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Corimanya, J. L.

Publications and source records attributed to Corimanya, J. L..

2 recordsLinked to original sources

Climatic suitability and invasion risk of the elm zigzag sawfly in North America

The elm zigzag sawfly, Aproceros leucopoda (Hymenoptera), native to eastern Asia, is among the most concerning potential pests for elm trees (Ulmus spp.); elms form an important component in many North Temperate forests. This sawfly species invaded Europe in 2003 and spread rapidly across much of that continent. In 2020, it was recorded in North America, and it has since become established in several parts of the eastern United States and Canada. Sawfly infestations can cause severe elm tree defoliation, branch die-back that weakens tree health, and potentially tree mortality. Sawfly invasions have the potential to further exacerbate elm decline, especially in conjunction with other pressures, including Dutch elm disease (Ophiostoma ulmi). We used rigorous approaches from distributional ecology to explore climatic suitability for A. leocopoda across North America, considering various sources of uncertainty in the data. We found that, without control, the elm zigzag sawfly could establish populations across eastern Canada, much of the central-eastern and northeastern United States, as well as in the Pacific Northwest. More southern areas of North America were not climatically suitable for this species. Predicted suitable areas for the sawfly overlap broadly with elm distributions, highlighting the need to control this invasion to mitigate potential economic and environmental impacts.

ecology↗

Spatiotemporal dynamics of questing activity by four tick species in the central Great Plains

In this study, we explore a suite of new ecological niche modeling approaches to illuminate the distributional potential and distributional dynamics of questing individuals of four tick species in the central Great Plains region. Specifically, we improve on typical approaches in distributional ecology by (1) assigning time-specific environmental values to sampling events so that repeated sampling at the same points yields additional information, (2) using both positive and negative records of the species as inputs in model development, and (3) constraining model response shapes in models to resemble the shapes of fundamental ecological niches. Model outcomes demonstrate both seasonal dynamics and differences between species in terms of the geographic potential of questing behavior by Great Plains tick species. These improved approaches in distributional ecology have considerable potential to enrich distributional understanding of vector species distributions.

ecology↗