首页> 外文期刊>Frontiers in Ecology and Evolution >Antimicrobial Drimane Sesquiterpenes Contribute to Balanced Antagonism but Do Not Structure Bacterial and Fungal Endophytes in the African Pepper Bark Tree Warburgia ugandensis
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Antimicrobial Drimane Sesquiterpenes Contribute to Balanced Antagonism but Do Not Structure Bacterial and Fungal Endophytes in the African Pepper Bark Tree Warburgia ugandensis

机译:抗微生物滴水葡萄干Sesquiterpenes有助于平衡拮抗作用,但在非洲胡椒树皮树Warbburgia Ugandensis中没有构建细菌和真菌内心细胞

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The African pepper bark tree, Warburgia ugandensis, accumulates antimicrobial drimane sesquiterpenes in all of its organs. One hypothesis states that plant defense compounds determine endophyte community structure. Another hypothesis suggests that they just facilitate the endophytic lifestyle by exerting a balanced antagonism. To explore this, a representative selection of endophytic bacterial and fungal isolates from this tree species was assayed together with six non-endophytic strains to determine their tolerance and susceptibility to the root and leaf extract fraction containing high and low drimane sesquiterpene amounts respectively. Inhibitory effects were explored by assessing both growth and growth efficiency, the latter of which relates respiratory activity to growth. The susceptibility of the tested strains showed considerable variation and the obtained patterns did not allow a clear distinction between root and leaf endophytes as well as endophytes and non-endophytes. In addition, all strains were also assayed against juglone, an antimicrobial and redox-active aromatic naphthoquinone. A comparison of differential pulse voltammograms and efficacy in variants of the deoxyribose degradation assay revealed that drimane sesquiterpenes possess anti- and pro-oxidant activities that compare to those of juglone. Leaf endophytes showed higher resistance to oxidative stress than root endophytes, quite contrary to the actual exposure. The obtained results support the notion that structural diverse plant defense compounds can contribute to a balanced antagonism against but not to structuring of endophyte communities. Oxidative stress seems to be involved in generating this effect albeit it cannot explain it alone.
机译:非洲胡椒吠树树,Warburgia Ugandensis积累了所有器官的抗菌滴水葡萄干。一个假设指出植物防御化合物确定内心群落结构。另一个假设表明他们只是通过施加平衡的拮抗作用来促进内心的生活方式。为了探索这一点,将来自该树种物种的内生细菌和真菌分离物的代表性选择与六个非内生菌株一起测定,以分别确定其对含有高和低滴定倍萜萜烯量的根和叶提取物级分的耐受性和敏感性。通过评估增长和生长效率,探讨了抑制作用,后者将呼吸系统涉及生长。测试菌株的敏感性显示出相当大的变化,并且所获得的图案不允许在根和叶内生物细胞以及内胚层和非联苯肌腱之间清楚地区分。此外,所有菌株也针对Juglone,抗微生物和氧化还原活性芳族萘醌进行测定。脱氧性降解测定变体中差分脉冲伏安图和疗效的比较显示,滴定葡萄干具有与Juglone那些相比的抗氧化剂活性。叶内腔表现出对氧化应激的抗性高于根内心细胞,与实际暴露相反。所获得的结果支持结构各种植物防御化合物可以促进均衡的对抗但不是构建内心社区的抗拮抗作用。氧化压力似乎参与产生这种效果,尽管它无法单独解释。

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