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物种水平及以上异速生长之间不一致的原因:以水生甲虫为例

Causes of Discordance between Allometries at and above Species Level: An Example with Aquatic Beetles.

作者信息

Higginson Dawn M, Badyaev Alexander V, Segraves Kari A, Pitnick Scott

机构信息

Department of Ecology and Evolutionary Biology, University of Arizona, Tucson, Arizona 85721.

出版信息

Am Nat. 2015 Aug;186(2):176-86. doi: 10.1086/682049. Epub 2015 Jun 25.

Abstract

Covariation among organismal traits is nearly universal, occurring both within and among species (static and evolutionary allometry, respectively). If conserved developmental processes produce similarity in static and evolutionary allometry, then when species differ in development, it should be expressed in discordance between allometries. Here, we investigate whether rapidly evolving developmental processes result in discordant static and evolutionary allometries attributable to trade-offs in resource acquisition, allocation, or growth across 30 species of aquatic beetles. The highly divergent sperm phenotypes of these beetles might be an important contributor to allometric evolution of testis and accessory gland mass through altered requirements for the production of sperm and seminal fluids. We documented extensive discordance between static and evolutionary allometries, indicating that allometric relationships are flexibly modified over short time periods but subject to constraint over longer time spans. Among species, sperm phenotype did not influence relative investment in accessory glands but was weakly associated with investment in testes. Furthermore, except when sperm were long and simple, sperm phenotype was not associated with species-specific modification of the allometry of testis/accessory gland mass and body size. Our results demonstrate the utility of allometric discordance to infer species differences in the provisioning and growth of concurrently developing traits.

摘要

生物体特征之间的协变几乎是普遍存在的,在物种内部和物种之间都会发生(分别为静态和进化异速生长)。如果保守的发育过程在静态和进化异速生长中产生相似性,那么当物种在发育上存在差异时,这种差异应该会以异速生长之间的不一致表现出来。在这里,我们研究快速进化的发育过程是否会导致静态和进化异速生长不一致,这归因于30种水生甲虫在资源获取、分配或生长方面的权衡。这些甲虫高度不同的精子表型可能是通过改变精子和精液产生的需求,对睾丸和附腺质量的异速生长进化的一个重要贡献因素。我们记录了静态和进化异速生长之间广泛的不一致,表明异速生长关系在短时间内会灵活改变,但在较长时间跨度内受到限制。在物种之间,精子表型不影响对附腺的相对投入,但与对睾丸的投入有较弱的关联。此外,除了精子长而简单的情况外,精子表型与睾丸/附腺质量和体型的异速生长的物种特异性修饰无关。我们的结果证明了异速生长不一致在推断同时发育的性状在供应和生长方面的物种差异方面的效用。

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