Genetic Diversity and Gene Flow Observed in Two Cereal Aphid (Hemiptera: Aphididae) Species and Populations in the Chinese Corn Belt Region

IF 0.7 4区 农林科学 Q4 ENTOMOLOGY Journal of Entomological Science Pub Date : 2022-06-22 DOI:10.18474/JES21-64
Wei Sun, Qianfu Su, Wei-Chen Yang, Jiachun Zhou, Yuebo Gao
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Abstract

Abstract The cereal aphids, Rhopalosiphum maidis (Fitch) and Rhopalosiphum padi (L.) (Hemiptera: Aphididae), are serious pests of maize, Zea mays L., globally. Basic information about the genetic structure of these aphids is unknown. We, therefore, estimated the genetic diversity and genetic flow from partial fragments of the mitochondrial cytochrome oxidase I gene collected from different geographic populations of aphids throughout the Songliao Plain of northeastern China. Our analysis of a 425-bp sequence on 297 R. maidis and 287 R. padi individuals revealed 17 and 3 variable sites, respectively. Fifteen haplotypes were obtained among the R. maidis populations, and only haplotype RM1 was shared. Three shared haplotypes were obtained among the R. padi populations. No obvious geographical trends were detected based on the haplotype network and neighbor-joining tree. Relatively low haplotype diversity indices were observed in the R. maidis populations (haplotype diversity [Hd] = 0.14207, average number of nucleotide differences [K] = 0.17340, and nucleotide diversity [Pi] = 0.00041), whereas relatively high haplotype diversity indices were observed in the R. padi populations (Hd = 0.53249, K = 1.46614, and Pi = 0.00345). There was moderate gene flow (number of migrants [Nm] = 2.33) among R. maidis populations, but there was low gene flow (Nm = 0.82) among R. padi populations. Analysis of molecular variance showed high genetic differentiation within populations. Genetic distance and geographic distance were not significantly associated according to the Mantel test. The results suggest that the difference in the aphids' existence strategies has resulted in a different mitochondrial evolution pattern in the Songliao Plain region, and they provide a foundation for accurately forecasting systems against this pest.
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中国玉米带两种谷物蚜虫(半翅目:蚜虫科)种和居群的遗传多样性和基因流动
摘要禾谷蚜Rhopalosiphum maidis(Fitch)和Rhopalosilphum padi(L.)(半翅目:蚜科)是全球玉米的严重害虫。关于这些蚜虫遗传结构的基本信息尚不清楚。因此,我们从中国东北松辽平原不同地理种群的蚜虫中收集的线粒体细胞色素氧化酶I基因的部分片段,估计了遗传多样性和遗传流。我们对297个R.maidis和287个R.padi个体的425bp序列的分析分别揭示了17个和3个可变位点。在R.maidis群体中获得了15个单倍型,并且只有单倍型RM1是共享的。在R.padi群体中获得了三个共享的单倍型。基于单倍型网络和邻居连接树没有检测到明显的地理趋势。在R.maidis群体中观察到相对较低的单倍型多样性指数(单倍型多态性[Hd]=0.1407,核苷酸差异的平均数[K]=0.17340,核苷酸多样性[Pi]=0.00041),而在R.padi群体中观察到相对较高的单倍型多样性指数(Hd=0.53249,K=1.46614,Pi=0.00045)。在R.maidis群体中存在中等的基因流动(迁移数[Nm]=2.33),但在R.pady群体中存在低的基因流(Nm=0.82)。分子变异分析表明,群体内遗传分化程度较高。根据Mantel检验,遗传距离和地理距离没有显著相关性。结果表明,松辽平原地区蚜虫生存策略的差异导致了线粒体进化模式的不同,为准确预测系统对该害虫的危害提供了基础。
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来源期刊
CiteScore
1.20
自引率
11.10%
发文量
40
审稿时长
>12 weeks
期刊介绍: The Journal of Entomological Science (ISSN 0749-8004) is a peer-reviewed, scholarly journal that is published quarterly (January, April, July, and October) under the auspices of the Georgia Entomological Society in concert with Allen Press (Lawrence, Kansas). Manuscripts deemed acceptable for publication in the Journal report original research with insects and related arthropods or literature reviews offering foundations to innovative directions in entomological research
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