Temporal variation in community structure of zoosporic fungi in Lake Biwa, Japan

IF 1.6 4区 环境科学与生态学 Q3 ECOLOGY Aquatic Microbial Ecology Pub Date : 2021-01-01 DOI:10.3354/AME01970
P. Song, R. Yi, S. Tanabe, N. Goto, K. Seto, M. Kagami, S. Ban
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引用次数: 2

Abstract

Zoosporic fungi play an important role in aquatic environments, but their diversity, especially that of parasitic fungi of phytoplankton, has still not been fully revealed. We conducted monthly analyses of the community structure of zoosporic fungi at a pelagic site in Lake Biwa, Japan, from May to December 2016. Metabarcoding analysis, targeted to a large subunit region of ribosomal DNA in the nano-size fraction of particles (2−20 μm), was carried out on the samples. We also counted large phytoplankton and chytrid sporangia attached to the hosts. We detected 3 zoosporic fungal phyla (Blastocladiomycota, Chytridiomycota and Cryptomycota) within 107 operational taxonomic units (OTUs), in which Chytridiomycota was the most diverse and abundant phylum. Few fungal OTUs overlapped between months, and specific communities were detected in each month. These results showed that diverse zoosporic fungi with high temporal variability inhabited the lake. Five large phytoplankton species were found to be infected by chytrids: Staurastrum dorsidentiferum, S. rotula, Closterium aciculare, Asterionella formosa and Aulacoseira granulata. Some chytrids were detected by metabarcoding analysis: Zygophlyctis asterionellae infecting A. formosa, Staurastromyces oculus infecting S. dorsidentiferum and Pendulichytrium sphaericum infecting A. granulata. One OTU detected in association with infected C. aciculare by microscopic counting might have been an obligate parasitic chytrid of C. aciculare. The results indicated that a combination of metabarcoding and microscopic analysis revealed more information on zoosporic fungi, including those that are parasitic.
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琵琶湖游动孢子真菌群落结构的时间变化
游动孢子真菌在水生环境中发挥着重要的作用,但其多样性,特别是浮游植物寄生真菌的多样性尚未完全揭示。2016年5月至12月,我们在日本琵琶湖的一个远洋地点对游动孢子真菌的群落结构进行了月度分析。针对纳米级颗粒(2 ~ 20 μm)中核糖体DNA的一个大亚基区域,对样品进行了元条形码分析。我们还计算了附着在寄主上的大型浮游植物和壶菌孢子囊。在107个操作分类单元(OTUs)中检测到3个游动孢子真菌门(Blastocladiomycota,壶菌门和隐菌门),其中壶菌门是种类最多、数量最多的门。真菌OTUs在不同月份间重叠较少,每个月都有特定的群落。这些结果表明,该湖泊存在多种多样的动物孢子真菌,具有较高的时间变异性。发现有5种大型浮游植物被壶菌感染,分别是:背乳状菌、轮状菌、针状梭菌、台湾Asterionella formosa和Aulacoseira granulata。通过元编码分析,检测到一些壶菌,分别是感染台湾弧菌(A. formosa)的星裂菌(Zygophlyctis asterionellae)、感染背氏弧菌(S. dorsidentiferum)的oculus耳耳真菌和感染肉芽弧菌(A. granulata)的球形钟摆菌(pendulichyum sphaerum)。显微镜计数检测到与感染的针状乳杆菌相关的一个OTU可能是针状乳杆菌的专性寄生壶菌。结果表明,结合元条形码和显微镜分析揭示了更多关于游动孢子真菌的信息,包括那些寄生真菌。
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来源期刊
Aquatic Microbial Ecology
Aquatic Microbial Ecology 环境科学-海洋与淡水生物学
CiteScore
3.30
自引率
0.00%
发文量
8
审稿时长
3.0 months
期刊介绍: AME is international and interdisciplinary. It presents rigorously refereed and carefully selected Research Articles, Reviews and Notes, as well as Comments/Reply Comments (for details see AME 27:209), Opinion Pieces (previously called ''As I See It'') and AME Specials. For details consult the Guidelines for Authors. Papers may be concerned with: Tolerances and responses of microorganisms to variations in abiotic and biotic components of their environment; microbial life under extreme environmental conditions (climate, temperature, pressure, osmolarity, redox, etc.). Role of aquatic microorganisms in the production, transformation and decomposition of organic matter; flow patterns of energy and matter as these pass through microorganisms; population dynamics; trophic interrelationships; modelling, both theoretical and via computer simulation, of individual microorganisms and microbial populations; biodiversity. Absorption and transformation of inorganic material; synthesis and transformation of organic material (autotrophic and heterotrophic); non-genetic and genetic adaptation; behaviour; molecular microbial ecology; symbioses.
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