揭示黄曲霉早期发育过程中细胞结构和聚集动力学的多样性。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-10-01 Epub Date: 2024-10-23 DOI:10.1098/rsbl.2024.0360
Natsuko Rivera-Yoshida, Alejandro V Arzola, Mariana Benítez
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引用次数: 0

摘要

聚集是多种生物体集体动力学的基础,它使生物体能够在与环境相互作用时形成复杂的结构和新出现的行为。细胞聚集是集体运动和多细胞发育的途径之一。黄曲霉菌是一种社会性细菌,是研究多细胞聚集途径的宝贵模型,多细胞聚集是生命进化史上的一个重要转变。虽然黄肉球菌的集体发育行为在很大程度上是在高细胞密度条件下进行研究的,但对其在低密度条件下的生态相关性还缺乏了解。在这项工作中,我们研究了在营养贫乏和低密度条件下黄曲霉出现集体行为的早期阶段,揭示了从单个细胞到由数千个细胞组成的网络等不同形状和大小的多种细胞结构的形成过程。我们研究了它们的运动模式及其在发育过程中的普遍性,并讨论了它们在种群探索动态中的跨尺度作用。这项工作有助于理解粘菌多细胞发育早期阶段的关键环节,但这些环节在很大程度上还未得到充分研究,从而揭示了粘菌及其他分类群和研究系统中聚集过程的动力学基础。
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Unravelling a diversity of cellular structures and aggregation dynamics during the early development of Myxococcus xanthus.

Aggregation underlies the collective dynamics of a diversity of organisms, enabling the formation of complex structures and emergent behaviours on interaction with the environment. Cellular aggregation constitutes one of the routes to collective motility and multicellular development. Myxococcus xanthus, a social bacterium, is a valuable model for studying the aggregative path to multicellularity, a major transition in the evolutionary history of life. While the collective developmental behaviour of M. xanthus has been largely studied in high cellular densities, there is a lack of understanding at low-density conditions that can be ecologically relevant. In this work, we study the early stages of emergent collective behaviour of M. xanthus under nutrient-poor and low-density conditions, uncovering the formation of diverse cellular structures with different shapes and sizes, ranging from individual cells to networks comprising thousands of cells. We study their motility patterns and their prevalence along development and discuss their cross-scale role on the population's exploratory dynamics. This work contributes to understanding key, yet largely understudied, aspects in the early stages of multicellular development in myxobacteria, shedding light on the dynamics underlying aggregative processes in this and other taxa and study systems.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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