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Application of isomelezitose as an osmoprotectant for biological control agent preservation during drying and storage

机译:异素酶作为干燥和储存期间生物控制剂保存的渗透剂

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Isomelezitose (IMZ) is of interest as a potential osmoprotectant, but it has not been previously characterised even though the structurally similar trisaccharide melezitose has been previously shown to have excellent protective qualities. The recent discovery that sucrose can be converted to IMZ during glucansucrase reactions suggests that IMZ might become an economical choice as an osmoprotectant for microbial inoculants, such as biological control agents (BCAs). Because of this opportunity, its osmoprotective function was explored in this work using two strains ofPseudomonas fluorescensthat are BCAs used to control maladies of potatoes stored postharvest. BCA cell viability and growth recovery rate after drying and storage at 25(o)C were assessed. The data showed that IMZ and impure IMZ reaction products can function similarly to melezitose and trehalose to significantly reduce viable cell and activity losses during air drying and storage. Biocontrol treatments formulated with IMZ retained the ability to suppress Fusarium dry rot disease by up to 50% under severe disease challenge, even after storage 28 d at 25(o)C in vacuum-sealed bags. Biocontrol treatments with IMZ suppressed disease by 15-35% more thancontrols without any added osmoprotectant. Neither IMZ nor two impure enzyme reaction products impacted germination of dry rot causativeFusarium sambucinumconidia or subsequent hyphal growth under gnotobiotic conditions. For the first time, the osmoprotective capability of IMZ has been demonstrated and shown to be potentially superior to others previously reported, including the structurally related compound melezitose and the currently marketed disaccharide trehalose.
机译:Isomelezitose(IMZ)是潜在的渗透剂的感兴趣,但是,即使在结构上类似的三糖素溶剂之前已经显示出具有优异的保护性质,它尚未表征。最近发现蔗糖可以在葡聚糖反应过程中转化为IMZ,表明IMZ可能成为微生物抗体素(如生物对照剂(BCA))的渗透剂的经济选择。由于这个机会,它的渗透功能在这项工作中探讨了使用荧光素母肌炎的两种菌株是用于控制土豆储存的POSTOVOR的疫苗的BCA。在25(O)C时干燥和储存后的BCA细胞活力和生长回收率。该数据显示IMZ和纯度IMZ反应产物可以类似地与素糖苷和海藻糖相似,以显着降低空气干燥和储存期间的活细胞和活性损失。使用IMZ配制的生物控制治疗保留了在严重的疾病攻击下抑制镰刀虫干腐病的能力,即使在真空密封袋中的25(o)C处储存28d。含有IMZ的生物控制治疗抑制疾病的抑制剂15-35%,没有任何添加的OsMoplotectants。既不是IMZ也不是两种不纯的酶反应产物,受到干腐毒性血清胰岛素的萌发或在八虫酸条件下随后的亚腿生长。首次,IMZ的Osmophotective能力已经证明并显示出可能优于先前报道的其他物质,包括结构相关的化合物素胨和目前市场上的二糖海藻糖。

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