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Thermal limits of two biting midges, Culicoides imicola Kieffer and C. bolitinos Meiswinkel (Diptera: Ceratopogonidae)

机译:Culicoides imicola Kieffer和C. bolitinos Meiswinkel(Diptera:Ceratopogonidae)两种叮咬mid的热极限

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Background Culicoides imicola Kieffer and Culicoides bolitinos Meiswinkel (Diptera: Ceratopogonidae) are both of veterinary importance, being vectors of Schmallenberg, bluetongue and African horse sickness (AHS) viruses. Within South Africa, these Culicoides species show a marked difference in their abundances according to altitude, with C. imicola highly abundant in lower altitudes, but being replaced as the dominant species by C. bolitinos in cooler, high-altitude regions. Methods The thermal physiology of field collected adults of each species was determined to evaluate whether it could account for differences in their distribution and abundance. Critical thermal maxima (CTmax) and minima (CTmin), as well as upper and lower lethal temperatures (ULT and LLT) were assessed after acclimation temperatures of 19?C, 24?C and 29?C. Critical thermal limits were determined using an ecologically relevant rate of temperature change of 0.06?C.min?1. Results Significant differences in CTmin and CTmax were found between acclimation temperatures for C. imicola and C. bolitinos. In C. bolitinos, the LLT of individuals acclimated at 24?C was significantly improved (LLT50?=??6.01?C) compared with those acclimated at the other temperatures (LLT50?=??4?C). Acclimation had a weak (difference in LLT50 of only 1?C) but significant effect on the LLT of C. imicola. When CTmin, CTmax, LLT and ULT were superimposed on daily maximum and minimum temperature records from locations where each tested Culicoides species is dominant, it was found that temperatures frequently declined below the CTmin and LLT of C. imicola at the location where C. bolitinos was dominant. Conclusions The distribution and abundance of C. imicola is likely directly constrained by their relatively poor tolerance of lower temperatures. Results for C. bolitinos suggest that the adult phase is hardy, and it is hypothesised that the thermal biology of other life stages could determine their range.
机译:背景Culicoides imicola Kieffer和Culicoides bolitinos Meiswinkel(双翅目:Ceratopogonidae)都具有兽医重要性,是Schmallenberg病毒,蓝舌病病毒和非洲马瘟(AHS)病毒的媒介。在南非范围内,这些库里科尼德物种的丰度根据海拔高度显示出显着差异,伊米科拉毛虫在较低的高度高度丰富,但在凉爽的高海拔地区被玻利尼丝毛虫取代为优势种。方法确定田间采集的每种物种的成年动物的热生理,以评估其是否可以解释其分布和丰度的差异。在适应温度为19°C,24°C和29°C之后,评估了临界热最大值(CTmax)和最小值(CTmin)以及最高和最低致死温度(ULT和LLT)。使用生态学相关的0.06?C.min?1的温度变化速率确定临界热极限。结果C. imicola和C. bolitinos的适应温度之间的CTmin和CTmax显着差异。与在其他温度下适应的个体(LLT50≥4℃)相比,在C.bolitinos中,适应于24℃的个体的LLT显着改善(LLT50Δ=Δ6.01℃)。适应能力较弱(LLT50的差异仅为1?C),但对C. imicola的LLT影响很大。当将CTmin,CTmax,LLT和ULT叠加在每种被测试的库里克尼德斯种占主导地位的地点的每日最高和最低温度记录上时,发现温度经常下降到C. milico的C. imicola的CTmin和LLT以下。占主导地位。结论C. imicola的分布和丰度可能直接受到其相对较低的低温耐受性的限制。玻利维亚梭菌的结果表明,成年阶段很艰难,并且假设其他生命阶段的热生物学可以确定它们的范围。

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