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Aging may be a conditional strategic choice and not an inevitable outcome for bacteria

机译:老化可能是有条件的战略选择,而不是细菌的必然结果

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Aging is known in all organisms that have different somatic and reproductive cells or in unicellular organisms that divide asymmetrically. Bacteria that divide symmetrically were believed to be immune to natural aging. The demonstration of functionally asymmetric division and aging in Escherichia coli recently has challenged this belief and led to the suggestion that aging might be inevitable for all life forms. We modeled the effects of symmetric and asymmetric division in bacteria to examine selective advantages of the alternative strategies of division. Aging of cell components was modeled by using a modified Leslie matrix framework. The model suggests that asymmetric division accompanied by aging and death of some cells results in a higher growth rate but a reduced growth yield. Symmetric division with or without gradual replacement of the old components, on the other hand, slows down the growth rate but may increase growth yield over a wide range of conditions. Thus, aging and immortality can be selected under different sets of conditions, and this selection may also lead to a tradeoff between growth rate and growth yield.
机译:在具有不同体细胞和生殖细胞的所有生物中,或在不对称分裂的单细胞生物中,衰老都是已知的。对称分裂的细菌被认为可以抵抗自然衰老。最近在大肠杆菌中功能不对称分裂和衰老的证明挑战了这一信念,并导致人们提出衰老对于所有生命形式都是不可避免的。我们对细菌中对称和不对称分裂的效应进行了建模,以检验替代分裂策略的选择性优势。通过使用改良的莱斯利矩阵框架对细胞成分的老化进行建模。该模型表明,不对称分裂伴随某些细胞的衰老和死亡会导致较高的生长速率,但会降低生长产量。另一方面,在有或没有逐步替换旧组件的情况下进行对称分割,会减慢增长率,但可能会在各种条件下提高产量。因此,可以在不同的条件下选择衰老和长生不老,并且这种选择还可能导致增长率和增长率之间的权衡。

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