Rozsypal J, Moos M, Goto S G
Institute of Entomology, Biology Centre of the Czech Academy of Sciences,České Budějovice,Czech Republic.
Graduate School of Science, Osaka City University,Osaka,Japan.
Bull Entomol Res. 2018 Aug;108(4):487-493. doi: 10.1017/S0007485317001006. Epub 2017 Oct 17.
The bean bug (Riptortus pedestris) is a pest of soybeans and other legumes in Japan and other Asian countries. It enters a facultative adult diapause on exposure to short days. While photoperiodism and diapause are well understood in R. pedestris, knowledge of cold tolerance is very limited, as is information on the effect of diapause on cold tolerance. We examined the effect of photoperiod, cold acclimation, and feeding status on cold tolerance in R. pedestris. We found that cold acclimation significantly increased survival at -10°C in both long- and short-day adult R. pedestris. Since the difference in cold survival between long- and short-day cold-acclimated groups was only marginal, we conclude that entering diapause is not crucial for R. pedestris to successfully pass through cold acclimation and become cold tolerant. We observed similar effects in 5th instar nymphs, with both long- and short-day cold-acclimated groups surviving longer cold exposures compared with non-acclimated groups. Starvation, which was tested only in adult bugs, had only a negligible and negative impact on cold survival. Although cold tolerance significantly increased with cold acclimation in adult bugs, supercooling capacity unexpectedly decreased. Our results suggest that changes in supercooling capacity as well as in water content are unrelated to cold tolerance in R. pedestris. An analysis of metabolites revealed differences between the treatments, and while several metabolites markedly increased with cold acclimation, their concentrations were too low to have a significant effect on cold tolerance.
豆蝽(Riptortus pedestris)是日本及其他亚洲国家大豆和其他豆类作物的一种害虫。在短日照条件下,它会进入兼性成虫滞育状态。虽然人们对豆蝽的光周期现象和滞育已了解得很清楚,但对其耐寒性的了解非常有限,关于滞育对耐寒性影响的信息也很少。我们研究了光周期、冷驯化和取食状态对豆蝽耐寒性的影响。我们发现,冷驯化显著提高了长日照和短日照成年豆蝽在-10°C下的存活率。由于长日照和短日照冷驯化组之间的耐寒性差异仅很微小,我们得出结论,进入滞育对于豆蝽成功通过冷驯化并获得耐寒性并非至关重要。我们在5龄若虫中观察到了类似的效果,与未驯化组相比,长日照和短日照冷驯化组都能在更长时间的寒冷暴露中存活。饥饿(仅在成虫中进行了测试)对耐寒性的影响微乎其微且呈负面影响。虽然成年豆蝽的耐寒性随着冷驯化显著提高,但过冷却能力却意外下降。我们的结果表明,过冷却能力以及含水量的变化与豆蝽的耐寒性无关。代谢物分析揭示了各处理之间的差异,虽然有几种代谢物随着冷驯化显著增加,但其浓度过低,对耐寒性没有显著影响。