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利用温度-体型规则操控寄生蜂体型:适合度后果

Manipulation of parasitoid size using the temperature-size rule: fitness consequences.

作者信息

Colinet H, Boivin G, Hance Th

机构信息

Unité d'Ecologie et de Biogéographie, Biodiversity Research Centre, Université catholique de Louvain, Croix du sud 4-5, 1348 Louvain-La-Neuve, Belgium.

出版信息

Oecologia. 2007 Jun;152(3):425-33. doi: 10.1007/s00442-007-0674-6. Epub 2007 Mar 8.

Abstract

The phenotypic effects of rearing temperature on several fitness components of the koinobiont parasitoid, Aphidius colemani, were examined. Temperatures experienced during development induced a plastic linear response in the dry and fat masses of the immature stage and a non-linear response in the growth rate as well as in the size of adults. We investigated if the phenotypic morphometrical plasticity exhibited by parasitoids reared at different temperatures can induce variations in fitness-related traits in females. We did not find any difference in immature (pupal) mortality in accordance to rearing temperature. However, when examining adult longevity, we found an inverse linear relation with developmental temperature, confirming the usual rule that larger and fatter wasps live longer than smaller ones. The pattern of female fecundity was non-linear; wasps that developed at high and low temperatures were less productive. We suggest that when development is short, the accumulated reserves are not adequate to support both fecundity and survival. By manipulating adult size through changes in the rearing temperature, we showed that the usual shape of the size/fitness function is not always linear as expected. Developmental temperature induced a plasticity in energy reserves which affected the functional constraints between survival and reproduction.

摘要

研究了饲养温度对兼性寄生蜂——菜蚜茧蜂若干适合度组分的表型效应。发育期间经历的温度在未成熟阶段的干重和脂肪量上诱导了可塑性线性反应,在成虫的生长速率和大小上诱导了非线性反应。我们研究了在不同温度下饲养的寄生蜂所表现出的表型形态可塑性是否会导致雌蜂适合度相关性状的变化。我们未发现根据饲养温度不同,未成熟(蛹期)死亡率存在差异。然而,在研究成虫寿命时,我们发现其与发育温度呈反向线性关系,证实了通常的规律,即体型更大、更胖的黄蜂比体型较小的黄蜂寿命更长。雌蜂繁殖力模式是非线性的;在高温和低温下发育的黄蜂繁殖力较低。我们认为,当发育时间较短时,积累的储备不足以同时支持繁殖力和生存。通过改变饲养温度来操纵成虫大小,我们表明大小/适合度函数的通常形状并不总是如预期那样呈线性。发育温度诱导了能量储备的可塑性,这影响了生存与繁殖之间的功能限制。

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