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Molecular phylogenetic analysis of sulfate-reducing bacteria from deep sediment layers of the tropical West Pacific warm pool
作者姓名:LUO Zhuhu  YE Dezan  HUANG Xiangling
作者单位:Key Laboratory of Marine Biogenetic Resource of State Oceanic Administration ( SOA), Third Institute of Oceanography, SOA, Xiamen 361005, China
基金项目:国家重点基础研究发展计划(973计划);国家海洋局资助项目
摘    要:1IntroductionThe tropical West Pacific warm pool(TWP-WP),which spans an area roughly between10°Nto10°S of the equator from Indonesia to the dateline,has the world’s warmest sea surface temperature ofbeing greater than29℃.With the increase of recog-niz…

关 键 词:硫酸盐  细菌  深海  沉积物  暖池
收稿时间:2006-01-03
修稿时间:2006-04-15

Molecular phylogenetic analysis of sulfate-reducing bacteria from deep sediment layers of the tropical West Pacific warm pool
LUO Zhuhu,YE Dezan,HUANG Xiangling.Molecular phylogenetic analysis of sulfate-reducing bacteria from deep sediment layers of the tropical West Pacific warm pool[J].Acta Oceanologica Sinica,2006,25(3):98-107.
Authors:LUO Zhuhu  YE Dezan and HUANG Xiangling
Institution:Key Laboratory of Marine Biogenetic Resource of State Oceanic Administration(SOA), Third Institute of Oceanography, SOA, Xiamen 361005, China
Abstract:The diversity of sulfate-reducing bacteria (SRB) from deep layers of deep-sea sediments more than 2 m bsf ( below seafloor) ] of two sites (W01 -3 and WP01 -4) in a tropical West Pacific warm pool region was characterized by using molecular phylogenetic analysis. The results of culture-independent samples demonstrated that the dominant clones from both sites were related to Grampositive spore forming genus, Desulfotomaculum, which accounted for 36.8% of all the sequencing clones from Site WP01 -3 and62.8% from Site WP01 -4. However, the other SRB group which was generally reported to be predominant in the deep-sea sediments of other regions, δ- subclass of the proteobacteria was found to be in very low percentages. Therefore, it could be speculated that there existed a unique chemical environment in the deep-sea sediment of this warm pool region. When comparing the Desulfotomaculum sp. related sequences from both sites, it was revealed that though the Desulfotomaculum-like sequences from Site WP01 -3 were more diverse than those from Site WP01 -4, all these sequences from both sites showed high similarity and formed a new phylogenetically homogeneous cluster in the Desulfotomaculum genus which had never been reported before. Successful enrichment of SRB was only achieved from samples of Site WP01 - 4 and the sequence analysis of culture-dependent samples further confirmed the dominance of Desulfotomaculum genus. But Desulfotomaculum-related sequences from culture-dependent and culture-independent samples belonged to two different clusters respectively. This difference showed the choice of cultivation to the microorganisms.
Keywords:sulfate-reducing bacteria  deep sediment  tropical West Pacific warm pool  molecular phylogenetic analysis  
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