在无性系侵袭蚁中,种姓相关性状的静态异速性随基因型而异,而与环境无关。

IF 9.1 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Patrick K Piekarski,Stephany Valdés-Rodríguez,Waring Trible,Daniel J C Kronauer
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引用次数: 0

摘要

动物的多表型性状往往与体型呈非线性比例关系。静态异速发育(即比例关系)本身可以表现出可塑性,因此相同体型和基因型的个体在不同环境中的身体比例会有所不同。在蚂蚁中,幼虫环境和基因型都调节着种姓相关性状的表达,包括体型和卵巢数量。然而,种姓相关性状是否受环境变量的独立调节,或者它们是否由于耦合的发育机制而共同变化,仍未得到检验。如果种姓性状是独立调控的,那么发育可塑性既影响性状的表达,也影响性状之间的尺度关系。我们以无性繁殖的突袭蚁(Ooceraea biroi)为研究对象,通过操纵基因相同的幼虫的饲养环境来验证这一点。研究发现,照顾者基因型、温度和食物量对种姓形态的影响与体型密切相关,在不同饲养条件下产生相似的静态异速变异(即未检测到异速可塑性)。相反,克隆基因型在平均体型和静态异速性状上存在差异。因此,不同饲养环境下相同基因型的大小匹配个体在种姓性状的平均表达上没有差异,而不同基因型的个体在种姓性状的平均表达上有差异。不同种姓性状的静态异速发育缺乏可塑性,这表明由于系统调节因素,它们是发育耦合的。我们的研究结果与其他昆虫异速生长可塑性的报道形成对比,表明蚁群特征是异常整合的,因此它们对环境变化的独立反应受到限制。我们讨论了这些结果如何为蚁群发展和进化的当代假设提供信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Static allometries of caste-associated traits vary with genotype but not environment in the clonal raider ant.
Polyphenic traits in animals often exhibit nonlinear scaling with body size. Static allometries (i.e., scaling relationships) themselves can exhibit plasticity, such that individuals of the same size and genotype differ in body proportions across different environments. In ants, both larval environment and genotype regulate the expression of caste-associated traits, including body size and ovariole number. However, it remains untested whether caste-associated traits are independently regulated by environmental variables or whether they covary due to coupled developmental mechanisms. If caste traits are regulated independently, developmental plasticity should affect both trait expression and the scaling relationships between traits. Using the clonal raider ant, Ooceraea biroi, we tested this by manipulating the rearing environment of genetically identical larvae. We found that caregiver genotype, temperature, and food quantity influenced caste morphology strictly in tandem with body size, producing similar static allometries across rearing conditions (i.e., no allometric plasticity was detected). In contrast, clonal genotypes differed in average body size and their static allometries. Thus, size-matched individuals of the same genotype from different rearing environments exhibited no differences in mean caste trait expression, while those of different genotypes did. This absence of plasticity in the static allometries of different caste traits suggests that they are developmentally coupled due to systemic regulatory factors. Our findings contrast with reports of allometric plasticity in other insects, suggesting that ant caste traits are exceptionally integrated and therefore constrained in their independent responses to environmental variation. We discuss how these results inform contemporary hypotheses for ant caste development and evolution.
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来源期刊
CiteScore
19.00
自引率
0.90%
发文量
3575
审稿时长
2.5 months
期刊介绍: The Proceedings of the National Academy of Sciences (PNAS), a peer-reviewed journal of the National Academy of Sciences (NAS), serves as an authoritative source for high-impact, original research across the biological, physical, and social sciences. With a global scope, the journal welcomes submissions from researchers worldwide, making it an inclusive platform for advancing scientific knowledge.
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