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Genetic diversity, population structure and ecological niche modeling of Thyrinteina arnobia (Lepidoptera: Geometridae), a native Eucalyptus pest in Brazil
by
Souza, Philipe G. C.
, Zauza, Edival A. V.
, Wilcken, Carlos F.
, Nanini, Frederico
, Domingues, Maurício M.
, Santos, Fábio A.
, da Silva, Ricardo S.
, Corrêa, Alberto S.
, Soliman, Everton P.
in
704/158/1145
/ 704/158/2464
/ 704/158/852
/ Agriculture pest
/ Animals
/ Brazil
/ Climate change
/ Demography
/ Ecosystem
/ Eucalyptus
/ Eucalyptus - parasitology
/ Eucalyptus brown looper
/ Genetic diversity
/ Genetic structure
/ Genetic Variation
/ Geographical distribution
/ Geometridae
/ Host plants
/ Humanities and Social Sciences
/ Indigenous species
/ Insects
/ Lepidoptera
/ Lepidoptera - genetics
/ Lepidoptera - physiology
/ Maxent model
/ Moths - genetics
/ Moths - physiology
/ multidisciplinary
/ Niches
/ Pest control
/ Pest outbreaks
/ Pests
/ Phylogeny
/ Phylogeography
/ Plantations
/ Population ecology
/ Population genetics
/ Population structure
/ Regions
/ Science
/ Science (multidisciplinary)
2024
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Genetic diversity, population structure and ecological niche modeling of Thyrinteina arnobia (Lepidoptera: Geometridae), a native Eucalyptus pest in Brazil
by
Souza, Philipe G. C.
, Zauza, Edival A. V.
, Wilcken, Carlos F.
, Nanini, Frederico
, Domingues, Maurício M.
, Santos, Fábio A.
, da Silva, Ricardo S.
, Corrêa, Alberto S.
, Soliman, Everton P.
in
704/158/1145
/ 704/158/2464
/ 704/158/852
/ Agriculture pest
/ Animals
/ Brazil
/ Climate change
/ Demography
/ Ecosystem
/ Eucalyptus
/ Eucalyptus - parasitology
/ Eucalyptus brown looper
/ Genetic diversity
/ Genetic structure
/ Genetic Variation
/ Geographical distribution
/ Geometridae
/ Host plants
/ Humanities and Social Sciences
/ Indigenous species
/ Insects
/ Lepidoptera
/ Lepidoptera - genetics
/ Lepidoptera - physiology
/ Maxent model
/ Moths - genetics
/ Moths - physiology
/ multidisciplinary
/ Niches
/ Pest control
/ Pest outbreaks
/ Pests
/ Phylogeny
/ Phylogeography
/ Plantations
/ Population ecology
/ Population genetics
/ Population structure
/ Regions
/ Science
/ Science (multidisciplinary)
2024
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Genetic diversity, population structure and ecological niche modeling of Thyrinteina arnobia (Lepidoptera: Geometridae), a native Eucalyptus pest in Brazil
by
Souza, Philipe G. C.
, Zauza, Edival A. V.
, Wilcken, Carlos F.
, Nanini, Frederico
, Domingues, Maurício M.
, Santos, Fábio A.
, da Silva, Ricardo S.
, Corrêa, Alberto S.
, Soliman, Everton P.
in
704/158/1145
/ 704/158/2464
/ 704/158/852
/ Agriculture pest
/ Animals
/ Brazil
/ Climate change
/ Demography
/ Ecosystem
/ Eucalyptus
/ Eucalyptus - parasitology
/ Eucalyptus brown looper
/ Genetic diversity
/ Genetic structure
/ Genetic Variation
/ Geographical distribution
/ Geometridae
/ Host plants
/ Humanities and Social Sciences
/ Indigenous species
/ Insects
/ Lepidoptera
/ Lepidoptera - genetics
/ Lepidoptera - physiology
/ Maxent model
/ Moths - genetics
/ Moths - physiology
/ multidisciplinary
/ Niches
/ Pest control
/ Pest outbreaks
/ Pests
/ Phylogeny
/ Phylogeography
/ Plantations
/ Population ecology
/ Population genetics
/ Population structure
/ Regions
/ Science
/ Science (multidisciplinary)
2024
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Genetic diversity, population structure and ecological niche modeling of Thyrinteina arnobia (Lepidoptera: Geometridae), a native Eucalyptus pest in Brazil
Journal Article
Genetic diversity, population structure and ecological niche modeling of Thyrinteina arnobia (Lepidoptera: Geometridae), a native Eucalyptus pest in Brazil
2024
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Overview
Thyrinteina arnobia
(Lepidoptera: Geometridae) is a native American species. Despite its historical importance as an insect pest in
Eucalyptus
plantations, more information is needed regarding the population diversity, demography, and climatic variables associated with its distribution in different regions of Brazil. We used a phylogeographic approach to infer the genetic diversity, genetic structure, and demographic parameters of
T. arnobia
. We also conducted an ecological niche modeling (ENM) to predict suitable areas for
T. arnobia
occurrence in Brazil and other countries worldwide. Although
T. arnobia
populations have low genetic diversity in Brazil, we identified mitochondrial haplogroups predominating in different Brazilian regions and high Ф
ST
and Ф
CT
values in AMOVA, suggesting a low frequency of insect movement among these regions. These results indicate that outbreaks of
T. arnobia
in
Eucalyptus
areas in different regions of Brazil are associated with local or regional populations, with no significant contribution from long-distance dispersal from different regions or biomes, suggesting that pest management strategies would be implemented on a regional scale. In Brazil, the demographic and spatial expansion signals of
T. arnobia
seem to be associated with the history of geographical expansion of
Eucalyptus
plantations, a new sustainable host for this species. ENM indicated that isothermality and annual rainfall are critical climatic factors for the occurrence of
T. arnobia
in tropical and subtropical areas in the Americas. ENM also suggested that
T. arnobia
is a potential pest in
Eucalyptus
areas in all Brazilian territory and in regions from Africa, Asia, and Oceania.
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