Rice roots select for type I methanotrophs in rice field soil

根际 甲烷单加氧酶 生物 末端限制性片段长度多态性 水田 甲烷利用细菌 微观世界 土壤水分 大块土 农学 肥料 限制性片段长度多态性 植物 甲烷 生态学 甲烷厌氧氧化 基因 细菌 聚合酶链反应 生物化学 遗传学
作者
Liqin Wu,Ke Ma,Yahai Lu
出处
期刊:Systematic and Applied Microbiology [Elsevier]
卷期号:32 (6): 421-428 被引量:49
标识
DOI:10.1016/j.syapm.2009.05.001
摘要

Methanotrophs are an important regulator for reducing methane (CH4) emissions from rice field soils. The type I group of the proteobacterial methanotrophs are generally favored at low CH4 concentration and high O2 availability, while the type II group lives better under high CH4 and limiting O2 conditions. Such physiological differences are possibly reflected in their ecological preferences. In the present study, methanotrophic compositions were compared between rice-planted soil and non-planted soil and between the rhizosphere and rice roots by using terminal restriction fragment length polymorphism (T-RFLP) analysis of particulate methane monooxygenase (pmoA) genes. In addition, the effects of rice variety and nitrogen fertilizer were evaluated. The results showed that the terminal restriction fragments (T-RFs), which were characteristic for type I methanotrophs, substantially increased in the rhizosphere and on the roots compared with non-planted soils. Furthermore, the relative abundances of the type I methanotroph T-RFs were greater on roots than in the rhizosphere. Of type I methanotrophs, the 79 bp T-RF, which was characteristic for an unknown group or Methylococcus/Methylocaldum, markedly increased in field samples, while the 437 bp, which possibly represented Methylomonas, dominated in microcosm samples. These results suggested that type I methanotrophs were enriched or selected for by rice roots compared to type II methanotrophs. However, the members of type I methanotrophs are dynamic and sensitive to environmental change. Rice planting appeared to increase the copy number of pmoA genes relative to the non-planted soils. However, neither the rice variety nor the N fertilizer significantly influenced the dynamics of the methanotrophic community.
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