scholarly journals Skeletal muscle and cardiac transcriptomics of a regionally endothermic fish, the Pacific bluefin tuna, Thunnus orientalis

BMC Genomics ◽  
2020 ◽  
Vol 21 (1) ◽  
Author(s):  
Adam Ciezarek ◽  
Luke Gardner ◽  
Vincent Savolainen ◽  
Barbara Block

Abstract Background The Pacific bluefin tuna (Thunnus orientalis) is a regionally endothermic fish that maintains temperatures in their swimming musculature, eyes, brain and viscera above that of the ambient water. Within their skeletal muscle, a thermal gradient exists, with deep muscles, close to the backbone, operating at elevated temperatures compared to superficial muscles near the skin. Their heart, by contrast, operates at ambient temperature, which in bluefin tunas can range widely. Cardiac function in tunas reduces in cold waters, yet the heart must continue to supply blood for metabolically demanding endothermic tissues. Physiological studies indicate Pacific bluefin tuna have an elevated cardiac capacity and increased cold-tolerance compared to warm-water tuna species, primarily enabled by increased capacity for sarcoplasmic reticulum calcium cycling within the cardiac muscles. Results Here, we compare tissue-specific gene-expression profiles of different cardiac and skeletal muscle tissues in Pacific bluefin tuna. There was little difference in the overall expression of calcium-cycling and cardiac contraction pathways between atrium and ventricle. However, expression of a key sarcoplasmic reticulum calcium-cycling gene, SERCA2b, which plays a key role maintaining intracellular calcium stores, was higher in atrium than ventricle. Expression of genes involved in aerobic metabolism and cardiac contraction were higher in the ventricle than atrium. The two morphologically distinct tissues that derive the ventricle, spongy and compact myocardium, had near-identical levels of gene expression. More genes had higher expression in the cool, superficial muscle than in the warm, deep muscle in both the aerobic red muscle (slow-twitch) and anaerobic white muscle (fast-twitch), suggesting thermal compensation. Conclusions We find evidence of widespread transcriptomic differences between the Pacific tuna ventricle and atrium, with potentially higher rates of calcium cycling in the atrium associated with the higher expression of SERCA2b compared to the ventricle. We find no evidence that genes associated with thermogenesis are upregulated in the deep, warm muscle compared to superficial, cool muscle. Heat generation may be enabled by by the high aerobic capacity of bluefin tuna red muscle.

2021 ◽  
Vol 43 (3) ◽  
pp. 2098-2110
Author(s):  
Motoshige Yasuike ◽  
Kazunori Kumon ◽  
Yosuke Tanaka ◽  
Kenji Saitoh ◽  
Takuma Sugaya

Mass spawning in fish culture often brings about a marked variance in family size, which can cause a reduction in effective population sizes in seed production for stock enhancement. This study reports an example of combined pedigree information and gene expression phenotypes to understand differential family survival mechanisms in early stages of Pacific bluefin tuna, Thunnus orientalis, in a mass culture tank. Initially, parentage was determined using the partial mitochondrial DNA control region sequence and 11 microsatellite loci at 1, 10, 15, and 40 days post-hatch (DPH). A dramatic proportional change in the families was observed at around 15 DPH; therefore, transcriptome analysis was conducted for the 15 DPH larvae using a previously developed oligonucleotide microarray. This analysis successfully addressed the family-specific gene expression phenotypes with 5739 differentially expressed genes and highlighted the importance of expression levels of gastric-function-related genes at the developmental stage for subsequent survival. This strategy demonstrated herein can be broadly applicable to species of interest in aquaculture to comprehend the molecular mechanism of parental effects on offspring survival, which will contribute to the optimization of breeding technologies.


Aquaculture ◽  
2021 ◽  
Vol 530 ◽  
pp. 735769
Author(s):  
Takao Hayashida ◽  
Kentaro Higuchi ◽  
Kazuharu Nomura ◽  
Junpei Konishi ◽  
Yukinori Shimada ◽  
...  

2006 ◽  
Vol 23 (5) ◽  
pp. 443-448 ◽  
Author(s):  
Yutaka Kawakami ◽  
Manabu Seoka ◽  
Shigeru Miyashita ◽  
Hidemi Kumai ◽  
Hiromi Ohta

Animals ◽  
2020 ◽  
Vol 10 (9) ◽  
pp. 1705
Author(s):  
Gyoungsik Kang ◽  
Kwang-Min Choi ◽  
Dong-Hee Cho ◽  
Min-Soo Joo ◽  
Min-Jin Heo ◽  
...  

The consumption of fish and shellfish worldwide is steadily increasing, and tuna is a particularly valuable fish species. However, infection caused by Kudoa spp. is causing problems in many fish including the Pacific bluefin tuna (Thunnus orientalis), and there is much controversy about the association of these infections with foodborne disease. In this study, using haematological and histological analyses of the blood and internal organs (liver, spleen, kidney, heart, stomach, intestine, gill, and muscle) of Pacific bluefin tuna cultured in South Korea, infection with Myxosporea was first identified, and molecular biological analysis was conducted. In this study, Kudoa hexapunctata was finally identified. The Pacific bluefin tunas analysed in this study did not show any gross pathology lesions, such as visible cysts and/or myoliquefaction, of infection with this species. The histological analytical results can provide guidelines for the identification of K. hexapunctata. In the case of K. hexapunctata-induced infection, unlike other countries, such as Japan, there have been no reports in South Korea, and this study is the first to detect K. hexapunctata infection in Pacific bluefin tuna cultured in South Korea. The correlation between K. hexapunctata and food poisoning is not yet clear, however, it is thought that continuous observation of its infection is necessary.


2015 ◽  
Vol 51 (4) ◽  
pp. 553-560 ◽  
Author(s):  
Sang Chul YOON ◽  
Joon Taek YOO ◽  
Sung Il LEE ◽  
Zang Geun KIM ◽  
Kwang Ho CHOI

2005 ◽  
Vol 36 (5) ◽  
pp. 413-421 ◽  
Author(s):  
Yoshifumi Sawada ◽  
Tokihiko Okada ◽  
Shigeru Miyashita ◽  
Osamu Murata ◽  
Hidemi Kumai

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