Mitochondrial gene expression in different organs of Hoplobatrachus rugulosus from China and Thailand under low-temperature stress.

IF 1.4 3区 生物学 Q2 ZOOLOGY BMC Zoology Pub Date : 2022-05-19 DOI:10.1186/s40850-022-00128-7
Wan-Ting Jin, Jia-Yin Guan, Xin-Yi Dai, Gong-Ji Wu, Le-Ping Zhang, Kenneth B Storey, Jia-Yong Zhang, Rong-Quan Zheng, Dan-Na Yu
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引用次数: 2

Abstract

Background: Hoplobatrachus rugulosus (Anura: Dicroglossidae) is distributed in China and Thailand and the former can survive substantially lower temperatures than the latter. The mitochondrial genomes of the two subspecies also differ: Chinese tiger frogs (CT frogs) display two identical ND5 genes whereas Thai tiger frogs (TT frogs) have two different ND5 genes. Metabolism of ectotherms is very sensitive to temperature change and different organs have different demands on energy metabolism at low temperatures. Therefore, we conducted studies to understand: (1) the differences in mitochondrial gene expression of tiger frogs from China (CT frogs) versus Thailand (TT frogs); (2) the differences in mitochondrial gene expression of tiger frogs (CT and TT frogs) under short term 24 h hypothermia exposure at 25 °C and 8 °C; (3) the differences in mitochondrial gene expression in three organs (brain, liver and kidney) of CT and TT frogs.

Results: Utilizing RT-qPCR and comparing control groups at 25 °C with low temperature groups at 8 °C, we came to the following results. (1) At the same temperature, mitochondrial gene expression was significantly different in two subspecies. The transcript levels of two identical ND5 of CT frogs were observed to decrease significantly at low temperatures (P < 0.05) whereas the two different copies of ND5 in TT frogs were not. (2) Under low temperature stress, most of the genes in the brain, liver and kidney were down-regulated (except for COI and ATP6 measured in brain and COI measured in liver of CT frogs). (3) For both CT and TT frogs, the changes in overall pattern of mitochondrial gene expression in different organs under low temperature and normal temperature was brain > liver > kidney.

Conclusions: We mainly drew the following conclusions: (1) The differences in the structure and expression of the ND5 gene between CT and TT frogs could result in the different tolerances to low temperature stress. (2) At low temperatures, the transcript levels of most of mitochondrial protein-encoding genes were down-regulated, which could have a significant effect in reducing metabolic rate and supporting long term survival at low temperatures. (3) The expression pattern of mitochondrial genes in different organs was related to mitochondrial activity and mtDNA replication in different organs.

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低温胁迫下中国和泰国rugulochus不同器官线粒体基因的表达
背景:rugulosus Hoplobatrachus rugulosus(无尾目:双蛛科)分布在中国和泰国,前者的生存温度比后者低得多。两个亚种的线粒体基因组也不同:中国虎蛙(CT蛙)显示两个相同的ND5基因,而泰国虎蛙(TT蛙)有两个不同的ND5基因。变温动物的代谢对温度变化非常敏感,不同器官对低温下的能量代谢有不同的需求。为此,我们开展了以下研究:(1)中国虎蛙(CT蛙)与泰国虎蛙(TT蛙)线粒体基因表达的差异;(2) 25℃和8℃短时低温24 h下虎蛙(CT蛙和TT蛙)线粒体基因表达的差异;(3) CT蛙与TT蛙三器官(脑、肝、肾)线粒体基因表达差异。结果:利用RT-qPCR,将25°C的对照组与8°C的低温组进行比较,得到如下结果。(1)在相同温度下,两个亚种的线粒体基因表达量有显著差异。两种相同ND5的转录物水平在低温下显著降低(P肝>肾)。结论:主要得出以下结论:(1)CT蛙和TT蛙的ND5基因的结构和表达差异可能导致其对低温胁迫的耐受性不同。(2)在低温下,大部分线粒体蛋白编码基因的转录水平下调,这对降低代谢率,支持低温下的长期生存具有显著作用。(3)不同器官线粒体基因的表达模式与不同器官线粒体活性和mtDNA复制有关。
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来源期刊
BMC Zoology
BMC Zoology Agricultural and Biological Sciences-Animal Science and Zoology
CiteScore
2.30
自引率
6.20%
发文量
53
审稿时长
24 weeks
期刊介绍: BMC Zoology is an open access, peer-reviewed journal that considers articles on all aspects of zoology, including physiology, mechanistic and functional studies, anatomy, life history, behavior, signalling and communication, cognition, parasitism, taxonomy and conservation.
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