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Co-occurring species of Teratosphaeria on Eucalyptus

机译:桉树上畸胎球菌的共生种

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摘要

A common leaf spot disease occurring on Eucalyptus cladocalyx and E. lehmannii in the Western Cape Province of South Africa is known from literature to be caused by the fungus Coniothyrium ovatum, which is a pathogen native to several eucalypts in Australia. Recent collections have shown that Australian material identified as C. ovatum is morphologically and phylogenetically distinct from the South African specimens, and that all these taxa would be better accommodated in the genus Teratosphaeria. South African specimens previously identified as C. ovatum were found to represent two species that co-occur in the same leaves and even spots and are described here as T. juvenalis and T. verrucosa. Furthermore, a fresh collection of T. ovata from E. phoenicea in Australia, is distinguished morphologically and phylogenetically from similar, newly described taxa such as T. veloci on E. miniata, and Readeriella dimorpha, which is also placed in Teratosphaeria. Although these leaf pathogens appear to be of minor economic importance, they are morphologically similar to two serious eucalypt canker pathogens, namely T. gauchensis and T. zuluensis, which predominantly cause stem cankers, but could also be found occurring in leaf spots on their own, or in association with some of the other species treated here. Further research is, therefore, required to develop molecular detection techniques for these taxa to enable researchers to rapidly distinguish the minor pathogens from the more serious quarantine pathogens that co-occur on leaves.
机译:从文献中已知在南非西开普省的桉树桉和雷曼大肠杆菌上常见的叶斑病是由卵形锥虫引起的,该菌是澳大利亚几种桉树的原生病原体。最近的收集表明,澳大利亚的材料被鉴定为卵形梭菌,在形态和系统发育上与南非的标本不同,并且所有这些分类单元都可以更好地容纳在畸胎球菌属中。南非标本被鉴定为卵形衣原体,被发现代表两个物种,它们同时出现在同一片叶子甚至斑点上,在这里被称为T. juvenalis和T. verrucosa。此外,来自澳大利亚的E. phoenicea的T. ovata的新鲜集合在形态和系统发育上与相似的,新近描述的类群不同,例如在E. miniata上的T. veloci和也放置在Teratosphaeria的Readeriella dimorpha。尽管这些叶病原体似乎在经济上的重要性不高,但它们在形态上类似于两种严重的桉树溃疡病原体,即T. gauchensis和T. zuluensis,它们主要引起茎溃疡病,但也可以单独发现在叶斑中。 ,或与此处处理的其他一些物种有关。因此,需要进一步的研究来开发用于这些分类群的分子检测技术,以使研究人员能够快速地将次要病原体与叶片上共存的更严重的检疫病原体区分开。

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