社会模块性:保守的基因和调控因素是早期社会蜜蜂种姓先行行为状态的基础。

Proceedings of the Royal Society B Pub Date : 2019-12-04 Epub Date: 2019-11-27 DOI:10.1098/rspb.2019.1815
Wyatt A Shell, Sandra M Rehan
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引用次数: 14

摘要

高级群居性的进化起源是自然界中表型可塑性最复杂的形式之一,长期以来一直是社会生物学领域的焦点。虽然已知群居昆虫是从独居祖先进化而来的,但对早期社会分类群的社会基因组研究直到最近才提供了经验证据,支持模块化调节和深度保守基因可能在昆虫社会性的进化出现和细化中发挥重要作用的理论。然而,在社会进化的早期阶段,仍然缺乏数据来进一步检验这些理论和其他进化理论的生物学真实性。在这里,我们展示了来自早期社会性小木匠蜂Ceratina calcarata的脑转录组学数据,该数据捕获了与雌性成熟相关的顺式调节和基因表达模式,以及在早秋期间母亲和女儿同时表现出的两种明确定义的行为状态,觅食和守卫。我们发现,早期的社会巢环境可能会极大地影响基因表达。我们进一步揭示了C. calcarata的觅食和守卫行为是推定的种姓先行状态,并为模块化调控的运作提供了强有力的经验支持,这些调控涉及早期社会形态表达中深度保守和差异表达的基因。
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Social modularity: conserved genes and regulatory elements underlie caste-antecedent behavioural states in an incipiently social bee.

The evolutionary origins of advanced eusociality, one of the most complex forms of phenotypic plasticity in nature, have long been a focus within the field of sociobiology. Although eusocial insects are known to have evolved from solitary ancestors, sociogenomic research among incipiently social taxa has only recently provided empirical evidence supporting theories that modular regulation and deeply conserved genes may play important roles in both the evolutionary emergence and elaboration of insect sociality. There remains, however, a paucity of data to further test the biological reality of these and other evolutionary theories among taxa in the earliest stages of social evolution. Here, we present brain transcriptomic data from the incipiently social small carpenter bee, Ceratina calcarata, which captures patterns of cis-regulation and gene expression associated with female maturation, and underlying two well-defined behavioural states, foraging and guarding, concurrently demonstrated by mothers and daughters during early autumn. We find that an incipiently social nest environment may dramatically affect gene expression. We further reveal foraging and guarding behaviours to be putatively caste-antecedent states in C. calcarata, and offer strong empirical support for the operation of modular regulation, involving deeply conserved and differentially expressed genes in the expression of early social forms.

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