[欧洲孔雀蛱蝶发育的热反应规范的可塑性[鳞翅目,蛱蝶科]。

M V Ryzhkova, E B Lopatina
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引用次数: 0

摘要

本研究的目的是研究不同光周期条件和群体与个体维持对欧洲孔雀蝶发育的热反应规范的可塑性。这些越冬影像分别于2010年5月和2012-2013年在圣彼得堡附近的老彼得霍夫(Old Peterhof)收集。采用12个实验方案:4个温度(16、18、20和22℃)和3个光周期(每天光照12、18和22 h)。结果表明,短日照条件下(12 h)幼虫的发育速度略快于长日照条件下(22 h),两者的发育温度阈值无显著差异。表征发育热敏性的线性回归系数只有雄性显著高于雌性,且短日照对雄性发育的影响强于雌性。日长为18 h时,与日长较短时相比,幼虫发育对温度的敏感性较低,且阈值较低。短日照对毛虫发育的影响最明显地表现在羽化蛹的重量变化上:在所有的温度方案中,短日照的蛹比长日照的蛹轻。蛹的重量随着温度的升高而增加。发现的依赖性不符合“温度-尺寸规则”。个体饲养可使幼虫和蛹发育的持续时间更长,热敏性较低,蛹的重量较轻。个体饲养对雌性矿物质的影响大于雄性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[PLASTICITY OF THE THERMAL REACTION NORMS FOR DEVELOPMENT IN THE EUROPEAN PEACOCK BUTTERLY INACHIS IO (LEPIDOPTERA, NYMPHALIDAE)].

The goal of this study was to examine the plasticity of the thermal reaction norms for development in the European Peacock butterfly Inachis io under the effect of different photoperiodic conditions and group versus individual maintenance. The overwintered imagoes were collected in Old Peterhof (near Saint-Petersburg) in May, 2010 and 2012-2013. 12 experimental regimens were used: 4 temperatures (16, 18, 20 and 22 degrees C) and 3 photoperiods (12, 18 and 22 h of light a day). It was found that under short-day conditions (12 h) the caterpillars developed a little faster than under long-day ones (22 h). The developmental temperature thresholds in these two cases did not differ. A linear regression coefficient characterizing thermal sensitivity of development was significantly higher only in males with their development affected by short-day photoperiod stronger than in females. At 18-h day length, the caterpillar development was less temperature-sensitive and characterized by a lower threshold than in shorter and longer days. The influence of short-day photoperiod on the caterpillar development manifested itself most distinctly in the emerging pupae' weight changes: in all the temperature regimens the pupae were lighter at short than at long days. The pupal weight increased as the temperature rose. The found dependence does not agree with the "temperature-size rule". Individual rearing led to a longer duration and lower thermal sensitivity of caterpillar and pupal development as well as to a reduced weight of the pupae. Individual rearing had a stronger impact on the mineral of females than males.

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