Suppr超能文献

冷诱导的黄黝鱼(Tautogolabrus adspersus)代谢抑制:一种多方面的细胞事件。

Cold-induced metabolic depression in cunner (Tautogolabrus adspersus): A multifaceted cellular event.

机构信息

Department of Ocean Sciences, Memorial University of Newfoundland and Labrador, St. John's, NL, Canada.

Department of Biology, University of Western Ontario, London, ON, Canada.

出版信息

PLoS One. 2022 Aug 2;17(8):e0271086. doi: 10.1371/journal.pone.0271086. eCollection 2022.

Abstract

Metabolic depression and dormancy (i.e., stopping/greatly reducing activity and feeding) are strategies used by many animals to survive winter conditions characterized by food shortages and cold temperatures. However, controversy exists on whether the reduced metabolism of some fishes at cold temperatures is due to dormancy alone, or also involves active metabolic depression. Thus, we acclimated winter-dormant cunner [Tautogolabrus adspersus, a north temperate wrasse which in Newfoundland is at the northern limit of its distribution] and winter-active Atlantic salmon (Salmo salar) to winter (0°C; 8h light: 16h dark) and summer (10°C; 16h light: 8 h dark) conditions, and measured the thermal sensitivity of ATP-producing and O2-consuming processes in isolated liver mitochondria and hepatocytes when exposed in vitro to temperatures from 20 to 0°C and 10 to 0°C, respectively. We found that: 1) liver mitochondrial State 3 respiration and hepatocyte O2 consumption in cunner were only ~ one-third and two-thirds of that measured in salmon, respectively, at all measurement temperatures; 2) cunner mitochondria also have proton conductance and leak respiration (State 4) values that are only approximately one-third of those in salmon; 3) the mitochondria of cunner show a dramatic reduction in respiratory control ratio (from ~ 8 to 3), and a much greater drop in State 3 respiration, between 10 and 5°C (Q10 values in 10- and 0°C-acclimated fish of 14.5 and 141.2, respectively), as compared with salmon (3.9 and 9.6, respectively); and 4) lowering temperature from 5 to 0°C resulted in ~ 40 and 30% reductions in hepatocyte O2 consumption due to non-mitochondrial respiration and Na+-K+-ATPase activity, respectively, in cunner, but not in salmon. Collectively, these results highlight the intrinsic capacity for metabolic depression in hepatocytes and mitochondria of cunner, and clearly suggest that several cellular processes play a role in the reduced metabolic rates exhibited by some fishes at cold temperatures.

摘要

代谢抑制和休眠(即停止/极大减少活动和摄食)是许多动物用来应对冬季食物短缺和低温条件的策略。然而,一些鱼类在低温下代谢降低是仅由于休眠还是也涉及主动代谢抑制,这一问题仍存在争议。因此,我们将冬季休眠的黑鲈(Tautogolabrus adspersus,一种分布于北温带的鲷鱼,在纽芬兰省处于其分布的最北限)和冬季活跃的大西洋鲑(Salmo salar)驯化到冬季(0°C;8h 光照:16h 黑暗)和夏季(10°C;16h 光照:8h 黑暗)条件,并分别在体外测量暴露于 20 至 0°C 和 10 至 0°C 温度时,分离的肝线粒体和肝细胞中产生 ATP 和消耗 O2 的过程的热敏感性。我们发现:1)黑鲈的肝线粒体状态 3 呼吸和肝细胞耗氧量分别仅为鲑鱼的约 1/3 和 2/3;2)黑鲈的线粒体质子电导和漏呼吸(状态 4)值仅为鲑鱼的约 1/3;3)黑鲈的线粒体呼吸控制比(从约 8 降至 3)显著降低,状态 3 呼吸也有更大幅度下降,从 10 至 5°C(10 和 0°C 驯化鱼的 Q10 值分别为 14.5 和 141.2),与鲑鱼(3.9 和 9.6)相比;4)从 5 至 0°C 降低温度使黑鲈的肝细胞耗氧量分别减少约 40%和 30%,这归因于非线粒体呼吸和 Na+-K+-ATP 酶活性,而鲑鱼则没有。总的来说,这些结果突出了黑鲈肝细胞和线粒体中代谢抑制的内在能力,并明确表明在一些鱼类在低温下代谢率降低的过程中,有几个细胞过程发挥了作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de00/9345476/12d63b4ad5e0/pone.0271086.g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验