Efficiency of different solarization-based ecological soil treatments on the control of Fusarium wilt and their impacts on the soil microbial community

文献类型: 外文期刊

第一作者: Yao, Yanlai

作者: Yao, Yanlai;Xue, Zhiyong;Hong, Chunlai;Zhu, FengXiang;Chen, Xiaoyang;Wang, Weiping;Huang, Nan;Cai, Zucong;Huang, Nan;Yang, Xinqin

作者机构:

关键词: Fusarium wilt;Soil solarization;Flooding;Organic amendment;Soil remediation;Soil microbial community

期刊名称:APPLIED SOIL ECOLOGY ( 影响因子:4.046; 五年影响因子:4.884 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Fusarium wilt is considered one of the most destructive soil-borne diseases. Solarization-based soil treatments for the control of Fusarium wilt are considered ecological and are widely used. In this study, differences in the efficiency of Fusarium wilt control and the impact on the soil microbial community were investigated among three types of solarization-based soil treatments, including soil solarization (SS), soil solarization with flooding (SS-F), and soil solarization with organic amendment and flooding (SS-OA-F). The SS and SS-F treatments partially killed the Fusarium oxysporum over the first 6 days. However, these treatments had no or little effect on the deteriorated soil environment and soil microbial community. The remaining Fusarium oxysporum proliferated quickly after cucumber planting, and serious Fusarium wilt still occurred in the SS and SS-F treatments at the second planting. SS-OA-F significantly improved the efficiency of Fusarium wilt control. Soil Fusarium oxysporum were killed in greater numbers in a shorter time by SS-OA-F. The deteriorated soil environment was remediated over the 15-day treatment process due to increases in the acidified soil pH and reductions of the soil electrical conductivity. SS-OA-F also had a notably impact on the soil microbial community. The proportion of anaerobic microorganisms greatly increased, and that of aerobic microorganisms greatly decreased in SS-OA-F soil. The proliferation of soil Fusarium oxysporum was significantly inhibited after the SS-OA-F treatment. However, different organic matter types used in SS-OA-F resulted in different suppression durations. Compared with glucose, Medicago sativa amendment increased the soil bacterial diversity and prolonged the suppression duration. (C) 2016 Elsevier B.V. All rights reserved.

分类号: S154.1

  • 相关文献

[1]Seed Germination, Seedling Emergence, and Response to Herbicides of Triquetrous Murdannia (Murdannia triquetra) in Rice. Tang, Wei,Zhang, Jianping,Lu, Yongliang,Chen, Jie.

[2]Simulating the impact of flooding on wheat yield - Case study in East China. Li, Sanai,Tompkins, A. M.,Li, Sanai,Lin, Erda,Ju, Hui.

[3]Effects of flooding and ferrhydrite on copper fractionation in paddy soil. Liu, Beibei,Chen, Xin,Li, Qinfen,Peng, Lixu,Liu, Beibei,Chen, Xin,Li, Qinfen,Peng, Lixu,Liu, Beibei,Chen, Xin,Li, Qinfen,Peng, Lixu,Qu, Dong. 2013

[4]FLOODING-INDUCED MEMBRANE DAMAGE, LIPID OXIDATION AND ACTIVATED OXYGEN GENERATION IN CORN LEAVES. Yan, B,Dai, QJ,Liu, XZ,Huang, SB,Wang, ZX.

[5]Association Mapping Reveals Novel Genetic Loci Contributing to Flooding Tolerance during Germination in Indica Rice. Zhang, Mengchen,Lu, Qing,Niu, Xiaojun,Wang, Caihong,Feng, Yue,Xu, Qun,Wang, Shan,Yuan, Xiaoping,Yu, Hanyong,Wang, Yiping,Wei, Xinghua,Lu, Qing,Wu, Wei. 2017

[6]Silencing of the LeSGR1 gene in tomato inhibits chlorophyll degradation and exhibits a stay-green phenotype. Hu, Z. -L.,Deng, L.,Yan, B.,Pan, Y.,Luo, M.,Hu, T. -Z.,Chen, G. -P.,Chen, X. -Q..

[7]Effects of flooding and aging on phytoremediation of typical polycyclic aromatic hydrocarbons in mangrove sediments by Kandelia obovata seedlings. Li, Rui-Long,Liu, Bei-Bei,Zhang, Yong,Liu, Bei-Bei,Zhu, Ya-Xian,Zhang, Yong.

[8]When variability outperforms the mean: trait plasticity predicts plant cover and biomass in an alpine wetland. Li, Honglin,Xu, Danghui,Du, Guozhen,Yu, Kailiang,Ratajczak, Zak,Nippert, Jesse B.,Tondrob, Dorjeeh,Li, Wei.

[9]A four-year record of methane emissions from irrigated rice fields in the Beijing region of China. Wang, ZY,Xu, YC,Li, Z,Guo, YX,Wassmann, R,Neue, HU,Lantin, RS,Buendia, LV,Ding, YP,Wang, ZZ. 2000

[10]Manure substitution of mineral fertilizers increased functional stability through changing structure and physiology of microbial communities. Yue, Xianlu,Shi, Andong,Yao, Shuihong,Zhang, Bin,Zhang, Jiguang.

[11]Alterations in soil fungal community composition and network assemblage structure by different long-term fertilization regimes are correlated to the soil ionome. Xue, Chao,Zhu, Chen,Guo, Shiwei,Ling, Ning,Shen, Qirong,Penton, C. Ryan,Chen, Huan,Duan, Yinghua,Peng, Chang. 2018

[12]Microbial community structure and functional metabolic diversity are associated with organic carbon availability in an agricultural soil. Li Juan,Li Yan-ting,Yang Xiang-dong,Zhang Jian-jun,Lin Zhi-an,Zhao Bing-qiang. 2015

[13]Insight into how organic amendments can shape the soil microbiome in long-term field experiments as revealed by network analysis. Ling, Ning,Zhu, Chen,Xue, Chao,Guo, Shiwei,Shen, Qirong,Chen, Huan,Duan, Yinghua,Peng, Chang.

[14]Contrasting development of soil microbial community structure under no-tilled perennial and tilled cropping during early pedogenesis of a Mollisol. Li, Na,You, Meng-Yang,Qiao, Yun-Fa,Zou, Wen-Xiu,Han, Xiao-Zeng,Zhang, Bin,Yao, Shui-Hong,Zhang, Yue-Ling,Zhang, Bin.

[15]Chemical properties and microbial responses to biochar and compost amendments in the soil under continuous watermelon cropping. Cao, Yun,Ma, Yan,Guo, Dejie,Wang, Qiujun,Wang, Guangfei.

[16]Enhancement of Cd phytoextraction by hyperaccumulator Sedum alfredii using electrical field and organic amendments. Xiao, Wendan,Ye, Xuezhu,Zhang, Qi,Hu, Jing,Gao, Na,Li, Dan,Wang, Jingwen,Xu, Haizhou,Yao, Guihua.

[17]Chemical properties of soil layers of restoration sites in phosphate mining area, China. Li, Gui-Xiang,Shao, Jin-Ping,Zhou, Bin,Bi, Bo,Fang, Xiang-Jing,Zhang, Ji,Wang, Yuan-Zhong,Xie, Kai-Ming. 2015

[18]Combined modification of clay with sulfhydryl and iron: Toxicity alleviation in Cr-contaminated soils for mustard (Brassica juncea) growth. Liu, Chengshuai,Fei, Yingheng,Liu, Chengshuai,Li, Fangbai,Chen, Manjia,Tong, Hui,Liu, Chuanping,Liao, Changzhong. 2017

[19]Phytoremediation of Zn- and Cr-Contaminated Soil Using Two Promising Energy Grasses. Li, C.,Xiao, B.,Wang, Q. H.,Yao, S. H.,Wu, J. Y.,Xiao, B.. 2014

[20]Micro/nanostructured hydroxyapatite structurally enhances the immobilization for Cu and Cd in contaminated soil. Dong, Anle,Ye, Xinxin,Zhang, Yunxia,Wang, Guozhong,Dong, Anle,Li, Hongying. 2016

作者其他论文 更多>>