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南非粘球菌目:微生物生态学和生物技术的未开发资源。

South African Myxococcota: an untapped resource for microbial ecolo gy and biotechnology.

作者信息

Havenga Benjamin, Jacobs Karin

机构信息

Department of Microbiology, Faculty of Science, Stellenbosch University, Stellenbosch, 7602, South Africa.

出版信息

Appl Microbiol Biotechnol. 2025 Aug 30;109(1):192. doi: 10.1007/s00253-025-13586-z.

Abstract

An extraordinary multicellular life cycle, ecological versatility, and prolific production of bioactive secondary metabolites characterise the phylum Myxococcota. While research has predominantly focused on Myxococcota in Asia, Europe, and North America, their potential occurrence in Sub-Saharan Africa remains largely unexplored. To date, only one study has isolated Myxococcota in South Africa, with additional findings limited to incidental detection through metagenomic studies. Considering South Africa's ecological diversity, its biomes may represent promising but under-examined environments for systematic bioprospecting aimed at discovering novel Myxococcota with ecological or biotechnological potential. The recent reclassification of Myxococcota from the former Deltaproteobacteria has provided a more coherent taxonomic framework to guide future ecological and systematic studies. This review presents an overview of the taxonomic revision and explores the potential occurrence of Myxococcota in South African biomes. It covers the challenges associated with conventional culture-based isolation methods and highlights potential genome- and metagenome-based approaches, including the use of metagenome-assembled genomes (MAGs) to identify cryptic biosynthetic gene clusters (BGCs), while acknowledging current limitations. Considering the increasing resistance to chemical fungicides in South African agriculture, this review further explores the potential of Myxococcota-derived secondary metabolites as candidate bioprotective alternatives. By identifying current research gaps, it aims to support future efforts towards systematic bioprospecting to investigate the ecological and biotechnological potential of Myxococcota in South Africa. KEY POINTS: • South African biomes may harbour novel Myxococcota with biosynthetic potential. • Genome mining could reveal cryptic biosynthetic gene clusters (BGCs). • Myxococcota metabolites may help control resistant fungal phytopathogens.

摘要

非凡的多细胞生命周期、生态多样性以及丰富的生物活性次生代谢产物的产生是粘球菌门的特征。虽然研究主要集中在亚洲、欧洲和北美的粘球菌,但它们在撒哈拉以南非洲的潜在存在情况在很大程度上仍未得到探索。迄今为止,只有一项研究在南非分离出了粘球菌,其他发现仅限于通过宏基因组研究的偶然检测。考虑到南非的生态多样性,其生物群落可能是有前景但未得到充分研究的环境,适合进行旨在发现具有生态或生物技术潜力的新型粘球菌的系统生物勘探。最近将粘球菌从前δ变形菌纲重新分类,提供了一个更连贯的分类框架来指导未来的生态和系统研究。本综述概述了分类学修订,并探讨了粘球菌在南非生物群落中的潜在存在情况。它涵盖了与传统基于培养的分离方法相关的挑战,并强调了基于基因组和宏基因组的潜在方法,包括使用宏基因组组装基因组(MAGs)来识别隐秘的生物合成基因簇(BGCs),同时承认当前的局限性。考虑到南非农业中对化学杀菌剂的耐药性不断增加,本综述进一步探讨了源自粘球菌的次生代谢产物作为候选生物保护替代品的潜力。通过识别当前的研究差距,旨在支持未来进行系统生物勘探的努力,以研究南非粘球菌的生态和生物技术潜力。关键点:• 南非生物群落可能蕴藏着具有生物合成潜力的新型粘球菌。• 基因组挖掘可能揭示隐秘的生物合成基因簇(BGCs)。• 粘球菌代谢产物可能有助于控制耐药性真菌植物病原体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/900c/12397197/9cd8259a24e7/253_2025_13586_Fig1_HTML.jpg

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