The endophytic fungus Phomopsis liquidambari increases nodulation and N2fixation in Arachis hypogaea

来源 :中国生态学学会微生物生态专业委员会2016年学术年会 | 被引量 : 0次 | 上传用户:Waaa
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
  The continuous cropping obstacles inmonoculture fields are a major production constraint for peanuts.Application of the endophytic fungus Phomopsis liquidambarihas increased peanut yields.Further studieshave found that nodulation and N2fixation increasesfollowingP.liquidambari infection were important factors for improving peanut yield.However,the mechanisms involved in this process remain unknown.This work showed that compared with only Bradyrhizobium inoculation,co-inoculation with P.liquidambari significantly elevated endogenous H2O2 and NO levels in peanut roots.Pre-treatment of seedlings with specific scavengers of H2O2 and NO blocked P.liquidambari-induced peanut nodulation and N2fixation.H2O2 scavenger not onlysuppressed the P.liquidambari-induced nodulation and N2fixation but also enhanced H2O2 and NO generation.Nevertheless,the NO scavenger did not significantly inhibit the induced H2O2 biosynthesis,implying that H2O2 acted upstream of NO production.These results were confirmed by observations that exogenous H2O2 and NO reversed the inhibition of P.liquidambari-increased peanut nodulation and N2fixation.The transcriptional activities of the symbiosis-related genes SymRK and CCaMK also increased significantly in response toP.liquidambari,H2O2 and NO treatments.The pot experiment further confirmed that the P.liquidambari infection-enhanced H2O2 and NO signalling pathways were significantly related to the increase in peanut nodulation and N2fixation.This is the first report that P.liquidambari acts as an endophytic elicitor to increase peanut-Bradyrhizobium interactions via enhanced H2O2/NO-dependent signalling crosstalk,which is conductive to the alleviation of continuous cropping obstacles via an increase in nodulation and N2 fixation.
其他文献
  The abundance and chemical recalcitranceof soil organic matter exert crucial control on bacterial community diversity and assembly,yet the mechanisms that h
  抗生素制药厂废水处理系统长期处理含高浓度抗生素的废水,因此被看作是抗性基因发展的"巨大温床".本研究调查了国内东南部六家抗生素生产企业的污水处理系统,采用了固相
  Plants host distinct bacterial communities on and inside various plant organs,of which those associated with the interactions between roots and microbes for
  土壤有机碳(SOC)沿着中国北方蒙古栎林的年代序列矿化的作用机制的研究较少。我们研究了20年生(20yr)、30年生(30yr)和40年生(40yr)的森林土壤,测定了土壤微生物功能和群
  海洋蓝细菌中的聚球藻(Synechococcus)是海洋碳循环的主要参与者,在富营养的近岸水体中尤为丰富,具有较高的丰度与生态型。人类活动及水文动态可能影响聚球藻的分布与动态
会议
  运用 Biolog-ECO 微平板技术,对海南岛东寨港红树林土壤微生物群落功能多样性的动态变化进行分析。结果表明:随着培养时间的延长,土壤微生物平均AWCD逐渐增大,代谢活性逐渐增
  A climate change experiment was conducted to examine the effect of simulated elevated atmospheric carbon dioxide(CO2)and temperature simultaneously on soil
  Mollisol soil is probably the most fertile soil for agricultural usage.Recent models predict that global warming caused carbon loss,which have important imp
  E.cloacae has taken on clinical significance and has emerged as a troublesome multi-drug resistance pathogen for healthcare institutions globally.However,li