首页> 外文期刊>Oikos: A Journal of Ecology >Linking '10-year' herbivore cycles to the lunisolar oscillation: the cosmic ray hypothesis.
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Linking '10-year' herbivore cycles to the lunisolar oscillation: the cosmic ray hypothesis.

机译:将“ 10年”草食动物周期与日月纹振荡联系起来:宇宙射线假说。

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摘要

The mean population cycle periods of the snowshoe hare Lepus americanus, the larch budmoth Zeiraphera diniana, and the autumnal moth Epirrita autumnata are 9.3 years, similar to the lunar nodal phase cycle. When the fullew Moon is situated close to the ecliptic plane at solstice, it interacts more strongly with the magnetosphere, which plays a crucial role in protecting the Earth against ionizing cosmic ray particles. Ionization by cosmic rays induces protein mobilization in plants, which may increase forage quality for herbivores. Series of hare/lynx population indices from Canadian provinces and an autumnal moth series from Fennoscandia correlated with the lunar nodal phase cycle with different time lags. Both the time lag and the impact of an active sun, which increases solar energetic particles, but decreases galactic cosmic ray particles, were related to radiation or the distance from the auroral oval. These insights improve our ability to explain and understand population peaks, and should also motivate further studies on the effects of cosmic rays on plant chemistry and herbivore performance.
机译:雪鞋野兔美洲天蛾,落叶松芽蝇Zeiraphera diniana和秋蛾Epirrita autumnata的平均种群周期为9.3年,与月结相周期相似。当满月/新月在冬至时靠近黄道平面时,它与磁层的相互作用更加强烈,这在保护地球免受电离宇宙射线粒子的侵害中起着至关重要的作用。宇宙射线的电离诱导植物中的蛋白质动员,这可能会增加草食动物的饲料质量。来自加拿大各省的野兔/天猫种群指数系列和来自芬诺斯堪的亚的秋蛾系列与不同时间滞后的月结相周期相关。时滞和活跃太阳的影响都增加了太阳高能粒子,但减少了银河宇宙射线粒子,都与辐射或距极光椭圆的距离有关。这些见解提高了我们解释和理解种群高峰的能力,并且还将激发关于宇宙射线对植物化学和草食动物性能影响的进一步研究。

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