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破囊壶菌:进化、超微结构、生物技术与建模

Thraustochytrids: Evolution, Ultrastructure, Biotechnology, and Modeling.

作者信息

Menzorov Aleksei G, Iukhtanov Daniil A, Naumenko Ludmila G, Bobrovskikh Aleksandr V, Zubairova Ulyana S, Morozova Ksenia N, Doroshkov Alexey V

机构信息

Institute of Cytology and Genetics, Siberian Branch of the Russian Academy of Sciences, 630090 Novosibirsk, Russia.

Department of Natural Sciences, Novosibirsk State University, 630090 Novosibirsk, Russia.

出版信息

Int J Mol Sci. 2024 Dec 7;25(23):13172. doi: 10.3390/ijms252313172.

Abstract

The thraustochytrids are a group of marine protists known for their significant ecological roles as decomposers and parasites as well as for their potential biotechnological applications, yet their evolutionary and structural diversity remains poorly understood. Our review critically examines the phylogeny of this taxa, utilizing available up-to-date knowledge and their taxonomic classifications. Additionally, advanced imaging techniques, including electron microscopy, are employed to explore the ultrastructural characteristics of these organisms, revealing key features that contribute to their adaptive capabilities in varying marine environments. The integration of this knowledge with available omics data highlights the huge biotechnological potential of thraustochytrids, particularly in producing ω-3 fatty acids and other bioactive compounds. Our review underscores the importance of a systems biology approach in understanding thraustochytrids biology and highlights the urgent need for novel, accurate omics research to unlock their full biotechnological potential. Overall, this review aims to foster a deeper appreciation of thraustochytrids by synthesizing information on their evolution, ultrastructure, and practical applications, thereby providing a foundation for future studies in microbiology and biotechnology.

摘要

破囊壶菌是一类海洋原生生物,以其作为分解者和寄生虫的重要生态作用以及潜在的生物技术应用而闻名,但对其进化和结构多样性的了解仍然很少。我们的综述批判性地审视了该分类群的系统发育,利用了现有的最新知识及其分类学分类。此外,还采用了包括电子显微镜在内的先进成像技术来探索这些生物的超微结构特征,揭示了有助于它们在不同海洋环境中适应能力的关键特征。将这些知识与现有的组学数据相结合,凸显了破囊壶菌巨大的生物技术潜力,特别是在生产ω-3脂肪酸和其他生物活性化合物方面。我们的综述强调了系统生物学方法在理解破囊壶菌生物学方面的重要性,并强调了开展新颖、准确的组学研究以释放其全部生物技术潜力的迫切需求。总体而言,本综述旨在通过综合有关破囊壶菌进化、超微结构和实际应用的信息,促进对其更深入的认识,从而为微生物学和生物技术的未来研究奠定基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/558c/11642839/7b10583c7443/ijms-25-13172-g001.jpg

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