论文标题

海洋微生物的生物多样性是由生态特征的表型变异所保护的

Biodiversity of marine microbes is safeguarded by phenotypic variability in ecological traits

论文作者

Menden-Deuer, Susanne, Nursultanov, Medet, Collins, Sinead, Rynearson, Tatiana, Rowlett, Julie

论文摘要

为什么与理论上的预测相反,海洋微生物社区是否具有巨大的表型异质性?如此多的海洋微生物物种如何在同一利基共存中竞争?我们通过调查了一个非合作性游戏,该游戏在个人级别的比赛和物种水平的结果之间进行了插值,从而发现了这两种现象的统一解释。我们确定了游戏的所有均衡策略。这些策略的特征是最大表型异质性。它们的彼此之间也是中立的,因为无限数量的物种可以在按照平衡策略竞争的同时共存。尽管先前的理论预测自然选择将最大程度地减少最佳值周围的性状变化,但在这里我们获得了严格的数学证据,即具有最大变化性状的物种是持久的。与我们以微生物为中心的模型相比,这种差异可能反映了为较大生物体开发的模型的预测之间的差异。严格的数学证明,表型异质性本身就是微生物多样性的机械基础。这一发现对微生物生态学有根本的影响,并且可能代表适应性的储层庇护所在不断变化的环境条件下生物多样性。

Why, contrary to theoretical predictions, do marine microbe communities harbor tremendous phenotypic heterogeneity? How can so many marine microbe species competing in the same niche coexist? We discovered a unifying explanation for both phenomena by investigating a non-cooperative game that interpolates between individual-level competitions and species-level outcomes. We identified all equilibrium strategies of the game. These strategies are characterized by maximal phenotypic heterogeneity. They are also neutral towards each other in the sense that an unlimited number of species can co-exist while competing according to the equilibrium strategies. Whereas prior theory predicts that natural selection would minimize trait variation around an optimum value, here we obtained a rigorous mathematical proof that species with maximally variable traits are those that endure. This discrepancy may reflect a disparity between predictions from models developed for larger organisms in contrast to our microbe-centric model. Rigorous mathematics proves that phenotypic heterogeneity is itself a mechanistic underpinning of microbial diversity. This discovery has fundamental ramifications for microbial ecology and may represent an adaptive reservoir sheltering biodiversity in changing environmental conditions.

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