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联合转录组和代谢组分析揭示日本沼虾饲料转化效率的关键调控基因和途径。

Combined transcriptome and metabolome analysis reveal key regulatory genes and pathways of feed conversion efficiency of oriental river prawn Macrobrachium nipponense.

机构信息

Key Laboratory of Freshwater Aquatic Genetic Resources, Ministry of Agriculture and Rural Affairs, Shanghai Ocean University, Shanghai, 201306, China.

National Demonstration Center for Experimental Fisheries Science Education, Shanghai Ocean University, Shanghai, 201306, China.

出版信息

BMC Genomics. 2023 May 19;24(1):267. doi: 10.1186/s12864-023-09317-1.

Abstract

BACKGROUND

Oriental river prawn Macrobrachium nipponense is an economically important aquaculture species in China, Japan, and Vietnam. In commercial prawn farming, feed cost constitutes about 50 to 65% of the actual variable cost. Improving feed conversion efficiency in prawn culture will not only increase economic benefit, but also save food and protect the environment. The common indicators used for feed conversion efficiency include feed conversion ratio (FCR), feed efficiency ratio (FER), and residual feed intake (RFI). Among these, RFI is much more suitable than FCR and FER during the genetic improvement of feed conversion efficiency for aquaculture species.

RESULTS

In this study, the transcriptome and metabolome of hepatopancreas and muscle of M. nipponense from high RFI low RFI groups, which identified after culture for 75 days, were characterized using combined transcriptomic and metabolomic analysis. A total of 4540 differentially expressed genes (DEGs) in hepatopancreas, and 3894 DEGs in muscle were identified, respectively. The DEGs in hepatopancreas were mainly enriched in KEGG pathways including the metabolism of xenobiotics by cytochrome P450 (down-regulated), fat digestion and absorption (down-regulated) and aminoacyl-tRNA biosynthesis (up-regulated), etc. The DEGs in muscle were mainly enriched in KEGG pathways including the protein digestion and absorption (down-regulated), glycolysis/gluconeogenesis (down-regulated), and glutathione metabolism (up-regulated), etc. At the transcriptome level, the RFI of M. nipponense was mainly controlled in biological pathways such as the high immune expression and the reduction of nutrients absorption capacity. A total of 445 and 247 differently expressed metabolites (DEMs) were identified in the hepatopancreas and muscle, respectively. At the metabolome level, the RFI of M. nipponense was affected considerably by amino acid and lipid metabolism.

CONCLUSIONS

M. nipponense from higher and lower RFI groups have various physiological and metabolic capability processes. The down-regulated genes, such as carboxypeptidase A1, 6-phosphofructokinase, long-chain-acyl-CoA dehydrogenase, et. al., in digestion and absorption of nutrients, and the up-regulated metabolites, such as aspirin, lysine, et. al., in response to immunity could be potential candidate factors contributed to RFI variation for M. nipponense. Overall, these results would provide new insights into the molecular mechanism of feed conversion efficiency and assist in selective breeding to improve feed conversion efficiency in M. nipponense.

摘要

背景

日本沼虾(Macrobrachium nipponense)是中国、日本和越南重要的水产养殖经济物种。在商业对虾养殖中,饲料成本约占实际变动成本的 50%至 65%。提高对虾养殖中的饲料转化效率不仅会增加经济效益,还会节约粮食和保护环境。常用的饲料转化效率指标包括饲料转化率(FCR)、饲料效率比(FER)和剩余饲料摄入量(RFI)。在水产养殖物种的饲料转化效率遗传改良中,RFI 比 FCR 和 FER 更适用。

结果

本研究采用转录组学和代谢组学联合分析的方法,对经过 75 天养殖后高 RFI 低 RFI 组的日本沼虾肝胰腺和肌肉的转录组和代谢组进行了特征描述。分别在肝胰腺和肌肉中鉴定出 4540 个差异表达基因(DEGs)和 3894 个 DEGs。肝胰腺中的 DEGs 主要富集在细胞色素 P450 介导的外源物质代谢(下调)、脂肪消化吸收(下调)和氨酰-tRNA 生物合成(上调)等 KEGG 途径中;肌肉中的 DEGs 主要富集在蛋白质消化吸收(下调)、糖酵解/糖异生(下调)和谷胱甘肽代谢(上调)等 KEGG 途径中。在转录组水平上,日本沼虾的 RFI 主要受高免疫表达和降低营养吸收能力等生物途径的控制。在肝胰腺和肌肉中分别鉴定出 445 个和 247 个差异表达代谢物(DEMs)。在代谢组水平上,日本沼虾的 RFI 受到氨基酸和脂质代谢的显著影响。

结论

来自高 RFI 和低 RFI 组的日本沼虾具有不同的生理和代谢能力过程。在营养消化吸收方面下调的基因,如羧肽酶 A1、6-磷酸果糖激酶、长链酰基辅酶 A 脱氢酶等,以及应对免疫反应上调的代谢物,如阿司匹林、赖氨酸等,都可能是日本沼虾 RFI 变化的潜在候选因素。总的来说,这些结果将为饲料转化效率的分子机制提供新的见解,并有助于选择育种以提高日本沼虾的饲料转化效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17df/10197838/355f0f04ba90/12864_2023_9317_Fig1_HTML.jpg

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