热生理差异可能导致沙雀潮间带生态型的垂直分离。

IF 1.8 3区 生物学 Q3 PHYSIOLOGY Physiological and Biochemical Zoology Pub Date : 2021-11-01 DOI:10.1086/716176
Christopher Dwane, Simon D Rundle, Oliver Tills, Enrico L Rezende, Juan Galindo, Emilio Rolán-Alvarez, Manuela Truebano
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引用次数: 3

摘要

摘要热胁迫是潮间带海洋生境中一个潜在的重要选择因子,但热耐受性可能在跨岸高度的局部适应中发挥的作用尚未得到充分研究。西班牙西北部是两种形态上截然不同的长春花生态型的家园,它们被海岸高度分开,并受到热应力暴露的巨大差异。然而,尽管对生态型分离的其他生物和非生物驱动因素进行了很好的研究,但它们的耐热性尚未得到表征。我们采用热死亡时间(TDT)方法研究了多个生活史阶段的热耐受性,以确定(i)两种生态型在热耐受性方面是否存在差异,以及(ii)差异如何随生活史阶段变化。两种生态型成虫的热耐受性随其所处的海岸位置不同而不同:与下游生态型相比,经历更多极端温度的上游生态型成虫表现出更强的热应力耐受性。这种差异在测试的最高温度下最为明显。这些差异的近似生理基础尚不清楚,但可能是由于影响TDT曲线不同部分的性状的各种相互作用。不同生态型之间的耐受性差异在早期生活史阶段不太明显,但随着个体发育而增加,表明该性状在发育过程中存在部分分化。热耐受性可能在维持两种生态型之间的种群差异和遗传分离中发挥重要作用,因为低岸生态型的热敏感性增加可能限制其向上游扩散,从而限制基因流动。
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Divergence in Thermal Physiology Could Contribute to Vertical Segregation in Intertidal Ecotypes of Littorina saxatilis.

AbstractThermal stress is a potentially important selective agent in intertidal marine habitats, but the role that thermal tolerance might play in local adaptation across shore height has been underexplored. Northwest Spain is home to two morphologically distinct ecotypes of the periwinkle Littorina saxatilis, separated by shore height and subject to substantial differences in thermal stress exposure. However, despite other biotic and abiotic drivers of ecotype segregation being well studied, their thermal tolerance has not been previously characterized. We investigated thermal tolerance across multiple life history stages by employing the thermal death time (TDT) approach to determine (i) whether the two ecotypes differ in thermal tolerance and (ii) how any differences vary with life history stage. Adults of the two ecotypes differed in their thermal tolerance in line with their shore position: the upper-shore ecotype, which experiences more extreme temperatures, exhibited greater endurance of thermal stress compared with the lower-shore ecotype. This difference was most pronounced at the highest temperatures tested. The proximate physiological basis for these differences is unknown but likely due to a multifarious interaction of traits affecting different parts of the TDT curve. Differences in tolerance between ecotypes were less pronounced in early life history stages but increased with ontogeny, suggesting partial divergence of this trait during development. Thermal tolerance could potentially play an important role in maintaining population divergence and genetic segregation between the two ecotypes, since the increased thermal sensitivity of the lower-shore ecotype may limit its dispersal onto the upper shore and so restrict gene flow.

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来源期刊
CiteScore
3.20
自引率
6.20%
发文量
62
审稿时长
6-12 weeks
期刊介绍: Physiological and Biochemical Zoology: Ecological and Evolutionary Approaches primarily publishes original research in animal physiology and biochemistry as considered from behavioral, ecological, and/or evolutionary perspectives. Studies at all levels of biological organization from the molecular to the whole organism are welcome, and work that integrates across levels of organization is particularly encouraged. Studies that focus on behavior or morphology are welcome, so long as they include ties to physiology or biochemistry, in addition to having an ecological or evolutionary context. Subdisciplines of interest include nutrition and digestion, salt and water balance, epithelial and membrane transport, gas exchange and transport, acid-base balance, temperature adaptation, energetics, structure and function of macromolecules, chemical coordination and signal transduction, nitrogen metabolism and excretion, locomotion and muscle function, biomechanics, circulation, behavioral, comparative and mechanistic endocrinology, sensory physiology, neural coordination, and ecotoxicology ecoimmunology.
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