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Productivity, individual-level and colony-level flexibility, and organization of work as consequences of colony size

机译:生产力,个人级别和殖民地级别的灵活性以及工作组织是殖民地规模的结果

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摘要

In social insects, colony-level complexity may emerge from simple individual-level behaviors and interactions. Emergent global properties such as colony size, which can be viewed as a consequence of life history traits, may influence individual-level behaviors themselves. The effects of colony size on productivity, body size, behavioral flexibility, and colony organization are examined here by considering colony size as an independent variable. Large colony size commonly corresponds with complex colony-level performance, small body size, and lower per capita productivity. Analyzing the construction behavior of various wasp societies reveals that complexity of individual behavior is inversely related to colony size. Parallel processing by specialists in large colonies provides flexible and efficient colony-level functioning. On the other hand, individual behavioral flexibility of jack-of-all trades workers ensures success of the small and early societies.
机译:在社交昆虫中,殖民地一级的复杂性可能来自简单的个人一级的行为和相互作用。诸如殖民地规模之类的新兴全球属性,可以视为生活史特征的结果,可能会影响个人层面的行为本身。通过将菌落大小作为独立变量来研究菌落大小对生产力,体型,行为灵活性和菌落组织的影响。菌落大通常与菌落水平复杂,体型小和人均生产力低有关。分析各种黄蜂社会的建筑行为表明,个体行为的复杂性与菌落大小成反比。大型菌落专家的并行处理可提供灵活高效的菌落级功能。另一方面,千篇一律的工人的个人行为灵活性确保了小型早期社会的成功。

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