Recombinant Human Dihydrolipoamide S-Succinyltransferase DLST
- Known as:
- Recombinant Human Dihydrolipoamide S-Succinyltransferase DLST
- Catalog number:
- enz-083
- Product Quantity:
- 2
- Category:
- -
- Supplier:
- Prospecbio
- Gene target:
- Recombinant Human Dihydrolipoamide S-Succinyltransferase DLST
Ask about this productRelated genes to: Recombinant Human Dihydrolipoamide S-Succinyltransferase DLST
- Gene:
- DLST NIH gene
- Name:
- dihydrolipoamide S-succinyltransferase
- Previous symbol:
- DLTS
- Synonyms:
- -
- Chromosome:
- 14q24.3
- Locus Type:
- gene with protein product
- Date approved:
- 1989-06-30
- Date modifiied:
- 2016-10-05
- Gene:
- DLSTP1 NIH gene
- Name:
- dihydrolipoamide S-succinyltransferase pseudogene 1
- Previous symbol:
- DLSTP
- Synonyms:
- -
- Chromosome:
- 1p31.1
- Locus Type:
- pseudogene
- Date approved:
- 1994-07-22
- Date modifiied:
- 2016-10-05
Related products to: Recombinant Human Dihydrolipoamide S-Succinyltransferase DLST
Related articles to: Recombinant Human Dihydrolipoamide S-Succinyltransferase DLST
- Carbohydrates are nutrients and important signal molecules in higher plants. Sugar transporters (ST) play important role not only in long-distance transport of sugar, but also in sugar accumulations in sink cells. Longan ( L.) is one of the most important commercial tropical/subtropical evergreen fruit species in Southeast Asia. In this study, a total of 52 longan sugar transporter (DlST) genes were identified and they were divided into eight clades according to phylogenetic analysis. Out of these 52 DlST genes, many plant hormones (e.g., MeJA and gibberellin), abiotic (e.g., cold and drought), and biotic stress responsive element exist in their promoter region. Gene structure analysis exhibited that each of the clades have closely associated gene architectural features based on similar number or length of exons. The numbers of DlSTs, which exhibited alternative splicing (AS) events, in flower bud is more than that in other tissues. Expression profile analysis revealed that ten DlST members may regulate longan flowerbud differentiation. In silico expression profiles in nine longan organs indicated that some DlST genes were tissue specificity and further qRT-PCR analysis suggested that the transcript level of seven DlSTs (, , , , , and ) was consistent with sugar accumulation in fruit, indicating that they might be involved in sugar accumulations during longan fruit development. Our findings will contribute to a better understanding of sugar transporters in woody plant. - Source: PubMed
Publication date: 2020/03/08
Fang TingPeng YuanRao YaLi ShenghaoZeng Lihui