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How symbiosis can guide evolution

机译:共混物如何导向演变

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Hinton and Nowlan have demonstrated a model of how lifetime plasticity can guide evolution. They show how acquired traits change the shape of the reward landscape in which subsequent genetic variation takes place, and in so doing encourage the discovery of equivalent heritable traits. This enables the seemingly Lamarkian inheritance of acquired characteristics whithout the direct transfer of information from the phenotype to the genotype. This paper draws direct inspiration from their work to illustrate a different phenomenon. We demonstrate how the formation of symbiotic relationshipls in an ecosystem can guide the course of subsequent genetic variation. This phenomenon can be described as two phases: First, symbiotic groups find solutions where individual orgaisms cannot, simply because lifetime interaction produces new combinations of abilities more rapidly than the relatively slow genetic variation of individuals. Second, these symbiotic groups subsequently change the shape of the reward landscape for evolution, providing a gradient that guides genetic variation to the same solution. Ultimately, an individual orgaism exhibits the capabilities formerly exhibited by the group. This process enables the combination of characteristics from organisms of distinct species without direct transfer of genetic information.
机译:Hinton和Nowlan已经证明了一系列终身可塑性可以引导演变的模型。他们展示了所获得的特质如何改变奖励景观的形状,其中发生后续的遗传变异,并且在这样做鼓励发现等同的遗传性状。这使得所获得的特征的看似拉马克遗传是从表型到基因型的信息直接转移信息。本文从他们的工作中引发了激励,以说明不同的现象。我们展示了如何在生态系统中形成共生关系的方式可以指导后续遗传变异的过程。这种现象可以描述为两个阶段:首先,共生基团发现单个角质主义不能仅仅因为寿命相互作用产生新的能力组合而不是个体的遗传变异更快地产生新的能力组合。其次,这些共生组随后改变了奖励景观的形状,以便进化,提供引导遗传变异对相同溶液的梯度。最终,个别的主动观表现出了本集团以前展出的能力。该方法使得具有不同物种的生物的特征的组合,而不直接转移遗传信息。

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