首页> 外文期刊>Ecology: A Publication of the Ecological Society of America >Seed production and predation in a changing climate: new roles for resource and seed predator feedback?
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Seed production and predation in a changing climate: new roles for resource and seed predator feedback?

机译:改变气候的种子生产和捕食:资源和种子捕食者反馈的新作用?

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Climate change may cause changes in the dynamics of populations beyond comparatively simple directional effects. To better understand complex effects on dynamics requires long-term studies of populations that experience changes in climatic conditions. We study the dynamics of a seed-production-seed-predation system, consisting of a perennial herb and its two seed predatory insects, over a 40-yr period during which climate change has caused the annual growing season to increase by 20 d. During this period, plant patches have increased almost threefold in size and seed production has slipped into a pattern of alternate high and low years with a higher variance than in the beginning of the period. We find that seed production is associated with precipitation of the present summer and a non-linear feedback from seed production of the previous year. When previous year's seed production is low, weather forcing and unexplained noise determine the extent of seed production. When previous seed production is high, depleted resources limit seed production. Resource depletion happened frequently in the latter parts of the study but rarely in the beginning. The changing patterns of seed production in turn affect the dynamics of seed predation, which is dominated by one of the seed predators. Its dynamics are strongly linked to seed density fluctuations, but its population growth rate is satiated when resource fluctuations become too large. In the latter part of the study period, when seed fluctuations were alternating between years of high and low density, satiation was common and there was a large increase in surviving seeds in good years. Our study illustrates that a changing climate can fundamentally influence patterns of long-term dynamics at multiple trophic levels.
机译:气候变化可能导致群体动态变化,超出相对简单的定向效应。为了更好地了解对动态的复杂影响需要对体验变化的群体的长期研究。我们研究了种子生产种子捕食系统的动态,由常年草药及其两种种子掠食性昆虫组成,在40年代的气候变化导致年度增长季节增加到20天。在此期间,植物贴片的大小几乎增加了三倍,种子产量达到了替代和低年度的模式,方差比时期开始更高。我们发现种子生产与本夏季的降水相关,以及去年种子生产的非线性反馈。当前一年的种子产量低时,天气强迫和未解释的噪音决定了种子生产的程度。当先前的种子生产高,资源限制种子生产高。资源耗尽经常发生在研究的后一个部分,但很少在开始。种子产量的变化模式反过来影响种子捕食的动态,其由一种种子捕食者主导。它的动态与种子密度波动强烈挂钩,但是当资源波动变得太大时,它的人口增长率是饱满的。在研究期的后半部分,当种子波动在高密度和低密度之间交替时,饱满的饱和子很常见,并且在好几年内幸存的种子较大。我们的研究表明,变化的气候可以从根本上产生多种营养水平的长期动态模式。

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