Transcriptome analysis of hepatopancreas and gills of Palaemon gravieri under salinity stress.


Journal

Gene
ISSN: 1879-0038
Titre abrégé: Gene
Pays: Netherlands
ID NLM: 7706761

Informations de publication

Date de publication:
30 Jan 2023
Historique:
received: 04 04 2022
revised: 01 09 2022
accepted: 25 10 2022
pubmed: 3 11 2022
medline: 30 11 2022
entrez: 2 11 2022
Statut: ppublish

Résumé

Salinity is an important factor in the aquatic environment, and its fluctuations always result in osmotic stress, which affects the survival, distribution, and physiological activities of crustaceans. Crustaceans counter them through osmoregulation, which consists of many mechanisms. Palaemon gravieri is an important economic species in Palaemonidae, widely distributed in the southern East China Sea and the China Yellow Sea, and has a good adaptability to salinity stress. Currently, there are only a few studies on the effects of salinity on P. graviera. Therefore, it is particularly important to study the molecular responses of P. gravieri to salinity fluctuations. In this study, P. gravieri was treated with salinities of 10, 25, and 40, and the hepatopancreas and gills of shrimp in the different salinity groups were sampled after 24 h. The samples were used for RNA extraction and transcriptome analysis. In total, 80,994 unigenes were obtained, of which 19,114 were annotated. The differences in gene expression between different tissues at the same salinity were more significant. Many metabolism-related genes were downregulated in the gills, such as beta-hexosaminidase subunit alpha (HEXA), 10-formyltetrahydrofolate dehydrogenase (ALDH1L1), and Alcohol dehydrogenase class-3 (ADH5). Scanning transmission electron microscope analysis showed that the expression levels of some stress-(but not salinity stress) related genes changed after stress (mostly upregulated), suggesting the existence of secondary stress. Gene set enrichment analysis (GSEA) focused on the expression of transporters in osmoregulation, and the results showed that they mainly played a role in the gills, but ATP-binding cassette (ABC) transporters were more active in the hepatopancreas. This study showed that the response of P. gravieri to salinity change was different not only between the hepatopancreas and gills, but also between low salinity and higher salinity, and the ion transport-related genes were mainly expressed in the gills. Overall, these results improve our understanding of salt tolerance mechanism in P. gravieri.

Identifiants

pubmed: 36323362
pii: S0378-1119(22)00833-2
doi: 10.1016/j.gene.2022.147013
pii:
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

147013

Informations de copyright

Copyright © 2022. Published by Elsevier B.V.

Déclaration de conflit d'intérêts

Declaration of Competing Interest The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.

Auteurs

Wenjun Shi (W)

Institute of Oceanology & Marine Fisheries, Jiangsu, Nantong 226007, China; Yantai Institute of Coastal Zone Research, Chinese Academy of Sciences, Yantai 264003, China.

Runhao Hu (R)

Institute of Oceanology & Marine Fisheries, Jiangsu, Nantong 226007, China; National Demonstration Center for Experimental Fisheries Science Education, Shanghai Ocean University, Shanghai 201306, China.

Ran Zhao (R)

Institute of Oceanology & Marine Fisheries, Jiangsu, Nantong 226007, China; National Demonstration Center for Experimental Fisheries Science Education, Shanghai Ocean University, Shanghai 201306, China.

Jianqiang Zhu (J)

Institute of Oceanology & Marine Fisheries, Jiangsu, Nantong 226007, China; National Demonstration Center for Experimental Fisheries Science Education, Shanghai Ocean University, Shanghai 201306, China.

Hui Shen (H)

Institute of Oceanology & Marine Fisheries, Jiangsu, Nantong 226007, China.

Hui Li (H)

Institute of Oceanology & Marine Fisheries, Jiangsu, Nantong 226007, China.

Libao Wang (L)

Institute of Oceanology & Marine Fisheries, Jiangsu, Nantong 226007, China.

Zeyu Yang (Z)

Aquatic Product Technology Extension Station of Gaoyou, Gaoyou 225634, China.

Qi Jiang (Q)

Institute of Oceanology & Marine Fisheries, Jiangsu, Nantong 226007, China.

Yi Qiao (Y)

Institute of Oceanology & Marine Fisheries, Jiangsu, Nantong 226007, China.

Ge Jiang (G)

Institute of Oceanology & Marine Fisheries, Jiangsu, Nantong 226007, China.

Jie Cheng (J)

Institute of Oceanology & Marine Fisheries, Jiangsu, Nantong 226007, China.

Xihe Wan (X)

Institute of Oceanology & Marine Fisheries, Jiangsu, Nantong 226007, China. Electronic address: wxh1708@163.com.

Articles similaires

Robotic Surgical Procedures Animals Humans Telemedicine Models, Animal

Odour generalisation and detection dog training.

Lyn Caldicott, Thomas W Pike, Helen E Zulch et al.
1.00
Animals Odorants Dogs Generalization, Psychological Smell
Animals TOR Serine-Threonine Kinases Colorectal Neoplasms Colitis Mice
Animals Tail Swine Behavior, Animal Animal Husbandry

Classifications MeSH