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整个月运周期的繁殖物候学:亲代决策、子代反应以及对珊瑚礁鱼类的影响

Reproductive phenology across the lunar cycle: parental decisions, offspring responses, and consequences for reef fish.

作者信息

Shima Jeffrey S, Osenberg Craig W, Alonzo Suzanne H, Noonburg Erik G, Mitterwallner Pauline, Swearer Stephen E

机构信息

School of Biological Sciences, Victoria University of Wellington, Wellington, 6140, New Zealand.

Odum School of Ecology, University of Georgia, 140 East Green Street, Athens, Georgia, 30602, USA.

出版信息

Ecology. 2020 Aug;101(8):e03086. doi: 10.1002/ecy.3086. Epub 2020 May 21.

Abstract

Most organisms reproduce in a dynamic environment, and life-history theory predicts that this can favor the evolution of strategies that capitalize on good times and avoid bad times. When offspring experience these environmental changes, fitness can depend strongly upon environmental conditions at birth and at later life stages. Consequently, fitness will be influenced by the reproductive decisions of parents (i.e., birth date effects) and developmental decisions (e.g., adaptive plasticity) of their offspring. We explored the consequences of these decisions using a highly iteroparous coral reef fish (the sixbar wrasse, Thalassoma hardwicke) and in a system where both parental and offspring environments vary with the lunar cycle. We tested the hypotheses that (1) reproductive patterns and offspring survival vary across the lunar cycle and (2) offspring exhibit adaptive plasticity in development time. We evaluated temporal variation in egg production from February to June 2017, and corresponding larval developmental histories (inferred from otolith microstructure) of successful settlers and surviving juveniles that were spawned during that same period. We documented lunar-cyclic variation in egg production (most eggs were spawned at the new moon). This pattern was at odds with the distribution of birth dates of settlers and surviving juveniles-most individuals that successfully survived to settlement and older stages were born during the full moon. Consequently, the probability of survival across the larval stage was greatest for offspring born close to the full moon, when egg production was at its lowest. Offspring also exhibited plasticity in developmental duration, adjusting their age at settlement to settle during darker portions of the lunar cycle than expected given their birth date. Offspring born near the new moon tended to be older and larger at settlement, and these traits conveyed a strong fitness advantage (i.e., a carryover effect) through to adulthood. We speculate that these effects (1) are shaped by a dynamic landscape of risk and reward determined by moonlight, which differentially influences adults and offspring, and (2) can explain the evolution of extreme iteroparity in sixbars.

摘要

大多数生物在动态环境中繁殖,生活史理论预测,这可能有利于那些利用好时光并避开坏时光的策略的进化。当后代经历这些环境变化时,适合度可能很大程度上取决于出生时和后期生命阶段的环境条件。因此,适合度将受到父母的生殖决策(即出生日期效应)及其后代的发育决策(例如适应性可塑性)的影响。我们使用一种高度多次繁殖的珊瑚礁鱼类(六带裂唇鱼,Thalassoma hardwicke),并在一个亲代和后代环境都随月相周期变化的系统中,探究了这些决策的后果。我们检验了以下假设:(1)繁殖模式和后代存活率在月相周期中有所不同,以及(2)后代在发育时间上表现出适应性可塑性。我们评估了2017年2月至6月期间的产卵时间变化,以及同期产卵的成功定居者和存活幼鱼相应的幼体发育史(从耳石微结构推断)。我们记录了产卵的月相周期变化(大多数卵在新月时产出)。这种模式与定居者和存活幼鱼的出生日期分布不一致——大多数成功存活到定居及更年长阶段的个体出生在满月期间。因此,在产卵量最低的满月附近出生的后代,在幼体阶段存活的概率最大。后代在发育持续时间上也表现出可塑性,根据其出生日期,它们会调整定居时的年龄,以便在月相周期较暗的时段定居。新月附近出生的后代在定居时往往年龄更大、体型更大,并且这些特征一直延续到成年期,带来了很强的适合度优势(即遗留效应)。我们推测,这些效应(1)是由月光决定的风险和回报的动态格局塑造的,月光对成年个体和后代的影响不同,以及(2)可以解释六带裂唇鱼极端多次繁殖的进化。

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