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Characterization of community structure of culturable endophytic fungi in sweet cherry composite trees and their growth-retarding effect against pathogens

机译:甜樱桃复合树中可培养内生真菌的群落结构特征及其对病原菌的延缓生长作用

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摘要

Endophytic fungi have the potential to protect their host plants in stress situations. Characterizing the ecology and complex interaction between these endophytes and their host plants is therefore of great practical importance, particularly in horticultural plants. Among horticultural plants, fruit trees form a special category because of their longevity and because they are composites of rootstock and scion, which often belong to different plant species. Here we present the first characterization of culturable endophytic fungal community of sweet cherry. Samples from the Hungarian cultivar ‘Petrus’ grafted on 11 different rootstocks were collected in autumn and in spring in a bearing orchard and the dependence of colonization rate and endophyte diversity on rootstock, organ and season was analysed. On the basis of their ITS sequences 26 fungal operational taxonomic units were identified at least down to the genus level. The dominant genus, comprising more than 50% of all isolates, was Alternaria, followed by different Fusarium and Epicoccum species. We observed some organ-specificity amongst endophytes, and organs showed more sizeable differences in colonization rates and endophyte diversity than rootstocks. Most dynamic endophyte populations, strongly influenced by environmental conditions and crop management, were observed in leaves. The potential of selected endophytes to confer protection against Monilinia laxa was also analysed and 7 isolates were found to inhibit the growth of this pathogen in vitro.
机译:内生真菌有潜力在压力情况下保护其寄主植物。因此,表征这些内生植物与其寄主植物之间的生态学和复杂的相互作用非常重要,特别是在园艺植物中。在园艺植物中,果树由于寿命长并且是砧木和接穗的复合物而形成一个特殊的类别,后者通常属于不同的植物物种。在这里,我们介绍甜樱桃可培养的内生真菌群落的第一个特征。在秋季和春季在一个有胎果园中收集了嫁接在11种不同砧木上的匈牙利“ Petrus”品种的样品,并分析了定殖率和内生菌多样性对砧木,器官和季节的依赖性。根据其ITS序列,至少鉴定到属水平的26个真菌操作分类单位被确定。占主导地位的种是链球菌,占所有分离株的50%以上,其次是镰刀菌属和镰刀菌属。我们观察到内生菌之间的某些器官特异性,并且器官在定植率和内生菌多样性方面的表现比砧木更大。在叶片中观察到大多数受环境条件和作物管理强烈影响的动态内生菌种群。还分析了选定的内生菌赋予抵抗念珠菌的潜力,发现了7种分离物在体外抑制了这种病原体的生长。

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