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Does evolution of iteroparous and semelparous reproduction call for spatially structured systems?

机译:同种繁殖和异种繁殖的进化是否需要空间结构的系统?

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A persistent question in the evolution of life histories is the fitness trade-off between reproducing only once (semelparity) in a lifetime or reproducing repeated times in different seasons (iteroparity). The problem can be formulated into a research agenda by assuming that one reproductive strategy is resident (has already evolved) and by asking whether invasion (evolution) of an alternative reproductive strategy is possible. For a spatially nonstructured system, Bulmer (1994) derived the relationship nu + P-A < 1 (P-A is adult survival; nu b(S) and b(S) are offspring numbers for iteroparous and semelparous breeding strategies, respectively) at which semelparous population cannot be invaded by an iteroparous mutant. When the inequality is changed to nu + P-A > 1, invasion of a semelparous mutant is not possible. From the inequalities, it is easy to see that possibilities for evolutionary establishment of a novel reproductive strategy are rather narrow. We extended the evolutionary scenario into a spatially structured system with dispersal linkage among the subunits. In this domain, a rare reproductive strategy can easily invade a population dominated by a resident reproductive strategy. The parameter space enabling invasion is far more generous with spatially structured evolutionary scenarios than in a spatially nonstructured system. [References: 27]
机译:生命历史演变中一直存在的一个问题是,在一生中仅复制一次(同性)或在不同季节重复重复(同性)之间的适应性折衷。可以假设一个生殖策略存在(已经进化),并询问是否有可能入侵(进化)另一种生殖策略,从而将该问题列入研究议程。对于空间非结构化系统,Bulmer(1994)得出以下关系:nu + PA <1(PA是成年存活率; nu b(S)和b(S)分别是同卵繁殖和同卵繁殖策略的后代)不能被异种突变体入侵。当不等式更改为nu + P-A> 1时,不可能入侵丝状突变体。从不平等现象中不难看出,建立一种新的生殖策略的可能性很窄。我们将进化场景扩展为一个空间结构化的系统,其中各个亚基之间具有分散联系。在这一领域,罕见的生殖策略可以轻易入侵以居民生殖策略为主导的人群。与空间非结构化系统相比,在空间结构化的演化方案中,允许入侵的参数空间要慷慨得多。 [参考:27]

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