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首页> 外文期刊>Marine ecology progress series >Distribution patterns and nutritional contributions of algal symbionts in the sea anemone Anthopleura xanthogrammica
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Distribution patterns and nutritional contributions of algal symbionts in the sea anemone Anthopleura xanthogrammica

机译:海葵Anthpleura xanthogrammica中海藻共生体的分布模式和营养贡献

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The Pacific intertidal sea anemone Anthopleura xanthogrammica hosts 2 algal symbionts, zoochlorellae Elliptochloris marina and zooxanthellae Symbiodinium muscatinei, either alone or co-occurring. Previous studies have suggested that zoochlorellae and zooxanthellae represent 'cool' and 'warm' symbionts with respect to their field distributions, and that these symbionts may differ in their nutritional contributions to their host. We examined the seasonal distribution, density, and growth of these symbionts in A. xanthogrammica tentacles from tidepools and surge channels on the Olympic peninsula in Washington State, USA, measured temperature variation between these microhabitats, and estimated the contributions of zoochlorellae to A. xanthogrammica diet. Tentacles containing dense concentrations of zoochlorellae were found in both tidepools and surge channels at the lower intertidal limit of anemone occurrence. At the upper intertidal limit, tentacles containing primarily zoochlorellae were found in tidepools, and tentacles containing primarily zooxanthellae were found in surge channels. More extreme high temperatures in the upper surge channel may limit the distribution of zoochlorellae and favor a higher proportion of zooxanthellae in this microhabitat. Despite pronounced seasonal fluctuations in temperature, symbiont composition, density, and dietary carbon sources remained remarkably consistent. Stable isotope analysis showed that A. xanthogrammica received a greater proportion of dietary carbon from zoochlorellae (62-70%) than from heterotrophic feeding on Mytilus californianus mussels (31-38%). This study shows that dense concentrations of zoochlorellae are found in A. xanthogrammica tentacles in cooler microhabitats, and that this symbiont can contribute substantially to anemone nutrition.
机译:太平洋潮间带海葵Anthpleura xanthogrammica可以单独或同时存在2个藻类共生体,即小球藻Elliptochloris marina和小黄藻Symbiodinium muscatinei。先前的研究表明,兽绿藻和虫黄藻在它们的田间分布方面代表着“凉爽”和“温暖”的共生体,这些共生体对宿主的营养贡献可能不同。我们检查了来自美国华盛顿州奥林匹克半岛潮池和潮汐通道中黄藻属触角中这些共生菌的季节性分布,密度和生长,测量了这些微生境之间的温度变化,并估计了兽绿藻对黄原藻的贡献。饮食。在潮汐池和潮汐池下限的海潮中,潮汐池和涌浪通道中都发现了含有密集浓度的小球藻的触手。在潮间带上限时,在潮池中发现了主要含有人为小球藻的触手,而在涌浪通道中发现了主要含有人畜黄藻的触手。上涌通道中更极端的高温可能会限制动物小球藻的分布,并有利于该微生境中更高比例的动物黄藻。尽管温度出现明显的季节性波动,但共生体组成,密度和膳食碳源仍保持显着一致。稳定的同位素分析显示,黄原虫从动物小球藻中获得的膳食碳比例更高(62-70%),而比取自Mytilus californianus贻贝的异养饲料获得的膳食碳比例更高(31-38%)。这项研究表明,在较凉爽的微生境中,黄原虫触角中发现了高浓度的兽绿藻,而且这种共生体可以极大地促进海葵的营养。

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