Can gypsy moth stand the heat? A reciprocal transplant experiment with an invasive forest pest across its southern range margin
Temperature provides important physiological constraints that can influence the distribution of an invasive species. Gypsy moth ( Lymantria dispar L.) is a generalist defoliator in North America and supraoptimal temperatures (above the optimal for developmental rate) have been implicated in range d...
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Published in: | Biological invasions Vol. 21; no. 4; pp. 1365 - 1378 |
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Abstract | Temperature provides important physiological constraints that can influence the distribution of an invasive species. Gypsy moth (
Lymantria dispar
L.) is a generalist defoliator in North America and supraoptimal temperatures (above the optimal for developmental rate) have been implicated in range dynamics at the southern invasion front in West Virginia and Virginia. We sourced egg masses from the Appalachian Mountains (AM), where the gypsy moth range is expanding, from the Coastal Plain (CP), where range retraction is occurring, and from a long-established population in New York (NY) and conducted a reciprocal transplant experiment to compare development and fitness components among these populations at two sites along the southern invasion front. We found evidence of sublethal effects from rearing in the CP, with decreased pupal mass and fewer eggs compared to individuals reared in the AM, but little difference between source populations in developmental traits. The AM and NY populations did experience reductions in egg viability under a southern winter at the CP site compared to control wintering conditions, while the CP egg masses had equivalent survival. This study provides empirical support for negative fitness consequences of supraoptimal temperatures at the southern range edge, consistent with patterns of range retraction and spread in the region, as well as suggesting the potential for local adaptation through variation in egg survival. Our work illustrates that sublethal effects from high temperature can be an important factor determining the distribution of invasive species under current and future climates. |
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AbstractList | Temperature provides important physiological constraints that can influence the distribution of an invasive species. Gypsy moth (
Lymantria dispar
L.) is a generalist defoliator in North America and supraoptimal temperatures (above the optimal for developmental rate) have been implicated in range dynamics at the southern invasion front in West Virginia and Virginia. We sourced egg masses from the Appalachian Mountains (AM), where the gypsy moth range is expanding, from the Coastal Plain (CP), where range retraction is occurring, and from a long-established population in New York (NY) and conducted a reciprocal transplant experiment to compare development and fitness components among these populations at two sites along the southern invasion front. We found evidence of sublethal effects from rearing in the CP, with decreased pupal mass and fewer eggs compared to individuals reared in the AM, but little difference between source populations in developmental traits. The AM and NY populations did experience reductions in egg viability under a southern winter at the CP site compared to control wintering conditions, while the CP egg masses had equivalent survival. This study provides empirical support for negative fitness consequences of supraoptimal temperatures at the southern range edge, consistent with patterns of range retraction and spread in the region, as well as suggesting the potential for local adaptation through variation in egg survival. Our work illustrates that sublethal effects from high temperature can be an important factor determining the distribution of invasive species under current and future climates. Temperature provides important physiological constraints that can influence the distribution of an invasive species. Gypsy moth (Lymantria dispar L.) is a generalist defoliator in North America and supraoptimal temperatures (above the optimal for developmental rate) have been implicated in range dynamics at the southern invasion front in West Virginia and Virginia. We sourced egg masses from the Appalachian Mountains (AM), where the gypsy moth range is expanding, from the Coastal Plain (CP), where range retraction is occurring, and from a long-established population in New York (NY) and conducted a reciprocal transplant experiment to compare development and fitness components among these populations at two sites along the southern invasion front. We found evidence of sublethal effects from rearing in the CP, with decreased pupal mass and fewer eggs compared to individuals reared in the AM, but little difference between source populations in developmental traits. The AM and NY populations did experience reductions in egg viability under a southern winter at the CP site compared to control wintering conditions, while the CP egg masses had equivalent survival. This study provides empirical support for negative fitness consequences of supraoptimal temperatures at the southern range edge, consistent with patterns of range retraction and spread in the region, as well as suggesting the potential for local adaptation through variation in egg survival. Our work illustrates that sublethal effects from high temperature can be an important factor determining the distribution of invasive species under current and future climates. |
Author | Parry, Dylan Johnson, Derek M. Timko, Sarah E. Sherman, Kayla Thompson, Lily M. Grayson, Kristine L. Gray, David R. Eckert, Andrew J. Faske, Trevor M. Levorse, Andi Yang, Banruo Tobin, Patrick C. Banahene, Nana Quiroga Herrera, Melisa |
Author_xml | – sequence: 1 givenname: Trevor M. surname: Faske fullname: Faske, Trevor M. organization: Department of Biology, Virginia Commonwealth University – sequence: 2 givenname: Lily M. surname: Thompson fullname: Thompson, Lily M. organization: Department of Biology, University of Richmond – sequence: 3 givenname: Nana surname: Banahene fullname: Banahene, Nana organization: Department of Biology, University of Richmond – sequence: 4 givenname: Andi surname: Levorse fullname: Levorse, Andi organization: Department of Biology, University of Richmond – sequence: 5 givenname: Melisa surname: Quiroga Herrera fullname: Quiroga Herrera, Melisa organization: Department of Biology, University of Richmond – sequence: 6 givenname: Kayla surname: Sherman fullname: Sherman, Kayla organization: Department of Biology, University of Richmond – sequence: 7 givenname: Sarah E. surname: Timko fullname: Timko, Sarah E. organization: Department of Biology, University of Richmond – sequence: 8 givenname: Banruo surname: Yang fullname: Yang, Banruo organization: Department of Biology, University of Richmond – sequence: 9 givenname: David R. surname: Gray fullname: Gray, David R. organization: Canadian Forest Service – Atlantic Forestry Centre, Natural Resources Canada – sequence: 10 givenname: Dylan surname: Parry fullname: Parry, Dylan organization: Department of Environmental and Forest Biology, College of Environmental Science and Forestry, State University of New York – sequence: 11 givenname: Patrick C. surname: Tobin fullname: Tobin, Patrick C. organization: School of Environmental and Forest Sciences, University of Washington – sequence: 12 givenname: Andrew J. surname: Eckert fullname: Eckert, Andrew J. organization: Department of Biology, Virginia Commonwealth University – sequence: 13 givenname: Derek M. surname: Johnson fullname: Johnson, Derek M. organization: Department of Biology, Virginia Commonwealth University – sequence: 14 givenname: Kristine L. orcidid: 0000-0003-1710-0457 surname: Grayson fullname: Grayson, Kristine L. email: kgrayson@richmond.edu organization: Department of Biology, University of Richmond |
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Keywords | Supraoptimal temperatures Forest defoliator Common garden experiment Local adaptation |
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Snippet | Temperature provides important physiological constraints that can influence the distribution of an invasive species. Gypsy moth (
Lymantria dispar
L.) is a... Temperature provides important physiological constraints that can influence the distribution of an invasive species. Gypsy moth (Lymantria dispar L.) is a... |
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SubjectTerms | Biomedical and Life Sciences Coastal plains Developmental Biology Ecology Eggs Fitness Freshwater & Marine Ecology High temperature Introduced species Invasive species Life Sciences Mountains Nonnative species Original Paper Plant Sciences Populations Sublethal effects Survival Viability |
Title | Can gypsy moth stand the heat? A reciprocal transplant experiment with an invasive forest pest across its southern range margin |
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