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可能限制入侵亚洲滨蟹 Hemigrapsus sanguineus 扩散的机制。

Mechanisms of possible self-limitation in the invasive Asian shore crab Hemigrapsus sanguineus.

机构信息

Biology Department, Brigham Young University, Provo, UT, 84662, USA.

出版信息

Sci Rep. 2020 Oct 9;10(1):16908. doi: 10.1038/s41598-020-74053-5.

Abstract

Population sizes of invasive species are commonly characterized by boom-bust dynamics, and self-limitation via resource depletion is posited as one factor leading to these boom-bust changes in population size. Yet, while this phenomenon is well-documented in plants, few studies have demonstrated that self-limitation is possible for invasive animal species, especially those that are mobile. Here we examined the invasive Asian shore crab Hemigrapsus sanguineus, a species that reached very high abundances throughout invaded regions of North America, but has recently declined in many of these same regions. We examined the relationship between diet, energy storage, reproduction, and growth in crabs collected from the New Hampshire coast. We show that energy storage and reproduction both increase with diet quality, while growth declines with diet quality. These results suggest that self-limitation may be a contributing factor to the recent declines of H. sanguineus at sites where this invader was once much more abundant. Further, these results suggest a diet-associated tradeoff in energy allocation to different vital rates, with a focus on reproduction when high quality resources are consumed, and a focus instead on growth when poor quality resources are consumed.

摘要

入侵物种的种群规模通常具有繁荣-萧条动态,资源枯竭导致的自我限制被认为是导致这种种群规模繁荣-萧条变化的因素之一。然而,尽管这种现象在植物中得到了很好的记录,但很少有研究表明自我限制对于入侵动物物种是可能的,尤其是那些移动性强的物种。在这里,我们研究了入侵的亚洲岸蟹 Hemigrapsus sanguineus,该物种在北美的许多入侵地区达到了非常高的丰度,但在这些地区中的许多地区最近却有所减少。我们研究了从新罕布什尔州海岸采集的螃蟹的饮食、能量储存、繁殖和生长之间的关系。我们发现,能量储存和繁殖都随着饮食质量的增加而增加,而生长则随着饮食质量的下降而下降。这些结果表明,自我限制可能是导致这种入侵物种在曾经更为丰富的地点最近减少的一个因素。此外,这些结果表明,在能量分配到不同关键生活率方面存在与饮食相关的权衡,当消耗高质量资源时,重点放在繁殖上,而当消耗低质量资源时,重点放在生长上。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe16/7547685/551d22ac45b1/41598_2020_74053_Fig1_HTML.jpg

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