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1.
Integrative multi-omics analysis identifies genetically supported druggable targets and immune cell specificity for myasthenia gravis.
J Transl Med
; 22(1): 302, 2024 Mar 24.
Artículo
en Inglés
| MEDLINE | ID: mdl-38521921
2.
Integrative transcriptome analysis identifies new oxidosqualene cyclase genes involved in ginsenoside biosynthesis in Jilin ginseng.
Genomics
; 113(4): 2304-2316, 2021 07.
Artículo
en Inglés
| MEDLINE | ID: mdl-34048908
3.
Basic leucine zipper (bZIP) transcription factor genes and their responses to drought stress in ginseng, Panax ginseng C.A. Meyer.
BMC Genomics
; 22(1): 316, 2021 May 01.
Artículo
en Inglés
| MEDLINE | ID: mdl-33932982
4.
Characteristics of RNA alternative splicing and its potential roles in ginsenoside biosynthesis in a single plant of ginseng, Panax ginseng C.A. Meyer.
Mol Genet Genomics
; 296(4): 971-983, 2021 Jul.
Artículo
en Inglés
| MEDLINE | ID: mdl-34008042
5.
Genetic and molecular dissection of ginseng (Panax ginseng Mey.) germplasm using high-density genic SNP markers, secondary metabolites, and gene expressions.
Front Plant Sci
; 14: 1165349, 2023.
Artículo
en Inglés
| MEDLINE | ID: mdl-37575919
6.
Genome-wide analysis of the C2H2 zinc finger protein gene family and its response to salt stress in ginseng, Panax ginseng Meyer.
Sci Rep
; 12(1): 10165, 2022 06 17.
Artículo
en Inglés
| MEDLINE | ID: mdl-35715520
7.
Structural variation, functional differentiation and expression characteristics of the AP2/ERF gene family and its response to cold stress and methyl jasmonate in Panax ginseng C.A. Meyer.
PLoS One
; 15(3): e0226055, 2020.
Artículo
en Inglés
| MEDLINE | ID: mdl-32176699
8.
Transcriptome analysis identifies strong candidate genes for ginsenoside biosynthesis and reveals its underlying molecular mechanism in Panax ginseng C.A. Meyer.
Sci Rep
; 9(1): 615, 2019 01 24.
Artículo
en Inglés
| MEDLINE | ID: mdl-30679448
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