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Colonization by Klebsiella variicola FH-1 stimulates soybean growth and alleviates the stress of Sclerotinia sclerotiorum
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作者 ZHAI Qian-hang PAN Ze-qun +6 位作者 ZHANG Cheng YU Hui-lin ZHANG Meng gu xue-hu ZHANG Xiang-hui PAN Hong-yu ZHANG Hao 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2023年第9期2729-2745,共17页
Sclerotinia stem rot,caused by Sclerotinia sclerotiorum,is a destructive soil-borne disease leading to huge yield loss.We previously reported that Klebsiella variicola FH-1 could degrade atrazine herbicides,and the ve... Sclerotinia stem rot,caused by Sclerotinia sclerotiorum,is a destructive soil-borne disease leading to huge yield loss.We previously reported that Klebsiella variicola FH-1 could degrade atrazine herbicides,and the vegetative growth of atrazine-sensitive crops(i.e.,soybean)was significantly increased in the FH-1-treated soil.Interestingly,we found that FH-1 could promote soybean growth and induce resistance to S.sclerotiorum.In our study,strain FH-1 could grow in a nitrogen-free environment,dissolve inorganic phosphorus and potassium,and produce indoleacetic acid and a siderophore.The results of pot experiments showed that K.variicola FH-1 promoted soybean plant development,substantially improving plant height,fresh weight,and root length,and induced resistance against S.sclerotiorum infection in soybean leaves.The area under the disease progression curve(AUDPC)for treatment with strain FH-1 was significantly lower than the control and was reduced by up to 42.2%within 48 h(P<0.001).Moreover,strain FH-1 rcovered the activities of catalase,superoxide dismutase,peroxidase,phenylalanine ammonia lyase,and polyphenol oxidase,which are involved in plant protection,and reduced malondialdehyde accumulation in the leaves.The mechanism of induction of resistance appeared to be primarily resulted from the enhancement of transcript levels of PR10,PR12,AOS,CHS,and PDF1.2 genes.The colonization of FH-1 on soybean root,determined using CLSM and SEM,revealed that FH-1 colonized soybean root surfaces,root hairs,and exodermis to form biofilms.In summary,K.variicola FH-1 exhibited the biological control potential by inducing resistance in soybean against S.sclerotiorum infection,providing new suggestions for green prevention and control. 展开更多
关键词 sclerotinia stem rot of soybean Klebsiella variicola FH-1 inducing resistance root colonization BIOFILM
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防治大豆根腐病的药剂筛选及田间应用 被引量:7
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作者 何海涛 唐雅楠 +5 位作者 顾学虎 翟乾行 王双龙 许煊炜 潘洪玉 张浩 《农药》 CAS CSCD 北大核心 2023年第1期55-58,共4页
[目的]针对大豆根腐病,筛选出具有显著防效的药剂。[方法]采用菌丝生长速率法,测定咯菌腈等10种杀菌剂对尖孢镰刀菌和大豆疫霉菌的活性,并进行田间防效试验。[结果]咯菌腈、咪鲜胺和戊唑醇3种杀菌剂单剂对2种病原菌抑菌效果较好,对尖孢... [目的]针对大豆根腐病,筛选出具有显著防效的药剂。[方法]采用菌丝生长速率法,测定咯菌腈等10种杀菌剂对尖孢镰刀菌和大豆疫霉菌的活性,并进行田间防效试验。[结果]咯菌腈、咪鲜胺和戊唑醇3种杀菌剂单剂对2种病原菌抑菌效果较好,对尖孢镰刀菌的EC50值分别为0.295、0.035、0.444 mg/L,对大豆疫霉菌的EC50值分别为0.324、0.045、0.077 mg/L。咯菌腈∶咪鲜胺(5∶1)和咪鲜胺∶戊唑醇(5∶1)复配时对尖孢镰刀菌增效系数分别为2.143、1.566,对大豆疫霉菌的增效系数分别为2.063、2.031,具有较好的增效作用。田间试验结果表明:咯菌腈+咪鲜胺(5∶1)200 g/100kg种子和咪鲜胺+戊唑醇(5∶1)200 g/100kg种子包衣对大豆根腐病的防治效果分别为85.57%、84.54%。[结论]咯菌腈∶咪鲜胺(5∶1)与咪鲜胺∶戊唑醇(5∶1)二元混配,可以有效防治大豆根腐病。 展开更多
关键词 大豆根腐病 杀菌剂 生物活性测定 复配 田间防效
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