Environments, spatial structures, and species competitions: determining the impact of yellow-legged hornets, Vespa velutina, on native wasps and bees on Tsushima Island, Japan
Invasive alien species (IAS) can have serious negative impacts on native species in invaded areas. Researchers attempting to measure the impacts of IAS on native species at a landscape level often face challenges though, because the effects of environmental gradients and spatial autocorrelation on p...
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Published in | Biological Invasions Vol. 22; no. 10; pp. 3131 - 3143 |
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Main Authors | , , , , , , , |
Format | Journal Article |
Language | English |
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01.10.2020
Springer International Publishing Springer Nature B.V |
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Abstract | Invasive alien species (IAS) can have serious negative impacts on native species in invaded areas. Researchers attempting to measure the impacts of IAS on native species at a landscape level often face challenges though, because the effects of environmental gradients and spatial autocorrelation on population structures are difficult to separate. To evaluate the impacts of IAS, we used spatial filtering and variation partitioning to remove environmental and spatial autocorrelation effects from abundance data for seven native insect species and one IAS,
Vespa velutina,
on the island of Tsushima, Japan. Here we show that negative correlations among
Vespa
species persisted after removal of environmental and spatial autocorrelation effects. The fact that alien
V. velutina
and native
Vespa mandarinia japonica
showed the strongest negative correlations with other native
Vespa
species suggested that there were strong competition or/and predation among
Vespa
species. The ongoing expansion of
V. velutina
since its incursion indicates that this species may impose strong negative impacts on other
Vespa
species, but it is possible that the slow expansion of
V. velutina
to the southern part of Tsushima is due to the presence of other
Vespa
species that function as a biological barrier. Since most IAS showed spatially structured distributions, especially at the initial stage of the incursion, spatial filtering is a promising tool to evaluate IAS impacts on native species. |
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AbstractList | Invasive alien species (IAS) can have serious negative impacts on native species in invaded areas. Researchers attempting to measure the impacts of IAS on native species at a landscape level often face challenges though, because the effects of environmental gradients and spatial autocorrelation on population structures are difficult to separate. To evaluate the impacts of IAS, we used spatial filtering and variation partitioning to remove environmental and spatial autocorrelation effects from abundance data for seven native insect species and one IAS, Vespa velutina, on the island of Tsushima, Japan. Here we show that negative correlations among Vespa species persisted after removal of environmental and spatial autocorrelation effects. The fact that alien V. velutina and native Vespa mandarinia japonica showed the strongest negative correlations with other native Vespa species suggested that there were strong competition or/and predation among Vespa species. The ongoing expansion of V. velutina since its incursion indicates that this species may impose strong negative impacts on other Vespa species, but it is possible that the slow expansion of V. velutina to the southern part of Tsushima is due to the presence of other Vespa species that function as a biological barrier. Since most IAS showed spatially structured distributions, especially at the initial stage of the incursion, spatial filtering is a promising tool to evaluate IAS impacts on native species. Invasive alien species (IAS) can have serious negative impacts on native species in invaded areas. Researchers attempting to measure the impacts of IAS on native species at a landscape level often face challenges though, because the effects of environmental gradients and spatial autocorrelation on population structures are difficult to separate. To evaluate the impacts of IAS, we used spatial filtering and variation partitioning to remove environmental and spatial autocorrelation effects from abundance data for seven native insect species and one IAS, Vespa velutina, on the island of Tsushima, Japan. Here we show that negative correlations among Vespa species persisted after removal of environmental and spatial autocorrelation effects. The fact that alien V. velutina and native Vespa mandarinia japonica showed the strongest negative correlations with other native Vespa species suggested that there were strong competition or/and predation among Vespa species. The ongoing expansion of V. velutina since its incursion indicates that this species may impose strong negative impacts on other Vespa species, but it is possible that the slow expansion of V. velutina to the southern part of Tsushima is due to the presence of other Vespa species that function as a biological barrier. Since most IAS showed spatially structured distributions, especially at the initial stage of the incursion, spatial filtering is a promising tool to evaluate IAS impacts on native species. |
Author | Yoshiko Sakamoto Naomi Nakagawa Koichi Goka Arata Ishizuka Hironori Sakamoto Makihiko Ikegami Kentaro Tsujii Shigeki Kishi |
Author_xml | – sequence: 1 givenname: Makihiko orcidid: 0000-0002-7760-7973 surname: Ikegami fullname: Ikegami, Makihiko email: makihiko.ikegami@gmail.com organization: Center for Environmental Biology and Ecosystem Studies, National Institute for Environmental Studies – sequence: 2 givenname: Kentaro surname: Tsujii fullname: Tsujii, Kentaro organization: Japan Wildlife Research Center – sequence: 3 givenname: Arata surname: Ishizuka fullname: Ishizuka, Arata organization: Japan Wildlife Research Center – sequence: 4 givenname: Naomi surname: Nakagawa fullname: Nakagawa, Naomi organization: Japan Wildlife Research Center – sequence: 5 givenname: Shigeki surname: Kishi fullname: Kishi, Shigeki organization: Center for Environmental Biology and Ecosystem Studies, National Institute for Environmental Studies, Research Center for Agricultural Information Technology, NARO – sequence: 6 givenname: Yoshiko surname: Sakamoto fullname: Sakamoto, Yoshiko organization: Center for Environmental Biology and Ecosystem Studies, National Institute for Environmental Studies – sequence: 7 givenname: Hironori surname: Sakamoto fullname: Sakamoto, Hironori organization: Center for Environmental Biology and Ecosystem Studies, National Institute for Environmental Studies – sequence: 8 givenname: Koichi surname: Goka fullname: Goka, Koichi organization: Center for Environmental Biology and Ecosystem Studies, National Institute for Environmental Studies |
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SubjectTerms | Autocorrelation Bees Biomedical and Life Sciences Developmental Biology Ecology Environmental effects Environmental gradient Evaluation Freshwater & Marine Ecology Herbivores Indigenous species Insects Introduced species Invasive species Japan landscapes Life Sciences Native species Original Paper Plant Sciences Predation Spatial filtering Vespa mandarinia Vespa velutina |
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Title | Environments, spatial structures, and species competitions: determining the impact of yellow-legged hornets, Vespa velutina, on native wasps and bees on Tsushima Island, Japan |
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