数据库中的植物聚戊二醇还原酶

Mohammad Basyuni, R. Hayati, Y. Bimantara, A. Nuryawan, E. Siregar, .. Sumaiyah
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摘要

众所周知,聚戊烯醇和多酚等化学成分可以产生高等植物。本文讨论了从国家生物技术信息中心(NCBI)检索植物聚戊二醇还原酶的数据库(https:/www.ncbi.nlm.nih.gov/)或GQuery。在NCBI数据库中检索了大量有用的数据。在10个数据库中建立了植物聚戊二醇还原酶的结果。所有聚戊二醇还原酶植物数据库,包括源文献、基因、遗传学、蛋白质、基因组和化学特性。值得注意的是,植物聚戊二醇还原酶有完整的信息。文献包括PubMed和PubMed Central。Gene由Gene、GEO Profiles和UniGene组成。植物聚戊二醇还原酶如dbGap和MedGen的遗传学数据可用。蛋白质特征包含四个蛋白质序列。基因组包含一个生物样本和365个核苷酸。化学性质记为3392 BioSystems。本研究为植物聚戊二醇还原酶的生物技术研究提供了必要的信息。
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Plant Polyprenol Reductase in the Database
Chemical constituents such as polyprenols and dolichols are known to generate higher plants. The present document discusses the database search (https:/www.ncbi.nlm.nih.gov/) or GQuery on plant polyprenol reductase from the National Center for Biotechnology Information (NCBI). A amount of useful data was searched for NCBI databases. Results developed for plant polyprenol reductase in 10 databases. All polyprenol reductase plant databases consisting of source literature, genes, genetics, protein, genomes, and chemical characteristics. It is noteworthy that plant polyprenol reductase has complete information. The literature comprised of PubMed and PubMed Central. Gene consisted of Gene, GEO Profiles, and UniGene. Genetics data was available for plant polyprenol reductases such as dbGap and MedGen. Proteins feature contained four protein sequences. Genomes encompassed one BioSample and 365 Nucleotides. The chemicals property denoted 3392 BioSystems. The present study affords indispensable information concerning biotechnology of plant polyprenol reductase.
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