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苹果增殖病两种传病介体昆虫——黑腹木虱和绘木虱(半翅目:木虱科)以及意大利北部其他常见木虱的分子鉴定

Molecular Identification of Two Vector Species, Cacopsylla melanoneura and Cacopsylla picta (Hemiptera: Psyllidae), of Apple Proliferation Disease and Further Common Psyllids of Northern Italy.

作者信息

Oettl Sabine, Schlink Katja

机构信息

Functional Genomics Division, Research Centre for Agriculture and Forestry Laimburg, Laimburg 6, 39040 Auer/Ora (BZ), Italy.

出版信息

J Econ Entomol. 2015 Oct;108(5):2174-83. doi: 10.1093/jee/tov204. Epub 2015 Jul 23.

Abstract

The psyllid species Cacopsylla melanoneura (Förster) and Cacopsylla picta (Förster) are vectors of 'Candidatus Phytoplasma mali', the causal agent of apple proliferation, one of the economically most important apple diseases in Europe. Both vectors are present in apple orchards of South Tyrol and Trentino provinces in Northern Italy. As no direct treatment of the disease is possible, monitoring of the psyllids provides information about the vector presence in the orchards and enables targeted control. Thus, fast and reliable identification of the various psyllids occurring in the apple orchards is required. Morphological differentiation is problematic due to extensive resemblance of some psyllid species especially among females and is error-prone for nymphs. Here we present a rapid and cost-effective polymerase chain reaction-restriction fragment length polymorphism method based on the cytochrome c oxidase subunit I region for the molecular identification of the vector species as well as eight further Cacopsylla species present in the orchards. This method was verified through 98.9% consensus with morphologically identified males, through sequencing and subsequent phylogenetic analysis. In case of doubtful morphological identification of females, the method was able to provide a refined species assignment and could also remarkably facilitate the identification of nymphs.

摘要

木虱物种黑脉木虱(Förster)和花斑木虱(Förster)是“苹果植原体”的传播媒介,“苹果植原体”是苹果增殖病的病原体,是欧洲经济上最重要的苹果病害之一。这两种传播媒介都存在于意大利北部南蒂罗尔省和特伦蒂诺省的苹果园中。由于无法对该病进行直接治疗,对木虱的监测可提供有关果园中传播媒介存在情况的信息,并有助于进行有针对性的防治。因此,需要快速、可靠地鉴定苹果园中出现的各种木虱。由于一些木虱物种,特别是雌性木虱之间极为相似,形态学鉴别存在问题,而且若虫的鉴别容易出错。在此,我们基于细胞色素c氧化酶亚基I区域,提出一种快速且经济高效的聚合酶链反应-限制性片段长度多态性方法,用于对传播媒介物种以及果园中存在的另外8种花斑木虱物种进行分子鉴定。通过与形态学鉴定的雄性个体进行98.9%的一致性比对、测序以及后续的系统发育分析,验证了该方法。对于雌性个体形态学鉴定存疑的情况,该方法能够提供更精确的物种分类,并且还能显著促进若虫的鉴定。

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