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The Influence of Aerial Exposure on Sea Anemones Aulactinia veratra Mucin Genes Expression Using the RNA Sequencing
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作者 Alaa Haridi 《Open Journal of Marine Science》 2024年第1期1-18,共18页
Mucin genes are the main component of mucus. The sea anemone species, Aulactinia veratra (Phylum Cnidaria) contains different types of mucin genes. In the intertidal zone, A. veratra is found to be exposed to air duri... Mucin genes are the main component of mucus. The sea anemone species, Aulactinia veratra (Phylum Cnidaria) contains different types of mucin genes. In the intertidal zone, A. veratra is found to be exposed to air during the low tide and produces large quantities of mucus as an external covering. The relation between low tide and mucus secretion is still unclear, and what is the role of mucin during arial exposure is not yet investigated. This study hypothesised that the mucin genes in A. veratra would have significantly high expression in response to aerial exposure. Therefore, the aim of current study was to examine and analyses the response of A. veratra mucins in response to an experiment involving three hours of aerial exposure. To achieve this, aim the RNA-sequencing and bioinformatics analyses were used to examine the expression profile of A. veratra mucin genes in response to aerial exposure. The generated results have shown that, Mucin4-like and mucin5B-like were up-regulated in response to the three hours of aerial exposure in A. veratra. This finding shows a significant role of mucin5B-like and mucin4-like genes in response to air stress at low tide. The data generated from this study could be used in conjunction with future mucin gene studies of sea anemones and other cnidarians to compare A. veratra mucin gene expression results across time, and to extend our understanding of mucin stress response in this phylum. 展开更多
关键词 Aulactinia veratra Mucin4-Like Mucin5B-Like CNIDARIA Mucin Gene Expression RNA-Sequencing Sea Anemones MUCUS Aerial Exposure
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藜芦醛的合成
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作者 胡凯 董杰 +8 位作者 李想 李冬 赵玉祥 朱颜任 王晶 刘丹丹 周林宗 梁蕾蕾 陈静波 《昆明医科大学学报》 CAS 2018年第6期31-34,共4页
目的藜芦醛是一类重要的医药中间体和化工原料,在总结其常见合成方法的基础上,进一步研究更加高效的合成路线,为藜芦醛的应用打下良好基础.方法以甲基丁香酚为原料经Triton B催化的烯烃异构化反应和臭氧氧化/还原反应合成藜芦醛.结果探... 目的藜芦醛是一类重要的医药中间体和化工原料,在总结其常见合成方法的基础上,进一步研究更加高效的合成路线,为藜芦醛的应用打下良好基础.方法以甲基丁香酚为原料经Triton B催化的烯烃异构化反应和臭氧氧化/还原反应合成藜芦醛.结果探索了反应时间、反应温度、催化剂用量等对实验的影响,筛选出制备藜芦醛的最优化条件,两步反应总产率达到64%.结论此合成路线所用原料易得,反应条件温和,有一定的工业应用价值. 展开更多
关键词 藜芦醛 合成 烯烃异构化 臭氧氧化/还原
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