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Yeast Colonies: A Model for Studies of Aging, Environmental Adaptation, and Longevity

机译:酵母菌落:衰老,环境适应性和寿命研究的模型

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When growing on solid surfaces, yeast, like other microorganisms, develops organized multicellular populations (colonies and biofilms) that are composed of differentiated cells with specialized functions. Life within these populations is a prevalent form of microbial existence in natural settings that provides the cells with capabilities to effectively defend against environmental attacks as well as efficiently adapt and survive long periods of starvation and other stresses. Under such circumstances, the fate of an individual yeast cell is subordinated to the profit of the whole population. In the past decade, yeast colonies, with their complicated structure and high complexity that are also developed under laboratory conditions, have become an excellent model for studies of various basic cellular processes such as cell interaction, signaling, and differentiation. In this paper, we summarize current knowledge on the processes related to chronological aging, adaptation, and longevity of a colony cell population and of its differentiated cell constituents. These processes contribute to the colony ability to survive long periods of starvation and mostly differ from the survival strategies of individual yeast cells.
机译:当在固体表面上生长时,酵母像其他微生物一样,会发育有组织的多细胞种群(菌落和生物膜),这些种群由具有特殊功能的分化细胞组成。这些种群中的生命是自然环境中微生物的普遍存在形式,为细胞提供有效防御环境攻击以及有效适应和长期忍受饥饿和其他压力的能力。在这种情况下,单个酵母细胞的命运就服从于整个人群的利益。在过去的十年中,酵母菌落具有复杂的结构和在实验室条件下发展起来的高度复杂性,已成为研究各种基本细胞过程(例如细胞相互作用,信号传导和分化)的绝佳模型。在本文中,我们总结了当前有关集落细胞群体及其分化的细胞组成的时序老化,适应性和寿命的过程的知识。这些过程有助于菌落长期饥饿生存的能力,并且与个体酵母细胞的生存策略大不相同。

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