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Combined morphological and molecular approach for identification of Stemphylium vesicarium inoculum in pear orchards

机译:形态学和分子生物学相结合的方法鉴定梨园中的水疱病菌接种物

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摘要

Stemphylium vesicarium is the causal agent of brown spot of pear, an important disease reported in pear-growing areas of Europe. The pathogen is able to colonize pear leaf debris and dead tissues of herbaceous plants and produce abundant ascospores and conidia that are capable of infecting pear trees. Inoculum monitoring in pear orchards is mainly achieved through spore traps and species identification is based on conidial morphology, but the similarities on conidial traits among species of Stemphylium make correct identification difficult. In this work a total of thirty-seven Stemphylium isolates from pear orchards were characterized at the morphological, pathogenic, and molecular level. Correspondence among ITS and gpd sequences and morphological traits were evaluated. Species identification based exclusively on morphological data was not feasible. Combined morphological and molecular data were necessary for unambiguous identification of isolates in the S. vesicarium species group. Only isolates identified as S. vesicarium were pathogenic on pear. The study revealed that several species of Stemphylium coexist in pear orchards with S. vesicarium, the causal agent of BSP, and that combined morphological and molecular data are needed to differentiate them. Consequently, direct measurements of the airborne inoculum using volumetric spore traps may overestimate the actual pathogen population
机译:Stemphylium v​​esicarium是梨褐斑病的病原体,这是欧洲梨产区的一种重要疾病。该病原体能够在梨叶碎屑和草本植物的死组织中定殖,并产生能够感染梨树的丰富的子囊孢子和分生孢子。梨园的接种量监测主要是通过孢子诱捕器进行的,物种鉴定是基于分生孢子形态的,但茎秆种间分生孢子性状的相似性使正确鉴定变得困难。在这项工作中,从形态,致病性和分子水平对梨果园分离的总共37个茎秆进行了表征。评价了ITS和gpd序列之间的对应关系以及形态特征。仅基于形态学数据进行物种鉴定是不可行的。形态学和分子数据相结合对于明确鉴定葡萄球菌物种组中的分离物是必要的。只有鉴定为葡萄球菌的分离株对梨具有致病性。该研究表明,梨果园中有几种茎秆与BSP的病原菌S. vesicarium共存,并且需要结合形态学和分子数据来区分它们。因此,使用体积孢子阱直接测量空气传播接种物可能会高估实际病原体种群

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