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1.
Insect Sci ; 31(2): 633-645, 2024 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-37578006

RESUMO

Anoplophora glabripennis (Asian longhorn beetle, ALB) and Anoplophora chinensis (Citrus longhorn beetle, CLB) are native forest pests in China; they have become important international quarantine pests. They are found using the same Salix aureo-pendula host tree of Cixi, Zhejiang province, China. On this host tree, we collected additional beetles that appeared to be morphologically intermediate between ALB and CLB. By using a stereoscope, we observed that there were several bumps on the base of the elytra, which was inconsistent with ALB, which typically has a smooth elytral base, but was more like CLB, which has numerous short tubercles on the elytral base. Given their sympatry and intermediate morphology, we hypothesized that these may represent ALB × CLB hybrids. We studied the genomic profiles for 46 samples (ALB, CLB, and putative hybrids) using genotyping-by-sequencing (GBS) providing a reduced representation of the entire genome. Employing principal component analyses on the 163 GBS-derived single nucleotide polymorphism data, we found putative hybrids tightly clustered with ALB, but genetically distinct from the CLB individuals. Therefore, our initial hybrid hypothesis was not supported by genomic data. Further, while mating experiments between adult ALB and CLB were successful in 4 separate years (2017, 2018, 2020, and 2021), and oviposition behavior was observed, no progeny was produced. Having employed population genomic analysis and biological hybridization experiments, we conclude that the putative hybrids represent newly discovered morphological variants within ALB. Our approach further confirmed the advantage of genome-wide information for Anoplophora species assignment in certain ambiguous classification cases.


Assuntos
Besouros , Simpatria , Feminino , Animais , Besouros/genética , Florestas , Árvores
2.
Zootaxa ; 4504(2): 225-242, 2018 Oct 24.
Artigo em Inglês | MEDLINE | ID: mdl-30486026

RESUMO

The names of two cryptic species of Haploembia found in California are resolved and methods for identification are summarized. Molecular data of the Histone III subunit was used to evaluate color and behavior as species identifiers, confirming that antisocial behavior is a good identifier for the parthenogenetic species (Haploembia tarsalis), whereas the more variable coloration patterns were helpful, but less so. A genome size ratio of 1.44 between the parthenogenetic H. tarsalis and the sexually reproducing H. solieri was observed, along with higher genetic variation within the asexual lineage. This, and the identification of what appears to be a putative hybrid, contributes to current work examining mutation rates and selective pressures on genome size in parthenogenetic populations.


Assuntos
Variação Genética , Insetos , Partenogênese , Animais , California , Feminino
3.
Environ Entomol ; 46(4): 1024-1034, 2017 08 01.
Artigo em Inglês | MEDLINE | ID: mdl-28498959

RESUMO

The genus Helicoverpa (Lepidoptera: Noctuidae) includes phytophagous and polyphagous agricultural insect pests. In the Americas, a native pest, Helicoverpa zea (Boddie), and an invasive pest, Helicoverpa armigera (Hübner), are causing severe damage in vegetable and agronomic crops. The population structure of both species in South America is poorly understood, and the phylogenetic relatedness of H. armigera and H. zea suggests natural interspecific gene flow between these species. Using microsatellite loci, we investigated: 1) the genetic diversity and gene flow of H. armigera specimens from Brazil; 2) the genetic diversity and gene flow between H. zea specimens from Brazil and the United States; and 3) the possibility of interspecific gene flow and the frequency of putative hybrids in Brazil. We detected high intraspecific gene flow among populations collected in the same country. However, there is a geographic limit to gene flow among H. zea individuals from South and North America. Pairwise Fst and private alleles showed that H. armigera is more similar to H. zea from Brazil than H. zea from the United States. A comparative STRUCTURE analysis suggests natural hybridization between H. armigera and H. zea in Brazil. High gene flow and natural hybridization are key traits to population adaptation in new and disturbed environments, which can influence the management of these pests in the American continent.


Assuntos
Fluxo Gênico , Variação Genética , Hibridização Genética , Mariposas/genética , Animais , Brasil , Genes de Insetos , Larva/genética , Repetições de Microssatélites , Mariposas/crescimento & desenvolvimento , Filogenia , Estados Unidos
4.
Parasite Epidemiol Control ; 1(2): 169-176, 2016 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-29988196

RESUMO

Genetic markers (ribosomal DNA and mitochondrial DNA) were used for molecular dissection of the Anisakis simplex sensu lato (s.l). complex populations. Host fish were caught off Moroccan coasts, where only Anisakis pegreffii is present, the sympatric area comprising Spanish coasts, and the Little Sole Bank fishing area from Nordeast Atlantic Ocean where the only present species is A. simplex sensu stricto(s.s.). Sequence variations in the amplification products were then assessed indirectly by digestion with restriction endonucleases or directly by sequencing for 623 L3 larvae. The sequences were used to infer the relationships between the two species under study using various methodological approaches. We reveal the high genetic diversity of Anisakis simplex s.s. and A. pegreffii in both mitochondrial and nuclear genes. We detected 10 and 2 fixed differences between A. simplex s.s and A. pegreffii in the Cox2 and ITS1, respectively. We found a proportion of putative hybrids below 20% with similar figures on the Atlantic and Mediterranean coasts. Moroccan hybrids were more similar to A. pegreffii reflecting backcrosses between these mixed genotypes and his ancestor A. pegreffii. We discuss the possible interpretation of these putative hybrids.

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