Breeding of High-Polysaccharide-Producing Volvariella volvacea Strains Based on Genome Shuffling Technology.

IF 4.2 2区 生物学 Q2 MICROBIOLOGY
Lihui Liang, Qihang Su, Yawei Wang, Peichen Du, Suzhen Zhao, Huanjie Zhang, Xiaofeng Gao
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Abstract

Volvariella volvacea, a fungal species of Volvariella within the Pluteaceae family, is predominantly cultivated in southern China. Polysaccharides, the primary bioactive constituents of V. volvacea, exhibit diverse pharmacological activities. However, current cultivation practices face challenges due to the genetic heterogeneity of strains, leading to inconsistent content and compositional variability of polysaccharides and other functional components. ARTP, denoting atmospheric and room-temperature plasma, is a technology capable of generating plasma jets at ambient pressure with temperatures ranging from 25 to 40 °C. These jets feature high concentrations of highly reactive species, including but not limited to excited-state helium atoms, oxygen atoms, nitrogen atoms, and OH radicals. This study aims to develop high-yielding exopolysaccharide (EPS) strains through integrated ARTP mutagenesis and genome shuffling, thereby overcoming current cultivation bottlenecks. ARTP mutagenesis and genome shuffling significantly boosted EPS production in V. volvacea. ARTP generated nine stable mutants with >20% higher EPS yields. Subsequent genome shuffling (three rounds of protoplast fusion) produced the hybrid strain SL212, which achieved 46.85 g/L of EPS, an 111.67% increase over that of the parent strain under identical conditions. Metabolomics and transcriptomics analyses revealed that differential metabolites and genes were mainly enriched in galactose metabolism, ABC transporter pathways, and the tricarboxylic acid cycle. These pathways enhance monosaccharide biosynthesis and generate ATP, providing both precursors and energy for polysaccharide polymerization, thereby driving EPS overproduction. Preliminary mechanistic analysis identified the key contributing factors driving the elevated polysaccharide biosynthesis.

基于基因组洗牌技术的高多糖草菇菌株选育。
草粪草(Volvariella volvacea)是蓼科草粪草属的一种真菌,主要栽培于中国南方。菟丝子多糖是其主要活性成分,具有多种药理活性。然而,由于菌株的遗传异质性,目前的栽培方法面临挑战,导致多糖和其他功能成分的含量和组成变化不一致。ARTP是指大气和室温等离子体,是一种能够在环境压力下产生等离子体射流的技术,温度范围为25至40℃。这些喷流的特征是高浓度的高活性物质,包括但不限于激发态氦原子、氧原子、氮原子和OH自由基。本研究旨在通过ARTP诱变和基因组重组相结合的方法开发高产外多糖(EPS)菌株,从而突破目前的培养瓶颈。ARTP诱变和基因组重组显著提高了紫茎草EPS的产量。ARTP产生了9个稳定的突变体,EPS产量提高了20%。随后的基因组重组(3轮原生质体融合)产生了杂交菌株SL212,其EPS达到46.85 g/L,比相同条件下的亲本菌株提高了111.67%。代谢组学和转录组学分析显示,差异代谢物和基因主要富集于半乳糖代谢、ABC转运蛋白通路和三羧酸循环。这些途径促进单糖的生物合成并产生ATP,为多糖聚合提供前体和能量,从而推动EPS的过量生产。初步的机制分析确定了推动多糖生物合成增加的关键因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Fungi
Journal of Fungi Medicine-Microbiology (medical)
CiteScore
6.70
自引率
14.90%
发文量
1151
审稿时长
11 weeks
期刊介绍: Journal of Fungi (ISSN 2309-608X) is an international, peer-reviewed scientific open access journal that provides an advanced forum for studies related to pathogenic fungi, fungal biology, and all other aspects of fungal research. The journal publishes reviews, regular research papers, and communications in quarterly issues. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on paper length. Full experimental details must be provided so that the results can be reproduced.
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