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代谢条形码揭示了独特的微生物垫群落以及低氧、高硫岩溶坑和泉水中生物地理影响的证据。

Metabarcoding reveals unique microbial mat communities and evidence of biogeographic influence in low-oxygen, high-sulfur sinkholes and springs.

作者信息

Fray Davis, McGovern Callahan A, Casamatta Dale A, Biddanda Bopaiah A, Hamsher Sarah E

机构信息

Annis Water Resources Institute Grand Valley State University Muskegon Michigan USA.

Department of Biology University of North Florida Jacksonville Florida USA.

出版信息

Ecol Evol. 2024 Mar 24;14(3):e11162. doi: 10.1002/ece3.11162. eCollection 2024 Mar.

DOI:10.1002/ece3.11162
PMID:38529029
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10961586/
Abstract

High-sulfur, low-oxygen environments formed by underwater sinkholes and springs create unique habitats populated by microbial mat communities. To explore the diversity and biogeography of these mats, samples were collected from three sites in Alpena, Michigan, one site in Monroe, Michigan, and one site in Palm Coast, Florida. Our study investigated previously undescribed eukaryotic diversity in these habitats and further explored their bacterial communities. Mat samples and water parameters were collected from sulfur spring sites during the spring, summer, and fall of 2022. Cyanobacteria and diatoms were cultured from mat subsamples to create a culture-based DNA reference library. Remaining mat samples were used for metabarcoding of the 16S and L regions to explore bacterial and diatom diversity, respectively. Analyses of water chemistry, alpha diversity, and beta diversity articulated a range of high-sulfur, low-oxygen habitats, each with distinct microbial communities. Conductivity, pH, dissolved oxygen, temperature, sulfate, and chloride had significant influences on community composition but did not describe the differences between communities well. Chloride concentration had the strongest correlation with microbial community structure. Mantel tests revealed that biogeography contributed to differences between communities as well. Our results provide novel information on microbial mat composition and present evidence that both local conditions and biogeography influence these unique communities.

摘要

由水下溶洞和泉水形成的高硫、低氧环境创造了由微生物垫群落构成的独特栖息地。为了探索这些垫子的多样性和生物地理学,从密歇根州阿尔皮纳的三个地点、密歇根州门罗的一个地点以及佛罗里达州棕榈海岸的一个地点采集了样本。我们的研究调查了这些栖息地中此前未被描述的真核生物多样性,并进一步探索了它们的细菌群落。在2022年的春季、夏季和秋季,从硫磺泉地点采集了垫子样本和水参数。从垫子子样本中培养蓝细菌和硅藻,以创建一个基于培养的DNA参考文库。剩余的垫子样本用于对16S和L区域进行宏条形码分析,分别探索细菌和硅藻的多样性。对水化学、α多样性和β多样性的分析明确了一系列高硫、低氧栖息地,每个栖息地都有独特的微生物群落。电导率、pH值、溶解氧、温度、硫酸盐和氯化物对群落组成有显著影响,但不能很好地描述群落之间的差异。氯化物浓度与微生物群落结构的相关性最强。Mantel检验表明,生物地理学也导致了群落之间的差异。我们的结果提供了关于微生物垫组成的新信息,并证明了局部条件和生物地理学都会影响这些独特的群落。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1b4/10961586/3b2ca29f0b26/ECE3-14-e11162-g004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1b4/10961586/ffc0057dba7a/ECE3-14-e11162-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1b4/10961586/a60023272eb0/ECE3-14-e11162-g005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1b4/10961586/dadde484401e/ECE3-14-e11162-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1b4/10961586/3b2ca29f0b26/ECE3-14-e11162-g004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1b4/10961586/ffc0057dba7a/ECE3-14-e11162-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1b4/10961586/a60023272eb0/ECE3-14-e11162-g005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1b4/10961586/dadde484401e/ECE3-14-e11162-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1b4/10961586/3b2ca29f0b26/ECE3-14-e11162-g004.jpg

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