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使用电子显微镜数据构建胞内菌“Midichloria mitochondrii”的生命周期模型。

Modeling the Life Cycle of the Intramitochondrial Bacterium " Midichloria mitochondrii" Using Electron Microscopy Data.

机构信息

Romeo ed Enrica Invernizzi Pediatric Research Center, Department of Biomedical and Clinical Sciences Luigi Sacco, Università di Milano, Milan, Italy.

Dipartimento di Biologia e Biotecnologie L. Spallanzani, Università degli Studi di Pavia, Pavia, Italy.

出版信息

mBio. 2021 Jun 29;12(3):e0057421. doi: 10.1128/mBio.00574-21. Epub 2021 Jun 22.

Abstract

" Midichloria mitochondrii" is a Gram-negative bacterium that lives in strict intracellular symbiosis with the hard tick Ixodes ricinus, forming one of the most intriguing endosymbiosis described to date. The bacterium is capable of durably colonizing the host mitochondria, a peculiar tropism that makes ". Midichloria mitochondrii" a very interesting tool to study the physiology of these cellular organelles. The interaction between the symbiont and the organelle has, however, been difficult to characterize. A parallelism with the predatory bacterium Bdellovibrio bacteriovorus has been drawn, suggesting the hypothesis that ". Midichloria mitochondrii" could prey on mitochondria and consume them to multiply. We studied the life cycle of the bacterium within the host oocytes using a multidisciplinary approach, including electron microscopy, molecular biology, statistics, and systems biology. Our results were not coherent with a predatory-like behavior by ". Midichloria mitochondrii" leading us to propose a novel hypothesis for its life cycle. Based on our results, we here present a novel model called the "mitochondrion-to-mitochondrion hypothesis." Under this model, the bacterium would be able to move from mitochondrion to mitochondrion, possibly within a mitochondrial network. We show that this model presents a good fit with quantitative electron microscopy data. Our results suggest that " Midichloria mitochondrii," the intramitochondrial bacterium, does not invade mitochondria like predatory bacteria do but instead moves from mitochondrion to mitochondrion within the oocytes of Ixodes ricinus. A better understanding of the lifestyle of ". Midichloria mitochondrii" will allow us to better define the role of this bacterial symbiont in the host physiology.

摘要

“中线粒体菌”是一种革兰氏阴性细菌,与硬蜱伊氏莱希纳(Ixodes ricinus)严格地进行细胞内共生,形成了迄今为止描述的最有趣的共生关系之一。该细菌能够持久地定植于宿主的线粒体中,这种特殊的向性使“中线粒体菌”成为研究这些细胞细胞器生理学的非常有趣的工具。然而,共生体与细胞器之间的相互作用一直难以进行特征描述。与捕食性细菌蛭弧菌(Bdellovibrio bacteriovorus)之间存在一种平行关系,这表明了一种假说,即“中线粒体菌”可能以线粒体为食并消耗它们来进行繁殖。我们使用多学科方法,包括电子显微镜、分子生物学、统计学和系统生物学,研究了宿主卵母细胞内细菌的生命周期。我们的研究结果与“中线粒体菌”的捕食行为不一致,这促使我们提出了一种关于其生命周期的新假说。基于我们的结果,我们提出了一种新的模型,称为“线粒体到线粒体假说”。根据该模型,细菌能够从一个线粒体转移到另一个线粒体,可能是在一个线粒体网络中。我们表明,该模型与定量电子显微镜数据拟合良好。我们的结果表明,伊氏莱希纳硬蜱卵母细胞内的“中线粒体菌”不是像捕食性细菌那样入侵线粒体,而是在卵母细胞的线粒体之间移动。更好地理解“中线粒体菌”的生活方式将使我们能够更好地定义这种细菌共生体在宿主生理学中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54eb/8262999/90f61d4b9fab/mbio.00574-21-f001.jpg

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