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Phylogenetic Diversity of Ribulose-1,5-Bisphosphate Carboxylase/Oxygenase Large-Subunit Genes from Deep-Sea Microorganisms

机译:深海微生物核糖-1,5-二磷酸羧化酶/加氧酶大亚基基因的系统发生多样性

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摘要

The phylogenetic diversity of the ribulose-1,5-bisphosphate carboxylase/oxygenase (RuBisCO, E.C. 4.1.1.39) large-subunit genes of deep-sea microorganisms was analyzed. Bulk genomic DNA was isolated from seven samples, including samples from the Mid-Atlantic Ridge and various deep-sea habitats around Japan. The kinds of samples were hydrothermal vent water and chimney fragment; reducing sediments from a bathyal seep, a hadal seep, and a presumed seep; and symbiont-bearing tissues of the vent mussel, Bathymodiolus sp., and the seep vestimentiferan tubeworm, Lamellibrachia sp. The RuBisCO genes that encode both form I and form II large subunits (cbbL and cbbM) were amplified by PCR from the seven deep-sea sample DNA populations, cloned, and sequenced. From each sample, 50 cbbL clones and 50 cbbM clones, if amplified, were recovered and sequenced to group them into operational taxonomic units (OTUs). A total of 29 OTUs were recorded from the 300 total cbbL clones, and a total of 24 OTUs were recorded from the 250 total cbbM clones. All the current OTUs have the characteristic RuBisCO amino acid motif sequences that exist in other RuBisCOs. The recorded OTUs were related to different RuBisCO groups of proteobacteria, cyanobacteria, and eukarya. The diversity of the RuBisCO genes may be correlated with certain characteristics of the microbial habitats. The RuBisCO sequences from the symbiont-bearing tissues showed a phylogenetic relationship with those from the ambient bacteria. Also, the RuBisCO sequences of known species of thiobacilli and those from widely distributed marine habitats were closely related to each other. This suggests that the Thiobacillus-related RuBisCO may be distributed globally and contribute to the primary production in the deep sea.
机译:分析了深海微生物核糖1,5-双磷酸羧化酶/加氧酶(RuBisCO,E.C. 4.1.1.39)大亚基基因的系统发育多样性。从七个样本中分离出大块基因组DNA,包括来自大西洋中脊和日本各地各种深海栖息地的样本。样品种类为热液排放水和烟囱碎片。减少来自深海渗漏,海底渗漏和假定渗漏的沉积物;口贻贝的体和携带共生体的组织,如Bythymodiolus sp。和渗出的vestimentiferan块虫,Lamellibrachia sp。通过PCR从七个深海样本DNA群体中扩增出编码I型和II型大亚基(cbbL和cbbM)的RuBisCO基因,进行克隆和测序。从每个样品中,回收50个cbbL克隆和50个cbbM克隆(如果扩增)并测序,以将其分组为操作分类单位(OTU)。从总共300个cbbL克隆中记录了总共29个OTU,从总共250个cbbM克隆中记录了总共24个OTU。当前所有的OTU具有其他RuBisCO中存在的特征性RuBisCO氨基酸基序序列。记录的OTU与变形细菌,蓝细菌和真核生物的不同RuBisCO组有关。 RuBisCO基因的多样性可能与微生物栖息地的某些特征有关。带有共生体的组织的RuBisCO序列与周围细菌的系统发育关系。而且,已知的硫杆菌种的RuBisCO序列与来自广泛分布的海洋生境的RuBisCO序列彼此密切相关。这表明与硫杆菌属有关的RuBisCO可能分布于全球,并有助于深海的初级生产。

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