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Dietary Supplementation of β-Carotene Reveals miRNAs Involved in the Regulation of Carotenoid Metabolism in Crassostrea gigas
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作者 SUN Dongfang wan sai +2 位作者 YU Hong KONG Lingfeng LI Qi 《Journal of Ocean University of China》 SCIE CAS CSCD 2024年第4期1045-1053,共9页
Carotenoids play crucial physiological roles in animals.A comprehensive investigation into the mechanism of carotenoid metabolism in oysters will establish a theoretical foundation for further development of its carot... Carotenoids play crucial physiological roles in animals.A comprehensive investigation into the mechanism of carotenoid metabolism in oysters will establish a theoretical foundation for further development of its carotenoid-rich traits.However,the information on the function of miRNA in β-carotene metabolism in oysters is limited.To elucidate the mechanisms underlying miRNA regulation of carotenoid metabolism in oysters,we compared the expressions of miRNA in digestive gland tissues of Pacific oyster(Crassostrea gigas)fed with aβ-carotene supplemented diet and a normal diet,respectively.A total of 690 candidate miRNAs in the Pacific oyster digestive gland tissues were identified,including 590 known miRNAs and 111 unknown miRNAs.Three differentially expressed miRNAs were obtained in the carotenoid-fed and normal groups,associated to 137 differentially expressed target genes.Moreover,the GO enrichment analysis revealed that the differentially expressed target genes were mainly involved in transmembrane transport activity.KEGG enrichment showed that the differentially expressed target genes were involved in ABC transport.Analysis of the mRNA-miRNA network revealed that novel0025 played a central role in carotenoid metabolism,and it was negatively correlated with the expression of 46 mRNAs.In addition,down-regulated expression of novel0025 upregulated the expression of the lipoprotein gene LOC105342186,suggesting a potential regulatory role in carotenoid metabolism.Our results provide useful information for elucidating the miRNA regulation mechanism during carotenoids metabolism in the Pacific oyster. 展开更多
关键词 Crassostrea gigas Β-CAROTENE microRNA carotenoid metabolism
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碳一气体生物转化中的产乙酸菌改造与发酵工艺优化 被引量:1
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作者 万赛 王皓明 +3 位作者 马小清 谭扬 刘立成 李福利 《生物工程学报》 CAS CSCD 北大核心 2023年第6期2410-2429,共20页
当前的线性经济发展模式依赖化石能源且增加二氧化碳的排放,加剧全球变暖和环境污染。因此,亟需开发碳捕获和利用的技术,建立循环经济。利用产乙酸菌进行碳一气体(一氧化碳和二氧化碳)转化是一项前景广阔的技术,具有较高的碳源灵活性和... 当前的线性经济发展模式依赖化石能源且增加二氧化碳的排放,加剧全球变暖和环境污染。因此,亟需开发碳捕获和利用的技术,建立循环经济。利用产乙酸菌进行碳一气体(一氧化碳和二氧化碳)转化是一项前景广阔的技术,具有较高的碳源灵活性和产物选择性,能够合成多种化学品和燃料。本文聚焦产乙酸菌在碳一气体转化过程中的生理代谢机制、遗传和代谢工程改造、发酵工艺优化以及提升碳原子经济性等方面的研究进展,以期为产乙酸菌气体发酵的工业规模放大及“负碳”生产提供参考。 展开更多
关键词 产乙酸菌 碳一气体 微生物发酵 基因工程 发酵工艺
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