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Plant growth-promoting traits of yeasts isolated from Spanish vineyards: benefits for seedling development

机译:从西班牙葡萄园分离的酵母菌促进植物生长性状:苗木发育的益处

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It is known that some microorganisms can enhance plant development. However, the use of yeasts as growth-promoting agents has been poorly investigated. The aim of this study was the characterisation of a collection of 69 yeast strains isolated from Spanish vineyards. Phytobeneficial attributes such as solubilisation of nutrients, synthesis of active biomolecules and cell wall-degrading enzyme production were analysed. Strains that revealed multiple growth-promoting characteristics were identified. The in vitro co-culture of Nicotiana benthamiana with yeast isolates showed enhancement of plant growth in 10 strains (up to 5-fold higher shoot dry weight in the case of Hyphopichia pseudoburtonii Hp-54), indicating a beneficial direct yeast-plant interaction. In addition, 18 out of the 69 strains increased dry weight and the number of roots per seedling when tobacco seeds were inoculated. Two of these, Pichia dianae Pd-2 and Meyerozyma guilliermondii Mg-11, also increased the chlorophyll content. The results in tobacco were mostly reproduced in lettuce with these two strains, which demonstrates that the effect of the yeast-plant interaction is not species-specific. In addition, the yeast collection was evaluated in maize seedlings grown in soil in a phytotron. Three isolates (Debaryomyces hansenii Dh-67, Lachancea thermotolerans Lt-69 and Saccharomyces cerevisiae Sc-6) promoted seedling development (increases of 10 % in dry weight and chlorophyll content). In conclusion, our data confirm that several yeast strains can promote plant growth and could be considered for the development of biological fertiliser treatments.
机译:众所周知,一些微生物可以增强植物发育。然而,使用酵母作为生长促进剂的研究已经较差。该研究的目的是鉴于从西班牙葡萄园分离的69酵母菌株的集合。分析了诸如营养素的溶解,活性生物分子的合成和细胞壁降解酶产生的植物缺陷属性。鉴定了显示多种生长促进特征的菌株。尼古拉·玻利亚南亚与酵母分离物的体外共同培养表现出植物生长的增强10株(在卷曲杂交症Pseudoburtonii HP-54的情况下,高达5倍的枝条干重),表明有益的直接酵母植物相互作用。另外,在接种烟草种子时,69株中的18个菌株增加了干重量和每次幼苗的根数。其中两种,Pichia Dianae PD-2和Meyerozyma Guilliermondii Mg-11也增加了叶绿素含量。烟草的结果大多用这两个菌株在生菜中繁殖,这表明酵母植物相互作用的影响不是特异性的。此外,在植物中生长的玉米幼苗中评价酵母收集。三个分离株(Debaryomyces Hansenii DH-67,Lachancea Thermotolerans LT-69和Saccharomyces Cerevisiae SC-6)促进了幼苗发育(在干重和叶绿素含量增加10%)。总之,我们的数据证实,几种酵母菌株可以促进植物生长,可以考虑发展生物肥料治疗。

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