Phylogenetic Relationship of Symbiotic Archaea in the Gut of the Higher Termite Nasutitermes takasagoensis Fed with Various Carbon Sources
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概要
- 論文の詳細を見る
The phylogenetic relationship of archaea in the gut of the wood-feeding higher termite Nasutitermes takasagoensis fed with various carbon sources was investigated using a clonal analysis based on 16S rRNA gene sequences. The representative phylotypes were affiliated with the Methanomicrobiales, Methanosarcinales, Methanobacteriales, and Thermoplasmatales of the Euryarchaeota, and with the Crenarchaeota. The majority of clones obtained in this study were closely related to those obtained from other termite species, regardless of the carbon source in the feed. The relative clone frequencies of the libraries from wood powder-, xylose-, cellobiose-, and glucose-fed termites were similar to those from the library of wood-fed termites. On the other hand, the relative clone frequency of the library from xylan-fed termites in which the Thermoplasmatales predominated differed from that of the library from the wood-fed termites. These results suggest that, except for xylan, the carbohydrate components in feeds have a limited influence on archaeal community structures.
- 日本微生物生態学会の論文
著者
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AOYAGI Hideki
Life Science and Bioengineering, Graduate School of Life and Environmental Sciences, University of T
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Aoyagi Hideki
Institute Of Life Science And Bioengineering Graduate School Of Life And Environmental Science Unive
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Aoyagi Hideki
Life Sciences And Bioengineering Graduate School Of Life And Environmental Sciences Univ. Of Tsukuba
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Aoyagi Hideki
Life Science And Bio Engineering Laboratory Graduate School Of Life And Environmental Sciences Unive
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Tanaka Hideo
Institute Of Life Science And Bioengineering Graduate School Of Life And Environmental Science Unive
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MIYATA RYO
Life Sciences and Bioengineering, Graduate School of Life and Environmental Sciences, University of
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NODA NAOHIRO
Institute for Biological Resources and Functions, National Institute of Advanced Industrial Science
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TAMAKI HIDEYUKI
Institute for Biological Resources and Functions, National Institute of Advanced Industrial Science
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KINJYO KAZUHIKO
Department of Bioscience and Biotechnology, Faculty of Agriculture, University of the Ryukyus
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UCHIYAMA HIROO
Life Sciences and Bioengineering, Graduate School of Life and Environmental Sciences, University of
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TANAKA HIDEO
Life Sciences and Bioengineering, Graduate School of Life and Environmental Sciences, University of
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Noda Naohiro
National Institute Of Advanced Industrial Science And Technology (aist)
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Noda Naohiro
Institute For Biological Resources And Functions National Institute Of Advanced Industrial Science A
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Tamaki Hideyuki
Inst. For Biological Resources And Functions National Inst. Of Advanced Industrial Sci. And Technol.
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Miyata Ryo
Life Sciences And Bioengineering Graduate School Of Life And Environmental Sciences University Of Ts
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Kinjyo Kazuhiko
Department Of Bioscience And Biotechnology Faculty Of Agriculture University Of The Ryukyus
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Tamaki Hideyuki
Aist
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Uchiyama Hiroo
Life Sciences And Bioengineering Graduate School Of Life And Environmental Sciences University Of Ts
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Tamaki Hideyuki
Institute For Biological Resources And Functions National Institute Of Advanced Industrial Science A
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Tamaki Hideyuki
Bioproduction Research Institute National Institute Of Advanced Industrial Science And Technology (a
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Tanaka Hideo
Institute For Biological Resources And Functions National Institute Of Advanced Industrial Science A
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Tamaki Hideyuki
Institute For Biological Resources & Functions National Institute Of Advanced Industrial Science
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Tamaki Hideyuki
Institute Of Applied Biochemistry University Of Tsukuba
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Tanaka Hideo
Life Science And Bio Engineering Laboratory Graduate School Of Life And Environmental Sciences Unive
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Uchiyama Hiroo
Life Sciences And Bioengineering Graduate School Of Life And Environmental Sciences University Of Ts
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