紫菀、万年菊、菊花与紫菀黄病相关叶蝉的DNA条形码及系统发育分析。

Mahadeva Swamy Hanchipura Mallesh, Ramasamy Asokan, Hanamant Gadad, Samuel Duleep Kumar, Rajiv Kumar, Tejaswini Prakash
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引用次数: 2

摘要

蝉蛾科(半翅目)是重要的农业、园艺和观赏害虫。但是用形态学特征来区分若虫和雌成虫是非常困难的。本研究旨在了解中国紫菀、万年菊和菊花叶蝉的种类多样性,并确定其发生原因。2016年11月至2017年2月期间,在马哈拉施特拉邦浦那和卡纳塔克邦班加罗尔及其周边地区进行了两项调查。线粒体细胞色素氧化酶亚基I (mtCOI)区域标记用于物种诊断和遗传多样性研究。利用mtCOI分子标记鉴定出8种不同的叶蝉,分别是:叶蝉(Sogatella furcifera)、家蚕(Homalodisca inisolita)、大叶蝉(Amrasca biguttula)、切叶蝉(Balclutha incise)、腹叶蝉(Balclutha abdominalis)和三叉叶蝉(Japanagallia trifurcate)。在属水平鉴定为Toya、Empoasca、Perkinsiella、Hishimonus、Tambocerus、Phaconeura、Curena、psammotetix和Graphocophala种。这些结果与形态学鉴定有力地证实了。在对mtCOI基因进行多序列比对的基础上,绘制了具有最高似然度的物种系统发育树。根据NCBI GenBank和BOLD在不同地理区域数据库中收集的物种数据,将所有叶蝉物种聚类在一起。这些结果表明,使用分子和形态学方法来确保生物的准确鉴定是重要的。总之,本研究为分子生物学的研究提供了有价值的知识,并识别了作为主要植物原体载体的叶蝉物种。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DNA barcoding and phylogenetic analysis of leafhoppers associated with Aster Yellow disease on China aster, Marigold and Chrysanthemum.

The Cicadellidae (Auchenorrhyncha: Hemiptera) are important agricultural, horticultural and ornamental pests. But it is very difficult to define nymphs and female adults using morphological characteristics. This research was aimed at understanding the variety of leafhoppers species and defining the prospective cause of the aster-yellow disease in China Aster, Marigold and Chrysanthemum. Two surveys were conducted in and around Pune, Maharashtra and Bengaluru, Karnataka between November 2016 and February 2017. The mitochondrial cytochrome oxidase subunit I (mtCOI) region marker was used in the species diagnosis and genetic diversity research. Through the use of mtCOI molecular marker eight different leafhoppers species were identified as Sogatella furcifera, Homalodisca insolita, Amrasca biguttula, Balclutha incise and Balclutha abdominalis and Japanagallia trifurcate. Whereas at genus level identified as Toya, Empoasca, Perkinsiella, Hishimonus, Tambocerus, Phaconeura, Curena, Psammotettix and Graphocophala species. These results are strongly corroborated with morphological identification. On the basis of multiple sequence alignment of the mtCOI gene, a species phylogenetic tree with the highest likelihood was drawn. All the leafhopper species clustered together in accordance with the species data collected from the database of the different geographic regions from the NCBI GenBank and Barcode of Life (BOLD). Such results suggest that it is important to use both molecular and morphological methods to ensure accurate identification of organisms. To conclude, this research contributes valuable knowledge to molecular biology and recognizes leafhopper species that serve as major phytoplasma vectors.

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