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首页> 外文期刊>Australasian Plant Pathology >Distribution of Diplodia pinea and its genotypic diversity within asymptomatic Pinus patula trees
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Distribution of Diplodia pinea and its genotypic diversity within asymptomatic Pinus patula trees

机译:无症状松树内双翅类植物的分布及其基因型多样性

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摘要

Diplodia pinea (= Sphaeropsis sapinea) is an endophytic fungus and opportunistic canker pathogen of Pinus spp. The diversity of this fungus has been studied at broad geographic scales, but little is known regarding its population structure at smaller spatial scales such as within a single tree. This is despite the importance that diversity in a single tree might hold for understanding the biology of the fungus, especially the role of the endophytic or asymptomatic phase in disease development. Moreover there was not information regarding the distribution of the fungus within healthy trees and its persistence. The genotypic diversity of these isolates was investigated using microsatellite markers. Five polymorphic markers were developed and these were used together with eight previously developed markers and vegetative compatibility tests to study the genotypic diversity of D. pinea isolates. In this study, D. pinea was isolated for the first time in the well structured stems of healthy P. patula trees along with branches and cones. From a total of 44 isolates collected from five trees, 39 microsatellite haplotypes and 32 vegetative compatibility groups (VCG's) were identified. The results indicate high genotypic diversity of D. pinea within individual asymptomatic trees which will lead to disease outbreak when trees are physiologically stressed.
机译:松果双翅目(Diplodia pinea,= Sphaeropsis sapinea)是松属植物的一种内生真菌和机会性溃疡病原体。已经在广泛的地理尺度上研究了这种真菌的多样性,但是对于其在较小空间尺度上(例如在一棵树内)的种群结构了解甚少。尽管有这样的重要性,但为了理解真菌的生物学,尤其是内生或无症状期在疾病发展中的作用,一棵树的多样性可能很重要。此外,没有关于真菌在健康树木中的分布及其持久性的信息。使用微卫星标记研究了这些分离物的基因型多样性。已开发了五个多态性标记,并将它们与八个先前开发的标记一起使用,并进行了营养相容性测试,以研究松果分离株的基因型多样性。在这项研究中,首次在健康的蛾树的结构良好的茎中以及与树枝和视锥细胞中分离了松果线虫。从五棵树收集的总共44个分离株中,鉴定出39个微卫星单倍型和32个植物相容性组(VCG's)。结果表明,在无症状的单个树内,松果蝇的基因型多样性很高,当树木受到生理压力时,将导致疾病暴发。

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