1977Annals of the Entomological Society of AmericaRequires access

An Evaluation of Xeric Adaptiveness of Several Species of Blister Beetles (Meloidae)1

Allen Carson Cohen, John D. Pinto

Open publisher page 30 citations

Abstract

Several species of blister beetles mainly of the subtribe Eupomphina (Meloinae: Lyttini) were tested with respect to several parameters to evaluate their xeric adaptiveness. Rates of water loss were generally higher than for other xeric species (9.59–155.00 mg/g/h). Oxygen consumption was higher in all species than that reported for other xeric arthropods (300.9–3679.1 μl/g/h). All animals tested showed strong ability to regulate Na, K, and Ca as well as total osmotic concentration. Each species showed a high temperature tolerance as judged by relatively high critical thermal maxima (CTM) (47–51°C). Except for their high temperature tolerance, survival of meloids under rigorous ecological stresses seems more related to availability of wet food than to exceptional physiological adaptations.

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Several species of blister beetles mainly of the subtribe Eupomphina (Meloinae: Lyttini) were tested with respect to several parameters to evaluate their xeric adaptiveness. Rates of water loss were generally higher than for other xeric species (9.59–155.00 mg/g/h). Oxygen consumption was higher in all species than that reported for other xeric arthropods (300.9–3679.1 μl/g/h). All animals tested showed strong ability to regulate Na, K, and Ca as well as total osmotic concentration. Each species showed a high temperature tolerance as judged by relatively high critical thermal maxima (CTM) (47–51°C). Except for their high temperature tolerance, survival of meloids under rigorous ecological stresses seems more related to availability of wet food than to exceptional physiological adaptations.

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Available abstract

Several species of blister beetles mainly of the subtribe Eupomphina (Meloinae: Lyttini) were tested with respect to several parameters to evaluate their xeric adaptiveness. Rates of water loss were generally higher than for other xeric species (9.59–155.00 mg/g/h). Oxygen consumption was higher in all species than that reported for other xeric arthropods (300.9–3679.1 μl/g/h). All animals tested showed strong ability to regulate Na, K, and Ca as well as total osmotic concentration. Each species showed a high temperature tolerance as judged by relatively high critical thermal maxima (CTM) (47–51°C). Except for their high temperature tolerance, survival of meloids under rigorous ecological stresses seems more related to availability of wet food than to exceptional physiological adaptations.

Key concepts: Deserts and xeric shrublands, Biology, Ecology, Botany, Zoology, Habitat

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