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厌氧真菌(新美鞭菌门)不同生命阶段的分离凸显了整体转录和代谢的差异。

Separation of life stages within anaerobic fungi (Neocallimastigomycota) highlights differences in global transcription and metabolism.

作者信息

Butkovich Lazarina V, Leggieri Patrick A, Lillington Stephen P, Navaratna Tejas A, Swift Candice L, Malinov Nikola G, Zalunardo Thea R, Vining Oliver B, Lipzen Anna, Wang Mei, Yan Juying, Ng Vivian, Grigoriev Igor V, O'Malley Michelle A

机构信息

University of California, Santa Barbara, Department of Chemical Engineering, Santa Barbara, CA 93106, USA.

Institute for Collaborative Biotechnologies, University of California, Santa Barbara, CA 93106, USA.

出版信息

Fungal Genet Biol. 2025 Feb;176:103958. doi: 10.1016/j.fgb.2024.103958. Epub 2024 Dec 31.

Abstract

Anaerobic gut fungi of the phylum Neocallimastigomycota are microbes proficient in valorizing low-cost but difficult-to-breakdown lignocellulosic plant biomass. Characterization of different fungal life stages and how they contribute to biomass breakdown are critical for biotechnological applications, yet we lack foundational knowledge about the transcriptional, metabolic, and enzyme secretion behavior of different life stages of anaerobic gut fungi: zoospores, germlings, immature thalli, and mature zoosporangia. A Miracloth-based technique was developed to enrich cell pellets with zoospores - the free-swimming, flagellated, young life stage of anaerobic gut fungi. By contrast, fungal mats contained relatively more vegetative, encysted, mature sporangia that form films. Global gene expression profiles were compared from two sample types (zoospore-enriched cell pellets vs. mature mats) harvested from the anaerobic gut fungal strain Neocallimastix californiae G1. Despite cultures being grown on glucose, the fungal zoospore-enriched samples were transcriptionally primed to encounter plant matter substrate, as evidenced by upregulation of catabolic carbohydrate-active enzymes and putative carbohydrate transporters. Furthermore, we report significant differential gene expression for gene annotation groups, including putative secondary metabolites and transcription factors. Understanding global gene expression differences between the fungal zoospore-enriched cells and mature fungi aid in characterizing fungal development, unmasking gene function, and guiding cultivation conditions and engineering targets to promote enzyme secretion.

摘要

新美鞭菌门的厌氧肠道真菌是一类能够有效利用低成本但难以分解的木质纤维素植物生物质的微生物。对不同真菌生命阶段及其对生物质分解的贡献进行表征对于生物技术应用至关重要,但我们缺乏关于厌氧肠道真菌不同生命阶段(游动孢子、芽管、未成熟菌体和成熟游动孢子囊)的转录、代谢和酶分泌行为的基础知识。开发了一种基于Miracloth的技术,用于富集含有游动孢子的细胞沉淀,游动孢子是厌氧肠道真菌自由游动、具鞭毛的年轻生命阶段。相比之下,真菌垫含有相对更多形成菌膜的营养性、包囊化成熟孢子囊。比较了从加利福尼亚新美鞭菌G1厌氧肠道真菌菌株收获的两种样品类型(富含游动孢子的细胞沉淀与成熟菌垫)的全局基因表达谱。尽管培养物是在葡萄糖上生长的,但富含真菌游动孢子的样品在转录上已做好遇到植物物质底物的准备,分解代谢碳水化合物活性酶和假定的碳水化合物转运蛋白的上调证明了这一点。此外,我们报告了基因注释组的显著差异基因表达,包括假定的次生代谢物和转录因子。了解富含真菌游动孢子的细胞与成熟真菌之间的全局基因表达差异有助于表征真菌发育、揭示基因功能,并指导培养条件和工程目标以促进酶分泌。

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