期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Transcriptomic analysis of Andrias davidianus meat and experimental validation for exploring its bioactive components as functional foods
1
作者 Changge Guan zhenglin tan +6 位作者 Shucheng Li Yi Wang Naoyuki Yamamoto Chong Zhang Songjun Wang Junjie Chen Xinhui Xing 《Food Science and Human Wellness》 SCIE CSCD 2024年第1期166-172,共7页
Andrias davidianus(Chinese giant salamander,CGS)is the largest and oldest extant amphibian species in the world and is a source of prospective functional food in China.However,the progress of functional peptides minin... Andrias davidianus(Chinese giant salamander,CGS)is the largest and oldest extant amphibian species in the world and is a source of prospective functional food in China.However,the progress of functional peptides mining was slow due to lack of reference genome and protein sequence data.In this study,we illustrated full-length transcriptome sequencing to interpret the proteome of CGS meat and obtain 10703 coding DNA sequences.By functional annotation and amino acid composition analysis,we have discovered various genes related to signal transduction,and 16 genes related to longevity.We have also found vast variety of functional peptides through protein coding sequence(CDS)analysis by comparing the data obtained with the functional peptide database.Val-Pro-Ile predicted by the CDS analysis was released from the CGS meat through enzymatic hydrolysis,suggesting that our approach is reliable.This study suggested that transcriptomic analysis can be used as a reference to guide polypeptide mining in CGS meat,thereby providing a powerful mining strategy for the bioresources with unknown genomic and proteomic sequences. 展开更多
关键词 Chinese giant salamander Transcriptomic analysis Bioactive components Functional peptides mining
下载PDF
微生物微培养系统研究现状与展望 被引量:3
2
作者 陈政霖 马春玄 +1 位作者 邢新会 张翀 《生物工程学报》 CAS CSCD 北大核心 2019年第7期1151-1161,共11页
微生物培养是微生物学的起源和根本,成功的微生物培养是进行后续研究的重要前提与基础。但是,微生物培养操作不仅耗费了科研人员大量的精力和时间,还存在着极大的人为误差。近年来,容量小、高通量、模块化、可操作性良好并可进行在线检... 微生物培养是微生物学的起源和根本,成功的微生物培养是进行后续研究的重要前提与基础。但是,微生物培养操作不仅耗费了科研人员大量的精力和时间,还存在着极大的人为误差。近年来,容量小、高通量、模块化、可操作性良好并可进行在线检测的微生物微培养系统得到了微生物学领域的广泛关注。文中介绍了应用于微生物学领域的微培养系统,并按系统构成分类讨论了微生物微培养系统的发展、应用和展望。 展开更多
关键词 微培养系统 微生物培养 自动化培养系统 模块化培养系统 微流控系统
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部