Oleic Acid Promotes the Biosynthesis of 10-Hydroxy-2-decenoic Acid via Species-Selective Remodeling of TAGs in Apis mellifera ligustica
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Published:2023-08-29
Issue:17
Volume:24
Page:13361
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ISSN:1422-0067
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Container-title:International Journal of Molecular Sciences
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language:en
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Short-container-title:IJMS
Author:
Hu Xiyi12,
Wang Ying1,
Chi Xuepeng1ORCID,
Wang Hongfang1,
Liu Zhenguo1ORCID,
Ma Lanting1,
Xu Baohua1
Affiliation:
1. College of Animal Science and Technology, Shandong Agricultural University, Tai’an 271018, China
2. College of Agriculture and Forestry Science, Linyi University, Linyi 276000, China
Abstract
This study aimed to assess the impact of oleic acid (OA) supplementation on the biosynthesis of 10-hydroxy-2-decenoic acid (10-HDA) in Apis mellifera ligustica. In experiment 1, varying concentrations of OA (2%, 4%, 6% and 8%) were added to an artificial diet for newly emerged bees reared in cages. Analysis of 10-HDA content and gene expression in the mandibular gland (MG) revealed that the 8% OA treatment had the greatest impact on promoting the synthesis of 10-HDA. Subsequent investigations utilized RNA-seq and lipidomics to characterize the molecular signature in the MG after feeding the 8% OA diet. Phosphatidylcholine (PC) and triacylglycerol (TAG) were found to be the predominant lipids in the MG of worker bees. A total of 154 TAGs were identified, with TAG (18:1-18:1-18:1) exhibiting the highest abundance, which increased by 1.5 times. The major TAG species contained palmitic acid (16:0) and oleic acid (18:1) in their structure, which was associated with fatty acid composition of diet. The increase in abundance of main TAGs may be attributed to the upregulation of glycerol-3-phosphate acyltransferase (Gpat) and glycerol kinase (GK) gene expression at the transcriptional level. The upregulation of differentially expressed genes (DEGs) related to carbohydrate metabolism may contribute to meeting the heightened metabolic demands of the MGs in worker bees. Royal jelly (RJ) samples from bee colonies fed with the 8% OA diet exhibited higher 10-HDA level than RJ collected from bee colonies fed with the artificial diet. These results indicate that 8% OA addition in the diet enhanced biosynthesis of 10-HDA in the mandibular gland, which was accompanied by significant and highly species-selective remodeling of TAGs.
Funder
special funds for the Efficient Ecological Agriculture Innovation Project of the Taishan Industry Leading Talent Program
National Natural Science Foundation of China
earmarked fund for the China Agriculture Research System
Subject
Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis
Reference75 articles.
1. Insect Fat Body: Energy, Metabolism, and Regulation;Arrese;Annu. Rev. Entomol.,2010
2. Bee food: The chemistry and nutritional value of nectar, pollen and mixtures of the two;Nicolson;Afr. Zool.,2011
3. Pollen nutritional content and digestibility for animals;Roulston;Plant Syst. Evol.,2000
4. Stanley, R.G., and Linskens, H.F. (2012). Pollen: Biology Biochemistry Management, Springer Science & Business Media.
5. Fatty acids in pollen: A review of their importance for honey bees;Manning;Bee World,2001
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