Mixed irrigation affects the composition and diversity of the soil bacterial community

Author:

Zhao Jieru12,Wang Juan2,Cui Bingjian13,Zhai Biyu2,Hu Chao13,Liu Yuan13,Xia Lu4,Liu Chuncheng13,Li Zhongyang1352

Affiliation:

1. Institute of Farmland Irrigation, Chinese Academy of Agricultural Sciences , Xinxiang , 453002 , China

2. College of Hydraulic Science and Engineering, Yangzhou University , Yangzhou , China

3. Agriculture Water and Soil Environmental Field Science Research Station of Xinxiang City of Chinese Academy of Agricultural Sciences , Xinxiang , 453000 , China

4. College of Resources and Environment, Shanxi Agricultural University , Taigu , Jinzhong , China

5. National Research and Observation Station of Shangqiu Agro-ecology System , Shangqiu , 476000 , China

Abstract

Abstract Water resource shortage has become an important factor limiting agricultural sustainability in China. In addition, the development and utilization of unconventional water resources are greatly important for alleviating agricultural water resource deficit. The Pakchoi was cultivated by using the surface soil (0–20 cm) from the field in this pot experiment. The experiment lasted for approximately 1 month to study microbial community structure variation under brackish water and reclaimed water irrigation. The 16S rDNA high-throughput assays revealed that soil bacteria mainly consisted of Proteobacteria and Actinobacteria at the Phylum level, along with Arenimonas and Nocardioides at the Genus level under mixed irrigation with brackish water and reclaimed water. In summary, irrigation with pure reclaimed water promoted part of microbial communities and irrigation with pure brackish water inhibited the growth and activities of certain microbial communities. We found that mixed irrigation improved the microbial community structure diversity compared with that in response to pure brackish water irrigation, while decreased the community structure diversity compared with that in response to fresh water irrigation and pure reclaimed water irrigation.

Publisher

Walter de Gruyter GmbH

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