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[中国八种水稻土中产甲烷古菌群落组成的空间变化]

[Spatial shifts in methanogenic archaeal community composition in eight Chinese paddy soils].

作者信息

Zu Qianhui, Wang Baozhan, Zheng Yan, Jia Zhongjun, Lin Xiangui, Feng Youzhi

出版信息

Wei Sheng Wu Xue Bao. 2014 Dec 4;54(12):1397-405.

Abstract

OBJECTIVE

The methanogenic archaea plays many ecological roles in paddy ecosystems such as the regulation of CH4 emissions. However, knowledge gaps exist about the mechanisms of their spatial shift in population.

METHODS

We collected 8 latitudinal paddy soil samples from 20.55 degrees N to 47.43 degrees N in China, and studied their methanogenic archaeal community compositions by PCR-DGGE fingerprinting and phylogenetic analyses. Mechanism of spatial shift in community composition was unraveled by canonical correspondence analysis and Venn diagram.

RESULTS

Soil pH was one of the main environmental triggers to the composition of methanogenic archaea community in paddy soils. In addition, community composition shifted along latitudinal gradients.

CONCLUSION

It is the first report on biogeography of methanogenic archaeal community in arable soils and its environmental driving factors. The information would contribute to understanding spatial shifts in the transformation of organic matters along Chinese latitudinal gradient.

摘要

目的

产甲烷古菌在稻田生态系统中发挥着许多生态作用,如调节甲烷排放。然而,关于其种群空间转移机制的知识仍存在空白。

方法

我们在中国从北纬20.55度至47.43度采集了8个纬度的稻田土壤样本,并通过PCR-DGGE指纹图谱和系统发育分析研究了它们的产甲烷古菌群落组成。通过典范对应分析和维恩图揭示了群落组成的空间转移机制。

结果

土壤pH值是稻田土壤中产甲烷古菌群落组成的主要环境触发因素之一。此外,群落组成沿纬度梯度发生变化。

结论

这是关于耕地土壤中产甲烷古菌群落生物地理学及其环境驱动因素的首次报道。该信息将有助于理解中国纬度梯度上有机物质转化的空间转移。

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