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冷驯化在易受冷胁迫的昆虫——飞蝗中维持了后肠的低温重吸收能力。

Cold acclimation preserves hindgut reabsorption capacity at low temperature in a chill-susceptible insect, Locusta migratoria.

机构信息

Zoophysiology, Department of Biosciences, Aarhus University, Aarhus, Denmark.

Zoophysiology, Department of Biosciences, Aarhus University, Aarhus, Denmark.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2021 Feb;252:110850. doi: 10.1016/j.cbpa.2020.110850. Epub 2020 Nov 20.

Abstract

Cold acclimation increases cold tolerance of chill-susceptible insects and the acclimation response often involves improved organismal ion balance and osmoregulatory function at low temperature. However, the physiological mechanisms underlying plasticity of ion regulatory capacity are largely unresolved. Here we used Ussing chambers to explore the effects of cold exposure on hindgut KCl reabsorption in cold- (11 °C) and warm-acclimated (30 °C) Locusta migratoria. Cooling (from 30 to 10 °C) reduced active reabsorption across recta from warm-acclimated locusts, while recta from cold-acclimated locusts maintained reabsorption at 10 °C. The differences in transport capacity were not linked to major rearrangements of membrane phospholipid profiles. Yet, the stimulatory effect of two signal transduction pathways were altered by temperature and/or acclimation. cAMP-stimulation increased reabsorption in both acclimation groups, with a strong stimulatory effect at 30 °C and a moderate stimulatory effect at 10 °C. cGMP-stimulation also increased reabsorption in both acclimation groups at 30 °C, but their response to cGMP differed at 10 °C. Recta from warm-acclimated locusts, characterised by reduced reabsorption at 10 °C, recovered reabsorption capacity following cGMP-stimulation at 10 °C. In contrast, recta from cold-acclimated locusts, characterised by sustained reabsorption at 10 °C, were unaffected by cGMP-stimulation. Furthermore, cold-exposed recta from warm-acclimated locusts were insensitive to bafilomycin-α1, a V-type H-ATPase inhibitor, whereas this blocker reduced reabsorption across cold-exposed recta from cold-acclimated animals. In conclusion, bafilomycin-sensitive and cGMP-dependent transport mechanism(s) are likely blocked during cold exposure in warm-acclimated animals while preserved in cold-acclimated animals. These may in part explain the large differences in rectal ion transport capacity between acclimation groups at low temperature.

摘要

冷驯化会提高易受冷害昆虫的耐寒性,而驯化反应通常涉及到低温下生物体离子平衡和渗透调节功能的改善。然而,离子调节能力可塑性的生理机制在很大程度上仍未得到解决。在这里,我们使用 Ussing 室来探索冷暴露对冷驯化(11°C)和暖驯化(30°C)的飞蝗后肠 KCl 重吸收的影响。从 30°C 冷却至 10°C 降低了来自暖驯化飞蝗的直肠的主动重吸收,而来自冷驯化飞蝗的直肠在 10°C 时仍保持重吸收。运输能力的差异与膜磷脂谱的主要重排无关。然而,两种信号转导途径的刺激作用受到温度和/或驯化的影响而发生改变。cAMP 刺激在两个驯化组中均增加了重吸收,在 30°C 时具有很强的刺激作用,在 10°C 时具有适度的刺激作用。cGMP 刺激在 30°C 时也增加了两个驯化组的重吸收,但它们对 cGMP 的反应在 10°C 时有所不同。10°C 时,来自暖驯化飞蝗的直肠重吸收减少,经 cGMP 刺激后恢复重吸收能力。相比之下,10°C 时来自冷驯化飞蝗的直肠重吸收持续,不受 cGMP 刺激的影响。此外,来自暖驯化飞蝗的冷暴露直肠对巴弗洛霉素-α1(一种 V 型 H+-ATP 酶抑制剂)不敏感,而这种抑制剂减少了来自冷驯化动物的冷暴露直肠的重吸收。总之,在暖驯化动物的冷暴露期间,巴弗洛霉素敏感和 cGMP 依赖的运输机制可能被阻断,而在冷驯化动物中则被保留。这可能部分解释了在低温下驯化组之间直肠离子运输能力的巨大差异。

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