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烟草—荞麦轮作对烟草黑胫病防治及土壤微生态的调控作用
引用本文:孟祥佳,刘洋,黎妍妍,许汝冰,李传仁,周燚,孙正祥,李锡宏. 烟草—荞麦轮作对烟草黑胫病防治及土壤微生态的调控作用[J]. 南方农业学报, 2022, 53(6): 1525-1535. DOI: 10.3969/j.issn.2095-1191.2022.06.005
作者姓名:孟祥佳  刘洋  黎妍妍  许汝冰  李传仁  周燚  孙正祥  李锡宏
作者单位:1. 长江大学农学院, 湖北荆州 434025;2. 湖北省烟草科学研究院, 湖北武汉 430030
基金项目:国家重点研发计划项目(2017YFD0201106-08)湖北省烟草公司科技项目(027Y2020-006)
摘    要:【目的】明确烟草—荞麦轮作对烟草黑胫病防治及根际土壤微生物群落结构的调控作用,为利用烟荞轮作缓解烟草连作障碍及烟草黑胫病害提供科学依据。【方法】选择湖北省恩施市宣恩县烟草黑胫病发生较重的连作烟田为试验地点,设烟草—烟草—烟草(连作)和烟草—荞麦—荞麦—烟草(轮作)2个处理,通过计算田间病情指数评价烟荞轮作对黑胫病发生的...

关 键 词:烟草黑胫病  烟草  荞麦  轮作  实时荧光定量PCR  微生物群落
收稿时间:2022-05-13

Effects of tobacco-buckwheat rotation on regulation of tobacco black shank prevention and control and soil microenvironment
MENG Xiang-jia,LIU Yang,LI Yan-yan,XU Ru-bing,LI Chuan-ren,ZHOU Yi,SUN Zheng-xiang,LI Xi-hong. Effects of tobacco-buckwheat rotation on regulation of tobacco black shank prevention and control and soil microenvironment[J]. Journal of Southern Agriculture, 2022, 53(6): 1525-1535. DOI: 10.3969/j.issn.2095-1191.2022.06.005
Authors:MENG Xiang-jia  LIU Yang  LI Yan-yan  XU Ru-bing  LI Chuan-ren  ZHOU Yi  SUN Zheng-xiang  LI Xi-hong
Affiliation:1. College of Agriculture, Yangtze University, Jingzhou, Hubei 434025, China;2. Tobacco Research Institute of Hubei Province, Wuhan, Hubei 430030, China
Abstract:【Objective】 To investigate the effects of tobacco-buckwheat rotation on regulation of tobacco black shank occurrence and rhizosphere soil microbial community,so as to provide a basis for alleviating continuous cropping obstacle of tobacco by tobacco-buckwheat rotation.【Method】 A continuous cropped tobacco field with severe tobacco black shank disease in Xuan’ en County,Enshi City,Hubei Province was selected as the experimental site,and 2 treatments were set: tobacco-tobacco-tobacco(continuous cropping)and tobacco-buckwheat-buckwheat-tobacco(buckwheat-tobacco rotation).The disease index of the field was calculated to evaluate the effect of tobacco-buckwheat rotation on black shank disease occurrence.The change of the number of tobacco black shank bacteria in rhizosphere under rotation was detected by quantitative real-time PCR(qRT-PCR).Effects of tobacco-buckwheat rotation on richness,diversity and microbial community structure were analyzed through Illumina high-throughput sequencing.【Result】 Seem from 45,60,75 and 90 d after tobacco transplantation,tobacco black shank disease indexes of rotation cropping field were 2.57,18.03,24.93 and 75.88,decreased by 35.59%,36.22%,46.53% and 11.52% compared with those of continuous cropping field,respectively; the rhizosphere black shank spore of tobacco in the rotation cropping field were 1.05×104,2.19×104,5.25×105 and 1.32×105 conidia/g,respectively,43.55%,86.81%,95.73% and-43.86% lower than those of continuous cropping field,respectively.Compared with continuous cropping,rotation cropping increased the richness and diversity of the tobacco rhizosphere soil microbial community.Sobs,Shannon and Chao1 indexes of bacteria in the rotation cropping field were increased by 23.70%,6.38% and 24.32% respectively.Sobs,Shannon and Chao1 indexes of fungi increased by 24.51%,16.57% and 41.17%,respectively.At the phylum level,the relative abundance of beneficial bacteria Actinobacteriota,Chloroflexi and Acidobacteriota in the rotation field increased by 6.58%,17.79% and 38.22% respectively,while relative abundance of beneficial fungi Ascomycota and Chytridiomycota increased by 20.47% and 420.22%,respectively.At the genus level,the proportions of beneficial bacteria of Bacillus,Bradyrhizobium,Candidatus_Solibacter,Sphingomonas,Gemmatimonas and Ramlibacter were significantly increased in rotation field and the proportion of pathogenic bacteria of Ralstonia was significantly reduced.【Conclusion】 Tobacco-buckwheat rotation can lower the tobacco black shank disease index and reduce the number of rhizosphere black shank pathogenic bacterium,increase the abundance,diversity of tobacco rhizosphere fungi and bacteria community and raise abundance of tobacco rhizosphere beneficial bacteria,thereby improving soil microenvironment and alleviating continuous cropping obstacles,bringing a great popularization and application prospect.
Keywords:
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