Chieh-Ting Wang
Overview
Explore the profile of Chieh-Ting Wang including associated specialties, affiliations and a list of published articles.
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Articles
6
Citations
148
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0
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Recent Articles
1.
Sheng X, Mahendra R, Wang C, Brunner A
Tree Physiol
. 2023 Mar;
43(6):1042-1054.
PMID: 36892416
Vegetative and reproductive phase change and phenology are economically and ecologically important traits. Trees typically require several years of growth before flowering and, once mature, seasonal control of the transition...
2.
Huang C, Chu F, Huang Y, Tu Y, Hung Y, Tseng Y, et al.
Sci Rep
. 2022 Mar;
12(1):4126.
PMID: 35260700
Chamaecyparis formosensis is an endemic species of Taiwan, threatened from intensive use and illegal felling. An individual identification system for C. formosensis is required to provide scientific evidence for court...
3.
Huang C, Chu F, Liu S, Tseng Y, Huang Y, Ma L, et al.
Appl Plant Sci
. 2018 Sep;
6(8):e01175.
PMID: 30214838
Premise Of The Study: Simple sequence repeat (SSR) and expressed sequence tag (EST)-SSR markers were developed as tools for marker-assisted selection of and for the molecular differentiation of cypress species....
4.
Chen Y, Wang C, Lees D, Wu L
Mitochondrial DNA A DNA Mapp Seq Anal
. 2017 Sep;
29(6):840-845.
PMID: 28872382
A large number of diverse mitogenomic sequences can be obtained more easily and affordably via mitochondrial metagenomics, which generates high-throughput sequences directly from sheared DNA extractions and assembles mitogenomic sequences...
5.
Fernandez D, Wang C, Zheng Y, Adamczyk B, Singhal R, Hall P, et al.
Plant Physiol
. 2014 Jun;
165(4):1591-1603.
PMID: 24948837
Multiple factors, including the MADS-domain proteins AGAMOUS-LIKE15 (AGL15) and AGL18, contribute to the regulation of the transition from vegetative to reproductive growth. AGL15 and AGL18 were previously shown to act...
6.
Mohamed R, Wang C, Ma C, Shevchenko O, Dye S, Puzey J, et al.
Plant J
. 2010 Mar;
62(4):674-88.
PMID: 20202169
Members of the CENTRORADIALIS (CEN)/TERMINAL FLOWER 1 (TFL1) subfamily control shoot meristem identity, and loss-of-function mutations in both monopodial and sympodial herbaceous plants result in dramatic changes in plant architecture....