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黑带花蝇自然光周期变异和遗传。

Natural Variation and Genetics of Photoperiodism in Wyeomyia smithii.

机构信息

Institute of Ecology and Evolution, University of Oregon, Eugene, OR, United States.

Institute of Ecology and Evolution, University of Oregon, Eugene, OR, United States.

出版信息

Adv Genet. 2017;99:39-71. doi: 10.1016/bs.adgen.2017.09.002. Epub 2017 Oct 12.

Abstract

Seasonal change in the temperate and polar regions of Earth determines how the world looks around us and, in fact, how we live our day-to-day lives. For biological organisms, seasonal change typically involves complex physiological and metabolic reorganization, the majority of which is regulated by photoperiodism. Photoperiodism is the ability of animals and plants to use day length or night length, resulting in life-historical transformations, including seasonal development, migration, reproduction, and dormancy. Seasonal timing determines not only survival and reproductive success but also the structure and organization of complex communities and, ultimately, the biomes of Earth. Herein, a small mosquito, Wyeomyia smithii, that lives only in the water-filled leaves of a carnivorous plant over a wide geographic range, is used to explore the genetic and evolutionary basis of photoperiodism. Photoperiodism in W. smithii is considered in the context of its historical biogeography in nature to examine the startling finding that recent rapid climate change can drive genetic change in plants and animals at break-neck speed, and to challenge the ponderous 80+ year search for connections between daily and seasonal time-keeping mechanisms. Finally, a model is proposed that reconciles the seemingly disparate 24-h daily clock driven by the invariant rotation of Earth about its axis with the evolutionarily flexible seasonal timer orchestrated by variable seasonality driven by the rotation of Earth about the Sun.

摘要

地球温带和极地地区的季节性变化决定了我们周围世界的面貌,实际上也决定了我们日常生活的方式。对于生物有机体来说,季节性变化通常涉及复杂的生理和代谢重组,其中大部分受光周期现象调节。光周期现象是指动物和植物利用日照时间或黑夜时间的能力,从而导致生命周期的转变,包括季节性发育、迁徙、繁殖和休眠。季节性时间决定了不仅是生存和繁殖成功,还有复杂群落的结构和组织,最终决定了地球的生物群系。在这里,我们使用仅生活在广泛地理范围内肉食性植物充满水的叶子中的小型蚊子 Wyeomyia smithii 来探索光周期现象的遗传和进化基础。从其在自然界中的历史生物地理学角度来考虑 W. smithii 的光周期现象,以检验一个惊人的发现,即最近快速的气候变化可以以惊人的速度驱动动植物的遗传变化,并挑战人们长期以来对昼夜和季节性计时机制之间联系的探索。最后,提出了一个模型,该模型将由地球绕其轴不变旋转驱动的看似不同的 24 小时日常时钟与由地球绕太阳旋转驱动的可变季节性调节的进化灵活的季节性计时器协调起来。

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