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舞毒蛾滞育发育的最优低温和滞育期:基于相似的机制,无论是夏季滞育还是冬季滞育。

Optimal low temperature and chilling period for both summer and winter diapause development in Pieris melete: based on a similar mechanism.

机构信息

Key Laboratory of Crop Physiology, Ecology and Genetic Breeding, Jiangxi Province, Institute of Entomology, Jiangxi Agricultural University, Nanchang, China.

出版信息

PLoS One. 2013;8(2):e56404. doi: 10.1371/journal.pone.0056404. Epub 2013 Feb 18.

Abstract

The cabbage butterfly, Pieris melete hibernates and aestivates as a diapausing pupa. We present evidence that the optimum of low temperature and optimal chilling periods for both summer and winter diapause development are based on a similar mechanism. Summer or winter diapausing pupae were exposed to different low temperatures of 1, 5, 10 or 15°C for different chilling periods (ranging from 30 to 120 d) or chilling treatments started at different stages of diapause, and were then transferred to 20°C, LD12.5:11.5 to terminate diapause. Chilling temperature and duration had a significant effect on the development of aestivating and hibernating pupae. The durations of diapause for both aestivating and hibernating pupae were significantly shorter when they were exposed to low temperatures of 1, 5 or 10°C for 50 or 60 days, suggesting that the optimum chilling temperatures for diapause development were between 1 and 10°C and the required optimal chilling period was about 50-60 days. Eighty days of chilling was efficient for the completion of both summer and winter diapause. When chilling periods were ≥90 days, the durations of summer and winter diapause were significantly lengthened; however, the adult emergence was more synchronous. The adaptive significance of a similar mechanism on summer and winter diapause development is discussed.

摘要

菜粉蝶以滞育蛹的形式进行冬眠和夏眠。我们提供的证据表明,夏季和冬季滞育发育的最佳低温和最佳冷藏期是基于相似的机制。夏季或冬季滞育蛹在不同的低温(1、5、10 或 15°C)下暴露于不同的冷藏期(30 至 120 天),或者在滞育的不同阶段开始冷藏处理,然后转移到 20°C,LD12.5:11.5 以终止滞育。冷藏温度和时间对休眠和休眠蛹的发育有显著影响。当休眠蛹在 1、5 或 10°C 下暴露 50 或 60 天时,休眠蛹的休眠期明显缩短,这表明滞育发育的最佳冷藏温度在 1 到 10°C 之间,所需的最佳冷藏期约为 50-60 天。80 天的冷藏期对于完成夏季和冬季滞育都是有效的。当冷藏期≥90 天时,夏季和冬季滞育的持续时间明显延长;然而,成虫的出现更加同步。讨论了这种相似机制对夏季和冬季滞育发育的适应性意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c50c/3575341/02d2f56723b6/pone.0056404.g001.jpg

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