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首页> 外文期刊>Behavioral Ecology and Sociobiology >Complex interactions underpin social behaviour in Dictyostelium giganteum
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Complex interactions underpin social behaviour in Dictyostelium giganteum

机译:复杂的相互作用基于令人生畏的Giganteum中的社会行为

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In the wild, social groups of the cellular slime mould amoeba Dictyostelium giganteum are genetically heterogeneous more often than not. When studied as 1:1 binary mixes, amoebae of one strain almost always form more spores than the other, an observation that leads one to wonder what might be responsible for the long-term persistence of different strains in nature. We have monitored a number of individual and collective traits bearing on reproductive fitness in chimaeras of Dictyostelium giganteum obtained by mixing pairs of starved amoebae belonging to distinct wild-type strains in proportions ranging from 1:9 to 9:1. The main findings are that intercellular interactions take place at more than one stage of the life cycle and that generalisations drawn after mixing cells only in a 1:1 ratio can be misleading. A strain that does better than another in respect of some component of fitness (for example, spore formation) may do worse in respect of a different component (for example, growth rate). Also, a strain that is a more efficient sporulator than a second strain in one context may be less efficient in another context. In addition to such trade-offs, spore formation in chimaeras can exhibit negative frequency dependence, which too can lead to stable co-existence.Significance statementHumans live in social groups whose members perform different but equally important tasks. When they do so freely, the long-term stability of the group depends on give and take (trade-offs') between individuals who are generally unrelated. In contrast, studies of cooperation in non-human animals have focussed on relatedness through common descent as responsible for the maintenance of group cohesion. But animal groups too contain unrelated individuals. Using the example of a social amoeba, we show that this need not rule out a high level of cooperation including so-called altruism, as long as inter-individual interactions permit it. In both genetically homogeneous and heterogeneous groups, interactions can result in trade-offs between different traits. In genetically heterogeneous groups, they can also lead to a negative correlation between the efficiency with which cells of a genotype reproduce and the proportion of cells belonging to that genotype.
机译:在野外,细胞粘液模具Amoeba dictyostelium Giganteum的社会群体是遗传性的,而不是不均匀。当研究为1:1二元混合物时,一个菌株的AmoEbae几乎总是形成更多的孢子,这是一个观察,这导致一个人想知道什么可能对不同菌株的长期持久性有何原因。我们已经监测了许多通过在从1:9至9:1的比例中混合属于不同的野生型菌株的饥饿的Amoebae的饥饿Amoebae的Chimaeras的生殖健康的许多个人和集体性状。主要发现是细胞间相互作用在寿命周期的多于一个阶段进行,并且仅在1:1的比例中混合细胞之后绘制的概括可能是误导性的。在某些适应性的某些组分(例如,孢子形成)方面具有更好的菌株可以对不同的组分(例如,生长速率)进行更差。而且,在一个上下文中是比第二菌株更有效的速度的应变可以在另一个上下文中效率较低。除了这样的权衡外,Chimaeras的孢子形成还可以表现出负频率依赖,这也可能导致稳定的共存。尊严的声明别墅生活在其成员执行不同但同样重要的任务的社会群体中。当他们自由地这样做时,本集团的长期稳定性取决于一般无关的个人之间的赠送和取消(权衡)。相比之下,通过常见的血症负责维持组内聚力的共同下降,对非人动物的合作的研究侧重于相关性。但动物群体也含有无关的个人。使用社交Amoeba的示例,我们表明这一定不必排除高度合作,包括所谓的利他主义,只要个人间互动允许它。在遗传上均匀和异质组中,相互作用可能导致不同特征之间的权衡。在基因上的非均相组中,它们还可以导致效率之间的效率与属于该基因型的细胞比例的效率之间的负相关性。

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