@ARTICLE{TreeBASE2Ref24178,
author = {Hwan Su Hwang and Hyoshin Lee and Yong Eui Choi},
title = {Transcriptomic analysis of Siberian ginseng (Eleutherococcus senticosus) to discover genes involved in saponin biosynthesis},
year = {2015},
keywords = {Cytochrome P450, UDP-glycosyltransferase, saponin, transcriptome analysis, de novo sequencing, next-generation sequencing, Eleutherococcus senticosus},
doi = {},
url = {http://},
pmid = {},
journal = {BioMed Central Genomics},
volume = {},
number = {},
pages = {},
abstract = {Background
Eleutherococcus senticosus, Siberian ginseng, is a highly valued woody medicinal plant belonging to the family Araliaceae. E. senticosus produces a rich variety of saponins such as oleanane-type, noroleanane-type, 29-hydroxyoleanan-type, and lupane-type saponins. Genomic or transcriptomic approaches have not been used to investigate the saponin biosynthetic pathway in this plant.
Result
In this study, de novo sequencing was performed to select candidate genes involved in the saponin biosynthetic pathway. A half-plate 454 pyrosequencing run produced 627,923 high-quality reads with an average sequence length of 422 bases. De novo assembly generated 72,811 unique sequences, including 15,217 contigs and 57,594 singletons. Approximately 48,300 (66.3%) unique sequences were annotated using BLAST similarity searches. All of the mevalonate pathway genes for saponin biosynthesis starting from acetyl-CoA were isolated. Moreover, 206 reads of cytochrome P450 (CYP) and 145 reads of uridine diphosphate glycosyltransferase (UGT) sequences were isolated. Based on methyl jasmonate (MeJA) treatment and real-time PCR (qPCR) analysis, 3 CYPs and 3 UGTs were finally selected as candidate genes 1 involved in the saponin biosynthetic pathway.
Conclusions
The identified sequences associated with saponin biosynthesis will facilitate the study of the functional genomics of saponin biosynthesis and genetic engineering of E. senticosus.}
}
Matrix 30068 of Study 17087

Citation title:
"Transcriptomic analysis of Siberian ginseng (Eleutherococcus senticosus) to discover genes involved in saponin biosynthesis".

Study name:
"Transcriptomic analysis of Siberian ginseng (Eleutherococcus senticosus) to discover genes involved in saponin biosynthesis".

This study is part of submission 17087
(Status: Published).
Matrices
Title: Eleutherococcus senticosus UGTs amino acid sequences
Download all Row Segment Metadata
Rows
|
Taxon Label |
Row Segments |
Characters 1?–30 |
| Barbarea vulgaris UGT73C10 |
View
|
---MVSEITHKSYPLHFVLFPFMAQGHMIP |
| Barbarea vulgaris UGT73C11 |
View
|
---MVSEITHKSYPLHFVLFPFMAQGHMIP |
| Barbarea vulgaris UGT73C12 |
View
|
---MVSEITHKSYPLHFVLFPFMAQGHMIP |
| Barbarea vulgaris UGT73C13 |
View
|
---MVSEITHKSYPLHFVLFPFMAQGHMIP |
| Eleutherococcus senticosus UGT-3 |
(none)
|
------------------------------ |
| Glycine max UGT73P2 |
View
|
-----ME--KKKGELKSIFLPFLSTSHIIP |
| Medicago truncatula UGT73K1 |
View
|
-----MG--TESKPLKIYMLPFFAQGHLIP |
| Medicago truncatula UGT73F3 |
View
|
-----MEGVEVEQPLKVYFIPFLASGHMIP |
| Glycine max UGT73F2 |
View
|
-----MD--LQQRPLKLHFIPYLSPGHVIP |
| Glycine max UGT73F4 |
View
|
-----MD--LQQRPLKLHFIPYLSPGHVIP |
| Glycine max UGT91H4 |
View
|
MDSVALNGKSNDKPLHVAMLPWLAMGHIYP |
| Vaccaria hispanica UGT74M1 |
View
|
------MSNNENNATQVIVLPYHGQGHMNT |
| Medicago truncatula UGT71G1 |
View
|
-----MSMSDINKNSELIFIPAPGIGHLAS |
| Eleutherococcus senticosus UGT-10 |
(none)
|
-EVVANCINNTNSKPHAVCVPLPFSTHINH |
| Arabidopsis thaliana UGT85A4 |
View
|
---MEQHGGSSSQKPHAMCIPYPAQGHINP |
| Eleutherococcus senticosus UGT-11 |
(none)
|
------------------------------ |
Columns
None of the columns has a description.