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Ecological impact of a rare sugar on grapevine phyllosphere microbial communities

机译:稀糖对葡萄神经血岭微生物社区的生态影响

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Plants host a complex microbiota inside or outside their tissues, and phyllosphere microorganisms can be influenced by environmental, nutritional and agronomic factors. Rare sugars are defined as monosaccharides with limited availability in nature and they are metabolised by only few certain microbial taxa. Among rare sugars, tagatose (TAG) is a low-calories sweetener that stimulates and inhibits beneficial and pathogenic bacteria in the human gut microbiota, respectively. Based on this differential effect on human-associated microorganisms, we investigated the effect of TAG treatments on the grapevine phyllosphere microorganisms to evaluate whether it can engineer the microbiota and modify the ratio between beneficial and pathogenic plant-associated microorganisms. TAG treatments changed the structure of the leaf microbiota and they successfully reduced leaf infections of downy mildew (caused by Plasmopara viticola) and powdery mildew (caused by Erysiphe necator) under field conditions. TAG increased the relative abundance of indigenous beneficial microorganisms, such as some potential biocontrol agents, which could partially contribute to disease control. The taxonomic composition of fungal and bacterial leaf populations differed according to grapevine locations, therefore TAG effects on the microbial structure were influenced by the composition of the originally residing microbiota. TAG is a promising biopesticide that could shift the balance of pathogenic and beneficial plant-associated microorganisms, suggesting selective nutritional/anti-nutritional properties for some specific taxa. More specifically, TAG displayed possible plant prebiotic effects on the phyllosphere microbiota and this mechanism of action could represent a novel strategy that can be further developed for sustainable plant protection.
机译:植物在组织内部或外部寄出复杂的微生物群,并且文学微生物可以受到环境,营养和农艺因素的影响。稀有糖被定义为单糖,其自然可用性有限,它们仅由某些微生物分类群代谢。在稀有糖中,Tagatose(标签)是一种甜味剂,分别刺激和抑制人体肠道微生物的有益和致病细菌。基于对人类相关微生物的这种差异影响,我们研究了标签处理对葡萄化动物的微生物的影响,评价它是否可以工程师和改变有益和致病植物相关微生物之间的比率。标签治疗改变了叶片微生物群的结构,并成功地降低了粪便霉菌(由Plasmopara viticola引起)和粉末状霉菌(由erysiphe Necator引起)的叶子感染。标签增加了土着有益微生物的相对丰度,例如一些潜在的生物控制剂,这可能部分有助于疾病控制。真菌和细菌叶种群的分类组成根据葡萄园的位置不同,因此对Microbial结构的标签效应受到最初驻留的微生物群组成的影响。标签是一个有前途的生物特子,可以改变病原和有益植物相关的微生物的平衡,表明某些特定分类群的选择性营养/抗营养性能。更具体地说,标签显示出对植物微生物群的可能植物益生菌作用,这种作用机制可以代表一种新的策略,可以进一步开发可持续植物保护。

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