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首页> 外文期刊>Microbial Ecology >Community Structure of Planktonic Fungi and the Impact of Parasitic Chytrids on Phytoplankton in Lake Inba, Japan
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Community Structure of Planktonic Fungi and the Impact of Parasitic Chytrids on Phytoplankton in Lake Inba, Japan

机译:日本印巴湖浮游真菌的群落结构及寄生鳞y对浮游植物的影响

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摘要

Freshwater fungi have received little attention by scientific research in recent years, especially fungi of the pelagic zone. Recently, parasitic fungi, termed chytrids, have been found to play important roles in aquatic food webs. Yet, the diversity and community structure of planktonic fungi including chytrids are not well studied. In this study, we examined the temporal fluctuations of freshwater fungi, including chytrids, in Lake Inba by using molecular techniques of denaturing gradient gel electrophoresis (DGGE). DGGE profiles, and associated sequence analysis, indicated that chytrids were present on all sampling dates from May to October (n = 12). In addition, analysis showed that a large proportion of the sequences belonged to chytrids of both parasitic and saprotrophic species. This finding was supported by microscopic observations using Calcofluor white to stain chytrids infecting various phytoplankton species. The percentages of infection by chytrids on two dominant diatom species, Aulacoseira granulata and Aulacoseira ambigua, showed a similar seasonal pattern in the DGGE band profiles. From the phylogenetic analysis and microscopic identification, the chytrids infecting the two diatoms are likely to be affiliated to Chytriomyces sp. and Zygorhizidium sp.. This is the first study to show that DGGE is a useful preliminary approach for examining the diversity of planktonic fungi including chytrids. Our results indicate both parasitic and saprotrophic chytrids are a significant component of freshwater fungi inhabiting the pelagic zone of Lake Inba, Japan. Further modification of DGGE, together with new molecular techniques and microscopic observation, would reveal the hidden diversity and ecological significance of planktonic fungi in aquatic ecosystems.
机译:近年来,淡水真菌很少受到科学研究的关注,尤其是中上层带的真菌。近来,已发现被称为糜蛋白酶的寄生真菌在水生食物网中起重要作用。然而,浮游真菌包括乳糜菌的多样性和群落结构尚未得到很好的研究。在这项研究中,我们使用变性梯度凝胶电泳(DGGE)的分子技术检查了印巴湖中包括乳糜菌在内的淡水真菌的时间波动。 DGGE图谱和相关的序列分析表明,从5月到10月的所有采样日期都存在糜蛋白酶(n = 12)。另外,分析表明,大部分序列属于寄生和腐养物种的糜蛋白酶。这一发现得到了使用钙荧光粉对染有各种浮游植物物种的乳糜菌染色的显微镜观察的支持。两种主要硅藻物种(Aulacoseira granulata和Aulacoseira ambigua)上的糜蛋白酶感染百分比在DGGE带谱中显示出相似的季节性模式。从系统发育分析和显微镜鉴定来看,感染这两个硅藻的糜蛋白酶很可能隶属于Chytriomyces sp。这是第一个显示DGGE是检查浮游真菌(包括乳糜菌)多样性的有用的初步方法的研究。我们的结果表明,寄生的和腐生的壶菌都是居住在日本印巴湖中上层带的淡水真菌的重要组成部分。 DGGE的进一步改良,再加上新的分子技术和显微镜观察,将揭示水生生态系统中浮游真菌的隐藏多样性和生态学意义。

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  • 来源
    《Microbial Ecology》 |2012年第2期|p.358-368|共11页
  • 作者单位

    Department of Environmental Science, Faculty of Science, Toho University, Miyama 2-1-1, 275-8510, Funabashi, Chiba, Japan;

    Department of Environmental Science, Faculty of Science, Toho University, Miyama 2-1-1, 275-8510, Funabashi, Chiba, Japan;

    Environmental Radiation Effects Research Group, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage, Chiba, 263-8555, Japan;

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