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趋磁细菌中磁性细胞器的生物合成与功能

Biosynthesis and function of magnetic organelles in magnetotactic bacteria.

作者信息

Schüler Dirk, Dziuba Marina, Pfeiffer Daniel, Uebe René

机构信息

Department of Microbiology, University of Bayreuth, Bayreuth, Germany.

出版信息

Nat Rev Microbiol. 2025 Sep 19. doi: 10.1038/s41579-025-01234-2.

Abstract

One of the most intricate structures found in bacterial cells are magnetosomes of magnetotactic bacteria. These membrane-bound organelles contain tens-of-nanometre-sized crystals of a magnetic iron mineral that are usually aligned in well-ordered chains and function as sensors for geomagnetic field navigation in their aquatic habitats. Magnetosomes emerged as a model to study bacterial cell biology, organelle biogenesis and biomineralization, but they are also of interest as 'magnetofossils' in geoscience and have potential for various biotechnological applications. Recent work has unveiled a vast structural and genetic complexity of magnetosome biosynthesis. In this Review, we summarize current knowledge of magnetosome formation and organization within the cell, with emphasis on two established magnetospirilla model species. We highlight the function, diversity and potential applications of magnetosomes and discuss open questions for future research.

摘要

细菌细胞中发现的最复杂的结构之一是趋磁细菌的磁小体。这些膜结合细胞器含有数十纳米大小的磁性铁矿物晶体,这些晶体通常排列成有序的链状,并在其水生栖息地中作为地磁场导航的传感器发挥作用。磁小体已成为研究细菌细胞生物学、细胞器生物发生和生物矿化的模型,但它们作为地球科学中的“磁化石”也备受关注,并且在各种生物技术应用中具有潜力。最近的研究揭示了磁小体生物合成的巨大结构和遗传复杂性。在本综述中,我们总结了目前关于细胞内磁小体形成和组织的知识,重点关注两种已确立的磁螺菌模式物种。我们强调了磁小体的功能、多样性和潜在应用,并讨论了未来研究的开放性问题。

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