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首页> 外文期刊>Physiologia plantarum >Bacteria isolated from roots and rhizosphere of Vitis vinifera retard water losses, induce abscisic acid accumulation and synthesis of defense-related terpenes in in vitro cultured grapevine
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Bacteria isolated from roots and rhizosphere of Vitis vinifera retard water losses, induce abscisic acid accumulation and synthesis of defense-related terpenes in in vitro cultured grapevine

机译:从葡萄的根和根际分离出的细菌可延缓水分损失,诱导脱落酸的积累,并在体外培养的葡萄中合成防御相关的萜烯

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Eleven bacterial strains were isolated at different soil depths from roots and rhizosphere of grapevines from a commercial vineyard. By 16S rRNA gene sequencing 10 different genera and 8 possible at species level were identified. From them, Bacillus licheniformis Rt4M10 and Pseudomonas fluorescens Rt6M10 were selected according to their characteristics as plant growth promoting rhizobacteria (PGPR). Both produced abscisic acid (ABA), indole-3-acetic acid (IAA) and the gibberellins A(1) and A(3) in chemically-defined medium. They also colonized roots of in vitro grown Vitis vinifera cv. Malbec plants. As result of bacterization ABA levels in 45 days-old in vitro plants were increased 76-fold by B. licheniformis and 40-fold by P. fluorescens as compared to controls. Both bacteria diminished plant water loss rate in correlation with increments of ABA. Twenty and 30 days post bacterization the plants incremented terpenes. The monoterpenes alpha-pinene, terpinolene, 4-carene, limonene, eucalyptol and lilac aldehyde A, and the sesquiterpenes alpha-bergamotene, alpha-farnesene, nerolidol and farnesol were assessed by gas chromatography-electron impact mass spectrometry analysis. alpha-Pinene and nerolidol were the most abundant (mu g per g of tissue in plants bacterized with P. fluorescens). Only alpha-pinene, eucalyptol and farnesol were identified at low concentration in non-bacterized plants treated with ABA, while no terpenes were detected in controls. The results obtained along with others from literature suggest that B. licheniformis and P. fluorescens act as stress alleviators by inducing ABA synthesis so diminishing water losses. These bacteria also elicit synthesis of compounds of plant defense via an ABA independent mechanism
机译:从商业葡萄园的葡萄根和根际中,在不同土壤深度分离了11种细菌菌株。通过16S rRNA基因测序,鉴定出10个不同属和8个可能的物种。从它们中选择地衣芽孢杆菌Rt4M10和荧光假单胞菌Rt6M10作为植物促生根瘤菌(PGPR)的特征。两者均在化学成分确定的培养基中产生脱落酸(ABA),吲哚-3-乙酸(IAA)和赤霉素A(1)和A(3)。他们还定殖了体外生长的葡萄树(Vitis vinifera cv)的根。马尔贝克植物。作为细菌发酵的结果,与对照相比,地衣芽孢杆菌将45天大的体外植物中的ABA水平提高了76倍,而荧光假单胞菌则将其提高了40倍。两种细菌都与ABA的增加相关地减少了植物失水率。细菌化后20天和30天,植物增加萜烯。通过气相色谱-电子冲击质谱分析法评估单萜类α-pine烯,萜品油烯,4-烯,柠檬烯,桉树油和丁香醛A,以及倍半萜烯α-香柠檬烯,α-法呢烯,橙花醇和法尼醇。 α-P烯和nerolidol含量最高(在用荧光假单胞菌细菌感染的植物中每克组织中每克组织微克)。在用ABA处理的非细菌植物中仅以低浓度鉴定出α-pine烯,桉树油和法尼醇,而对照中未检测到萜烯。与其他文献一起获得的结果表明,地衣芽孢杆菌和萤光假单胞菌通过诱导ABA合成从而减轻水分流失而起到缓解压力的作用。这些细菌还通过ABA独立机制引发了植物防御化合物的合成

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