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J-GLOBAL ID:201602258528554522   Reference number:16A1213112

Are Symbiotic Methanotrophs Key Microbes for N Acquisition in Paddy Rice Root?

共生メタン栄養菌は水稲の根のN獲得のための重要な微生物か?
Author (7):
Material:
Volume: 31  Issue:Page: 4-10(J-STAGE)  Publication year: 2016 
JST Material Number: L0704A  ISSN: 1342-6311  Document type: Article
Article type: 文献レビュー  Country of issue: Japan (JPN)  Language: ENGLISH (EN)
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Author keywords (5):
JST classification (3):
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Metabolism and nutrition  ,  Interaction between dissimilar organisms  ,  Rice cropping 
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Reference (62):
  • 1. Anda, M, S Ikeda, S Eda, T Okubo, S Sato, S Tabata, H Mitsui, and K Minamisawa. 2011. Isolation and genetic characterization of Methylobacterium and Aurantimonas species from stems of hypernodulated soybeans. Microbes Environ. 26:172-180.
  • 2. Banba, M, C Gutjahr, A Miyao, H Hirochika, U Paszkowski, H Kouchi, and H Imaizumi-Anraku. 2008. Divergence of evolutionary ways among common sym genes: CASTOR and CCaMK show functional conservation between two symbiosis systems and constitute the root of a common signaling pathway. Plant Cell Physiol. 49:1659-1671.
  • 3. Banger, K, H Tian, and C Lu. 2012. Do nitrogen fertilizers stimulate or inhibit methane emissions from rice fields? Global Change Biol. 18:3257-3267.
  • 4. Bao, Z, T Okubo, K Kubota, Y Kasahara, H Tsurumaru, M Anda, S Ikeda, and K Minamisawa. 2014. Metaproteomic identification of diazotrophic methanotrophs and their localization in root tissues of field-grown rice plants. Appl Environ Microbiol. 80:5043-5052.
  • 5. Bao, Z, A Watanabe, K Sasaki, et al. 2014. A rice gene for microbial symbiosis, OsCCaMK, reduces CH4 flux in a paddy field with low nitrogen input. Appl Environ Microbiol. 80:1995-2003.
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