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Phylogenetic diversity of archaeal 16S rRNA and ammonia monooxygenase genes from tropical estuarine sediments on the central west coast of India

机译:印度中西部沿海热带河口沉积物中古细菌16S rRNA和氨单加氧酶基因的系统发生多样性

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摘要

Phylogenetic diversity analyses of archaeal 16S rRNA and ammonia monooxygenase subunit A (AamoA) genes were carried out on sediment samples from the Mandovi and Zuari estuaries on the central west coast of India. The 16S rRNA gene libraries revealed quite high diversity of archaea in these sediments compared to previous reports from tropical and temperate estuarine sediments. Uncultured members of Crenarchaeota accounted for ~78% of 433 archaeal 16S rRNA gene clones from both of the estuaries. We detected archaeal 16S and amoA gene-related organisms capable of ammonia oxidation. Among Crenarchaeota, marine group I (MG I) was the most predominant. Clones matching the uncultured methanobacteria were predominant among the ribogroups of Euryarchaeota. Our results indicate that archaeal diversity in tropical estuarine sediments is influenced by the mangrove vegetation bordering the lower stretches of both estuaries. Higher diversity may be related to elevated land drainage during the monsoon, particularly in the Mandovi estuary sediments. Also, the diversity of AamoA sequences was higher in Mandovi sediments than those from Zuari and other tropical and/or temperate estuaries studied previously.
机译:在印度中部西海岸的Mandovi和Zuari河口沉积物样品上进行了古细菌16S rRNA和氨单加氧酶亚基A(AamoA)基因的系统发育多样性分析。与先前热带和温带河口沉积物的报道相比,16S rRNA基因文库显示这些沉积物中古细菌的多样性很高。在两个河口的433个古细菌16S rRNA基因克隆中,Crenarchaeota的未培养成员约占78%。我们检测到能够氨氧化的古细菌16S和amoA基因相关生物。在Crenarchaeota中,第一类海洋生物(MG I)最主要。在Euryarchaeota的核糖基团中,与未培养的甲烷细菌匹配的克隆占主导。我们的结果表明,热带河口沉积物中的古细菌多样性受到两个河口下部延伸的红树林植被的影响。较高的多样性可能与季风期间土地排水量增加有关,尤其是在曼多维河口沉积物中。而且,曼多维沉积物中AamoA序列的多样性要比祖亚里和其他先前研究过的热带和/或温带河口中的更高。

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