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Morphological, cultural and ecological characterization of Monilinia spp., pathogens of stone fruit in Serbia

机译:Monilinia SPP的形态学,文化和生态特征。,塞尔维亚石材果原的病原体

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Different brown rot pathogens cause similar symptoms on fruit, which makes it difficult to differentiate them based only on developed symptoms. Therefore, several methods have been described for accurate identification of Monilinia species. In spite of the fact that those methods can be reliable, there are several limitations for their use, and the aim of this study was to find out if there are any specific characteristics that could be used as additional features for precise identification and in-depth characterization of Monilinia species. The results showed that morphological characteristics on PDA, and mycelium growth rate on PDA medium can be useful characters for differentiation of Monilinia species since M. fructicola was found to grow faster than the other two test species, while M. fructigena grew the slowest. MALT was the optimal medium for M. laxa and M. fructigena isolates, while PDA medium was optimal for M. fructicola. Regarding an extremely acidic medium (pH 2), only M. laxa and M. fructicola isolates were able to grow in it, while M. fructigena isolate was the only that grew in a moderately alkaline medium (pH 9). Also, the results revealed that the optimal temperature for M. fructigena and M. fructicola growth was 23oC, while 28oC was optimal for M. laxa isolate. On the other hand, some differences in the sensitivity of Monilinia isolates were revealed at extreme temperatures: M. fructigena isolate was the most sensitive (grew from 4?C to up to 31?C), while M. fructicola isolate was the most resistant (grew at 2?C and 34?C). The obtained results inferred that there are no specific features that can be used for reliable and precise identification of Monilinia species, but we observed some differences regarding the effects of extreme temperatures and pH values of culture medium on different species. Further research, involving more isolates, is needed for a final conclusion.
机译:不同的棕色腐病理原因在果实上会导致类似的症状,这使得仅仅基于发达的症状将其区分。因此,已经描述了用于精确鉴定Monilinia物种的几种方法。尽管这些方法可以是可靠的,但它们的使用有几个限制,这项研究的目的是找出任何特定特征,可以用作精确识别和深入的额外功能单片机物种的表征。结果表明,PDA培养基对PDA的形态特征和PDA培养基的生长速率可以是单片机种类的有用特征,因为发现M.煎锅比其他两种测试物种速度快得更快,而M. Fructena GRESE最慢。麦芽是M. Laxa和M. Frucigena分离物的最佳培养基,而PDA培养基对于M. Fructicola是最佳的。关于极其酸性的培养基(pH 2),只有M. Laxa和M. Fructicola分离物能够生长,而M. Fructena分离物是唯一在适度碱性培养基中增长的(pH9)。而且,结果表明,M.果肉和M.Mucticola生长的最佳温度为23oC,而M. Laxa分离物是最佳的。另一方面,在极端温度下揭示了麻木素分离物的敏感性的一些差异:M.果酱分离物是最敏感的(从4℃增长到最多31℃),而M.Mucticola孤立是最具抗性的(在2?C和34?c)。所得的结果推断出没有可用于单膜素素物种可靠和精确鉴定的特异性特征,但我们观察到了对不同物种对培养基极端温度和pH值的影响的一些差异。最终结论需要进一步的研究,涉及更多孤立。

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