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Methane Emissions and Microbial Communities as Influenced by Dual Cropping of Azolla along with Early Rice

机译:满江红和早稻双重种植对甲烷排放和微生物群落的影响

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摘要

Azolla caroliniana Willd. is widely used as a green manure accompanying rice, but its ecological importance remains unclear, except for its ability to fix nitrogen in association with cyanobacteria. To investigate the impacts of Azolla cultivation on methane emissions and environmental variables in paddy fields, we performed this study on the plain of Dongting Lake, China, in 2014. The results showed that the dual cropping of Azolla significantly suppressed the methane emissions from paddies, likely due to the increase in redox potential in the root region and dissolved oxygen concentration at the soil-water interface. Furthermore, the floodwater pH decreased in association with Azolla cultivation, which is also a factor significantly correlated with the decrease in methane emissions. An increase in methanotrophic bacteria population (pmoA gene copies) and a reduction in methanogenic archaea (16S rRNA gene copies) were observed in association with Azolla growth. During rice cultivation period, dual cropping of Azolla also intensified increasing trend of 1/Simpson of methanogens and significantly decreased species richness (Chao 1) and species diversity (1/Simpson, 1/D) of methanotrophs. These results clearly demonstrate the suppression of CH4 emissions by culturing Azolla and show the environmental and microbial responses in paddy soil under Azolla cultivation.
机译:Azolla caroliniana威尔德。被广泛用作水稻的绿肥,但除与蓝细菌结合固定氮的能力外,其生态重要性尚不清楚。为了调查满江红种植对稻田甲烷排放和环境变量的影响,我们于2014年在中国洞庭湖平原进行了这项研究。结果表明,满江红的双重种植显着抑制了稻田甲烷排放,这可能是由于根部区域的氧化还原电位增加以及土壤-水界面的溶解氧浓度所致。此外,洪水的pH值与Azolla种植相关联地下降,这也是与甲烷排放量下降显着相关的一个因素。甲烷菌的细菌种群增加(pmoA基因拷贝)和产甲烷的古细菌减少(16S rRNA基因拷贝)与Azolla生长相关。在水稻栽培期间,满江红双作还加剧了甲烷菌的1 /辛普森的增加趋势,显着降低了甲烷营养菌的物种丰富度(Chao 1)和物种多样性(1 / Simpson,1 / D)。这些结果清楚地证明了通过培养满江红对CH4排放的抑制作用,并表明了满江红对稻田土壤环境和微生物的响应。

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