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Functional identification of phenazine biosynthesis genes in plant pathogenic bacteria Pseudomonas syringae pv. tomato and Xanthomonas oryzae pv. oryzae 被引量:1
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作者 LI Wen XU You-ping +4 位作者 Jean-Pierre Munyampundu XU Xin qi xian-fei GU Yuan CAI Xin-zhong 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2016年第4期812-821,共10页
Phenazines are secondary metabolites with broad spectrum antibiotic activity and thus show high potential in biological control of pathogens. In this study, we identified phenazine biosynthesis (phz) genes in two ge... Phenazines are secondary metabolites with broad spectrum antibiotic activity and thus show high potential in biological control of pathogens. In this study, we identified phenazine biosynthesis (phz) genes in two genome-completed plant pathogenic bacteria Pseudomonas syringae pv. tomato (Pst) DC3000 and Xanthomonas oryzae pv. oryzae (Xoo) PXO99A. Unlike the phz genes in typical phenazine-producing pseudomonads, phz homologs in Pst DC3000 and Xoo PXO99A consisted of phzC/D/E/F/G and phzC/E1/E2/F/G, respectively, and the both were not organized into an operon. Detection experiments demonstrated that phenazine-l-carboxylic acid (PCA) of Pst DC3000 accumulated to 13.4 IJg L-1, while that of Xoo PXO99A was almost undetectable. Moreover, Pst DC3000 was resistant to 1 mg mL-1 PCA, while Xoo PXO99A was sensitive to 50 IJg mL ~ PCA. Furthermore, mutation of phzF blocked the PCA production and significantly reduced the pathogenicity of Pst DC3000 in tomato, while the complementary strains restored these phenotypes. These results revealed that Pst DC3000 produces low level of and is resistant to phenazines and thus is unable to be biologically controlled by phenazines. Additionally, phz-mediated PCA production is required for full pathogenicity of Pst DC3000. To our knowledge, this is the first report of PCA production and its function in pathogenicity of a plant pathogenic P. syringae strain. 展开更多
关键词 PATHOGENICITY phenazine biosynthesis genes phenazine-l-carboxylic acid plant pathogenic bacteria Pseudomonas syringae pv. tomato Xanthomonas oryzae pv. oryzae
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基于预留的动态机会路由算法
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作者 关学铭 齐先飞 马遥知 《计算机与现代化》 2018年第10期111-113,121,共4页
本文对无线Mesh网络机会路由进行研究。传统机会路由会导致网络链路负载不均衡、带宽利用率低等问题,而且在候选节点的选择、排序方面会给网络带来负担。针对以上问题,本文提出一种基于预留的动态机会路由算法(BRDOA)。转发节点通过学... 本文对无线Mesh网络机会路由进行研究。传统机会路由会导致网络链路负载不均衡、带宽利用率低等问题,而且在候选节点的选择、排序方面会给网络带来负担。针对以上问题,本文提出一种基于预留的动态机会路由算法(BRDOA)。转发节点通过学习候选节点状态提前设定局部节点集合,从而减轻选择候选节点给网络所带来的负担。实验结果表明,使用该算法能够有效地改善网络的吞吐量和时延等,对提高无线网络Qo S有显著效果。 展开更多
关键词 无线MESH网络 动态机会路由 候选节点 QOS
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