的数据集相结合,对76个深度测序样本进行综合分析,这些样本涵盖了其生命周期中的生长、发育、应激反应和感染过程。共表达网络分析导致鉴定出在感染过程的两个关键阶段富集的基因模块,即(i)角质层穿透和(ii)能够避免先天性和体液免疫防御的菌丝体(二态转变)生长。这些分析确定了每个阶段代谢、信号传导、次级代谢产物产生、宿主防御抑制、膜重组、效应子产生和分泌的独特特征,包括遗传调节因子和表观遗传模式。这些数据为理解和探究真菌对其致病生命周期的适应性提供了一个全面的框架,并扩展了用于继续剖析宿主 - 病原体相互作用的候选库。重要性昆虫真菌病原体已经进化出独特的策略来克服宿主的结构和免疫防御,这些防御从硬化的角质层到先天性和体液细胞反应。感染过程的两个关键阶段包括(i)角质层穿透和(ii)昆虫血腔内的免疫逃避。对一组76个包含角质层穿透和血腔生长阶段的全球转录组数据进行了表达模式(基因模块)分析,从而对这些不同的生命阶段有了独特的见解。这些分析整合了参与真菌发育、应激反应和发病机制的基因网络,以进一步系统地理解昆虫真菌病原体所采用的独特适应性所必需的全球过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7cd0/10581046/8829cf158697/spectrum.01809-23.f001.jpg

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