Microbial biomass and nitrogen transformations in surface soils strongly acidified by volcanic hydrogen sulfide deposition in Osorezan, Japan(Soil Biology)
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概要
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Volcanic acidification has created unique ecosystems that have had to adapt to the acidic environments in volcanic regions. To characterize the primary microbial properties of strongly acidified soils in such environments, we investigated microbial biomass, nitrogen transformations and other relevant chemical properties in the surface soils of solfatara and forests from Osorezan, a typical volcanic region in Japan, and compared the results to common Japanese forest soils. Soil microbial biomass C (MBC) and N (MBN) were determined using the chloroform fumigation-extraction method. Potential net N mineralization and net nitrification were measured in aerobic laboratory incubations. Long-term acidification in the Osorezan soils by volcanic hydrogen sulfide deposition caused low soil pH (3.0-3.8), base cation deficiency and increased concentrations of toxic ions such as Al^<3+>. The proportions of MBC to total carbon (MBC/TC ratio) and MBN to total nitrogen (MBN/TN ratio) were lower than those in common Japanese forest soils. The extreme acidic conditions may have inhibited microbial survival in the Osorezan acid soils. Net N mineralization occurred at rates comparable to those in common Cryptomeria japonica forest soils, probably because of the presence of acid-tolerant soil microorganisms. Net nitrification was completely inhibited and autotrophic ammonia oxidizers were not detected by the MPN method. The inhibition of nitrification prevents nitrogen leaching from the soils, thus maintaining a nitrogen cycle in the volcanic acid region in which NO_4^+ (and NH_3) is recycled among microorganisms and plants.
- 社団法人日本土壌肥料学会の論文
著者
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Inubushi Kazuyuki
Graduate School Of Horticulture Chiba University
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Sakamoto Kazunori
Grad. Sch. Hort. Chiba Univ.
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Inubushi Kazuyuki
Grad. Sch. Hort. Chiba Univ.
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Inubushi K
Faculty Of Horticulture Chiba University
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SAKAMOTO Kazunori
Graduate School of Horticulture, Chiba University
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WATANABE Mirai
Water and Soil Environment Division, National Institute for Environmental Studies
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YAMAMURA Shigeki
Water and Soil Environment Division, National Institute for Environmental Studies
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TAKAMATSU Takejiro
Center for Water Environment Studies, Ibaraki University
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KOSHIKAWA Masami
Water and Soil Environment Division, National Institute for Environmental Studies
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HAYASHI Seiji
Water and Soil Environment Division, National Institute for Environmental Studies
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MURATA Tomoyoshi
Water and Soil Environment Division, National Institute for Environmental Studies
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SAITO Shoko
Office of Kamikita region, Aomori Prefecture
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Murata Tomoyoshi
Water And Soil Environment Division National Institute For Environmental Studies
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Sakamoto Kazunori
Graduate School Of Horticulture Chiba University
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Saito Shoko
Office Of Kamikita Region Aomori Prefecture
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Watanabe Mirai
Water And Soil Environment Division National Institute For Environmental Studies
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Yamamura Shigeki
Water And Soil Environment Division National Institute For Environmental Studies
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Takamatsu Takejiro
Center For Water Environment Studies Ibaraki University
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Hayashi Seiji
Water And Soil Environment Division National Institute For Environmental Studies
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Koshikawa Masami
Water And Soil Environment Division National Institute For Environmental Studies
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Inubushi Kazuyuki
千葉大 大学院
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