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解开蜘蛛真菌的谜团:巴西蜘蛛寄生虫新物种——农林栖生吉贝腔菌(肉座菌目,子囊菌门)

Untangling a web of spider fungi: Gibellula agroflorestalis (Hypocreales, Ascomycota), a new species of spider parasite from Brazil.

作者信息

da Rocha Alves Julie Erica, da Silva Santos Ana Carla, Belo Pedroso Sheila Karine, Ribeiro Melo Roger Fagner, Tiago Patricia Vieira

机构信息

Departamento de Micologia, Universidade Federal de Pernambuco, Av. Professor Moraes Rego 1235, Cidade Universitária, Recife, Pernambuco 50670-901, Brazil.

Departamento de Micologia, Universidade Federal de Pernambuco, Av. Professor Moraes Rego 1235, Cidade Universitária, Recife, Pernambuco 50670-901, Brazil.

出版信息

J Invertebr Pathol. 2025 Mar;209:108278. doi: 10.1016/j.jip.2025.108278. Epub 2025 Feb 3.

Abstract

Gibellula (Cordycipitaceae) includes widely distributed spider pathogenic fungi. This study describes a novel species, Gibellula agroflorestalis, recorded in agroforestry systems (AFS) and Atlantic Forest remnants in Pernambuco State, northeastern Brazil. The morphology of synnemata and conidiophores was studied, and phylogenetic analyses used SSU, LSU and TEF1 data in order to confirm the distinctiveness of the new species. The new species presents particular morphological characteristics, such as lacrimoid conidia and white synnemata. Comparison with other species in the genus revealed significant differences both in conidial and synnematal morphology. Based on Maximum Likelihood and Bayesian Inference phylogenies, G. agroflorestalis is a sister species to G. pulchra. The variations observed in the samples may be attributed to the microenvironmental conditions of AFS, which can influence phenotypic expression. This research emphasizes the importance of AFS in biodiversity conservation and in the discovery of new species.

摘要

吉贝虫草属(麦角菌科)包含广泛分布的蜘蛛病原真菌。本研究描述了一种新物种,即农林业吉贝虫草,它记录于巴西东北部伯南布哥州的农林业系统(AFS)和大西洋森林残余区域。研究了分生孢子座和分生孢子梗的形态,并利用小亚基核糖体RNA(SSU)、大亚基核糖体RNA(LSU)和延伸因子1(TEF1)数据进行系统发育分析,以确认该新物种的独特性。该新物种具有特殊的形态特征,如泪滴状分生孢子和白色分生孢子座。与该属其他物种的比较显示,在分生孢子和分生孢子座形态上均存在显著差异。基于最大似然法和贝叶斯推断系统发育树,农林业吉贝虫草是美丽吉贝虫草的姐妹物种。在样本中观察到的变异可能归因于农林业系统的微环境条件,其可影响表型表达。本研究强调了农林业系统在生物多样性保护和新物种发现中的重要性。

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