Division of Entomology, ICAR-Indian Agricultural Research Institute, New Delhi, India.
J Exp Zool A Ecol Integr Physiol. 2024 Mar;341(2):193-202. doi: 10.1002/jez.2774. Epub 2023 Dec 27.
Although several aspects like diapause determining factors, population structure, reproductive physiology, and genetics of diapause have been investigated, there is no clarity on carbohydrate energetics during larval diapause in Chilo partellus (Swinhoe). Present studies revealed significant variation between the nondiapausing and diapausing C. partellus for total carbohydrates, glycogen, sorbitol, and trehalose contents in different body parts, life stages, and for body parts × life stages interaction. Total carbohydrate content started declining, while sorbitol and trehalose increased in all the body parts as the C. partellus larvae progressed from prediapausing to diapausing state. However, glycogen content spiked in all the body parts at prediapausing stage, which then declined during diapause. Among the body parts, total carbohydrate content was significantly greater in the hemolymph as compared to other body parts of both larvae and pupae of C. partellus. Glycogen content was significantly greater in the larval fat bodies and pupal hemolymph as compared to their other body parts. In diapausing larvae, sorbitol and trehalose were greater in the integument than in other body parts. Furthermore, there was spike in trehalose and decrease in sorbitol in all the body parts of pupae from diapausing than those from nondiapausing larvae. These findings suggest that the diapause alterate and/or fluctuate major carbohydrates in different body parts of both larvae and pupae of C. partellus. This information will be helpful in better understanding the diapause energetics and overwintering metabolic cryoprotection in insects.
尽管已经研究了许多方面,如滞育决定因素、种群结构、生殖生理学和滞育遗传学,但对于亚洲玉米螟幼虫滞育期间的碳水化合物能量学仍不清楚。目前的研究表明,在不同的身体部位、生命阶段以及身体部位×生命阶段的相互作用中,非滞育和滞育的亚洲玉米螟之间在总碳水化合物、糖原、山梨醇和海藻糖含量方面存在显著差异。随着亚洲玉米螟幼虫从预滞育到滞育状态的发展,所有身体部位的总碳水化合物含量开始下降,而山梨醇和海藻糖含量增加。然而,在预滞育阶段,所有身体部位的糖原含量都急剧上升,然后在滞育期间下降。在身体部位中,与亚洲玉米螟幼虫和蛹的其他身体部位相比,血淋巴中的总碳水化合物含量明显更高。与其他身体部位相比,幼虫脂肪体和蛹血淋巴中的糖原含量更高。在滞育幼虫中,与其他身体部位相比,表皮中的山梨醇和海藻糖含量更高。此外,与非滞育幼虫相比,滞育蛹的所有身体部位中的海藻糖含量增加,而山梨醇含量下降。这些发现表明,滞育会改变和/或波动亚洲玉米螟幼虫和蛹不同身体部位的主要碳水化合物。这些信息将有助于更好地理解昆虫滞育期间的能量学和越冬代谢的抗冻保护。