Buried straw layer and plastic mulching increase microflora diversity in salinized soil

文献类型: 外文期刊

第一作者: Li Yu-yi

作者: Li Yu-yi;Pang Huan-cheng;Zhao Yong-gan;Wang Jing;Zhai Zhen;Han Xiu-fang;Yan Shou-wei;Zhang Jian-li

作者机构:

关键词: buried straw layer;plastic mulch;soil microflora changes;PCR-DGGE;microflora diversity;salinized soil

期刊名称:JOURNAL OF INTEGRATIVE AGRICULTURE ( 影响因子:2.848; 五年影响因子:2.979 )

ISSN: 2095-3119

年卷期: 2016 年 15 卷 7 期

页码:

收录情况: SCI

摘要: Salt stress has been increasingly constraining crop productivity in arid lands of the world. In our recent study, salt stress was alleviated and crop productivity was improved remarkably by straw layer burial plus plastic film mulching in a saline soil. However, its impact on the microflora diversity is not well documented. Field micro-plot experiments were conducted from 2010 to 2011 using four tillage methods: (i) deep tillage with plastic film mulching (CK), (ii) straw layer burial at 40 cm (S), (iii) straw layer burial plus surface soil mulching with straw material (S+S), and (iv) plastic film mulching plus buried straw layer (P+S). Culturable microbes and predominant bacterial communities were studied; based on 16S rDNA, bacterial community structure and abundance were characterized using denaturing gradient gel electrophoresis (DGGE) and polymerase chain reaction (PCR). Results showed that P+S was the most favorable for culturable bacteria, actinomyces and fungi and induced the most diverse genera of bacteria compared to other tillage methods. Soil temperature had significant positive correlations with the number of bacteria, actinomyces and fungi (P<0.01). However, soil water was poorly correlated with any of the microbes. Salt content had a significant negative correlation with the number of microbers, especially for bacteria and fungi (P<0.01). DGGE analysis showed that the P+S exhibited the highest diversity of bacteria with 20 visible bands followed by S+S, S and CK. Moreover, P+S had the highest similarity (68%) of bacterial communities with CK. The major bacterial genera in all soil samples were Firmicutes, Proteobacteria and Actinobacteria. Given the considerable increase in microbial growth, the combined use of straw layer burial and plastic film mulching could be a practical option for alleviating salt stress effects on soil microbial community and thereby improving crop production in arid saline soils.

分类号:

  • 相关文献

[1]Energy balance and partitioning in partial plastic mulched and non-mulched maize fields on the Loess Plateau of China. Feng, Yu,Gong, Daozhi,Mei, Xurong,Hao, Weiping,Tang, Dahua,Cui, Ningbo,Cui, Ningbo.

[2]Buried straw layer plus plastic mulching reduces soil salinity and increases sunflower yield in saline soils. Zhao, Yonggan,Li, Yuyi,Wang, Jing,Pang, Huancheng,Zhao, Yonggan,Li, Yan.

[3]Buried straw layer plus plastic mulching improves soil organic carbon fractions in an arid saline soil from Northwest China. Huo, Long,Pang, Huancheng,Zhao, Yonggan,Wang, Jing,Lu, Chuang,Li, Yuyi.

[4]INFLUENCE OF THE Nocardia sp. C-14-1 REMEDIATION ON THE GROWTH OF POTTED PLANTS IN CONTAMINATED SOIL AND ON MICROORGANISM BIO-DIVERSITY. Ma, Hai-Juan,Ma, Hai-Juan,Li, Guang-Ming,Zhang, Ya-Lei,Fang, Ping. 2011

[5]Bacterial diversity of gut content in sea cucumber (Apostichopus japonicus) and its habitat surface sediment. Gao Fei,Tan Jie,Sun Huiling,Yan Jingping. 2014

[6]Enhanced biological phosphorus removal by granular sludge in anaerobic/aerobic/anoxic SBR during start-up period. Jiang, Xinxin,Yuan, Yixing,Ma, Fang,Tian, Jiayu,Jiang, Xinxin,Wang, Yu. 2016

[7]Application of 16S rDNA-PCR amplification and DGGE fingerprinting for detection of shift in microbial community diversity in Cu-, Zn-, and Cd-contaminated paddy soils. Li, ZJ,Xu, JM,Tang, CX,Wu, JJ,Muhammad, A,Wang, HZ.

[8]Effects of pretreatment on the microbial community and L-lactic acid production in vinasse fermentation. Liu, Jianguo,Wang, Qunhui,Wang, Shuang,Ma, Hongzhi,Liu, Jianguo,Sun, Xiaohong,Tushiro, Yukihiro.

[9]EFFECTS OF INTERCROPPING ON MICROBIAL COMMUNITY FUNCTION AND DIVERSITY IN CONTINUOUS WATERMELON CROPPING SOIL. Zhang, Hanlin,Zheng, Xianqing,Li, Shuangxi,Zhang, Juanqin,Wang, Jinqing,He, Qiyong,Lv, Weiguang,Jiang, Zhongting,Liu, Linde.

[10]Molecular-based environmental risk assessment of three varieties of genetically engineered cows. Xu, Jianxiang,Zhao, Jie,Wang, Jianwu,Zhao, Yaofeng,Zhang, Lei,Li, Ning,Chu, Mingxing. 2011

[11]Gibel carp Carassius auratus gut microbiota after oral administration of trimethoprim/sulfamethoxazole. Liu, Yuchun,Zhou, Zhigang,Xu, Li,Cao, Yanan,Zhang, Yuting,Yao, Bin,Wu, Ning,Tao, Yu. 2012

[12]Identification of the adherent microbiota on the gills and skin of poly-cultured gibel carp (Carassius auratus gibelio) and bluntnose black bream (Megalobrama amblycephala Yih). Wang, Wenwen,Zhou, Zhigang,He, Suxu,Liu, Yuchun,Cao, Yanan,Shi, Pengjun,Yao, Bin,Ringo, Einar.

[13]The biogeography of fungal communities in wetland sediments along the Changjiang River and other sites in China. Tian, Jianqing,Xiang, Meichun,Sun, Jingzu,Liu, Xingzhong,Wu, Bing,Bai, Chunming.

[14]Analyses of the community compositions of root rot pathogenic fungi in the soybean rhizosphere soil. Cui, Jiaqi,Han, Jie,Cai, Baiyan,Wang, Yu. 2016

[15]Rumen fermentation and bacterial communities in weaned Chahaer lambs on diets with different protein levels. Yang Chun-tao,Si Bing-wen,Diao Qi-yu,Zeng Shu-qin,Tu Yan,Jin Hai. 2016

[16]Microbial diversity in the sediment of a crab pond in Nanjing, China. Liu, Yuchun,Zhou, Zhigang,He, Suxu,Yao, Bin,Ringo, Einar. 2013

[17]Dynamics of soil bacterial communities in Jerusalem artichoke monocropping system. Zhou, X. G.,Gao, D. M.,Zhao, M. L.,Zhang, J. H.,Li, L.,Wu, F. Z.,Zhou, X. G.,Zhao, M. L.,Li, L.. 2016

[18]The intestinal microbial diversity in Chinese shrimp (Fenneropenaeus chinensis) as determined by PCR-DGGE and clone library analyses. Liu, Huaide,Ma, Shaosai,Li, Qiufen,Wang, Lei,Liu, Mei,Wang, Baojie,Jiang, Keyong. 2011

[19]Effect of intercropping on crop yield and chemical and microbiological properties in rhizosphere of wheat (Triticum aestivum L.), maize (Zea mays L.), and faba bean (Vicia faba L.). Song, Y. N.,Zhang, F. S.,Marschner, P.,Fan, F. L.,Gao, H. M.,Bao, X. G.,Sun, J. H.,Li, L.. 2007

[20]DIVERSITY OF METHANE-PRODUCING MICROBIAL COMMUNITY STRUCTURE WITH 16S-V3 rDNA PCR-DGGE. Na, Wang,Liu, Hui-Ying,Niu, Shi-Wei,Hong, Wang,Tao, Yang,Irfan, Muhammad. 2016

作者其他论文 更多>>