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Woei-Jiun Guo

Explore the profile of Woei-Jiun Guo including associated specialties, affiliations and a list of published articles. Areas
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Articles 16
Citations 1224
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Recent Articles
1.
Wu Y, Yu C, Chiu J, Chiang Y, Mitsuda N, Yen X, et al.
Plant Cell Environ . 2023 Dec; 47(4):1084-1098. PMID: 38037476
Beneficial Bacillus subtilis (BS) symbiosis could combat root pathogenesis, but it relies on root-secreted sugars. Understanding the molecular control of sugar flux during colonization would benefit biocontrol applications. The SWEET...
2.
Guo W, Pommerrenig B, Neuhaus H, Keller I
J Plant Physiol . 2023 Aug; 288:154073. PMID: 37603910
Endogenous programs and constant interaction with the environment regulate the development of the plant organism and its individual organs. Sugars are necessary building blocks for plant and organ growth and...
3.
Ko H, Tseng H, Ho L, Wang L, Chang T, Lin A, et al.
Plant Physiol . 2022 Feb; 189(1):344-359. PMID: 35166824
Pollen fertility is critical for successful fertilization and, accordingly, for crop yield. While sugar unloading affects the growth and development of all types of sink organs, the molecular nature of...
4.
Ko H, Ho L, Neuhaus H, Guo W
Plant Physiol . 2021 Oct; 187(4):2230-2245. PMID: 34618023
Tomato (Solanum lycopersium), an important fruit crop worldwide, requires efficient sugar allocation for fruit development. However, molecular mechanisms for sugar import to fruits remain poorly understood. Expression of sugars will...
5.
Guo W, Bundithya W, Goldsbrough P
New Phytol . 2021 Apr; 159(2):369-381. PMID: 33873353
• Expression and regulation of Arabidopsis metallothionein (MT) genes were investigated to examine the functions of MTs in plants. • To examine the tissue-specific expression of MT genes, GUS reporter...
6.
Ho L, Lee Y, Hsieh S, Lin I, Wu Y, Ko H, et al.
Plant Cell Environ . 2020 Jun; 44(1):20-33. PMID: 32583877
Gastrodia elata, a fully mycoheterotrophic orchid without photosynthetic ability, only grows symbiotically with the fungus Armillaria. The mechanism of carbon distribution in this mycoheterotrophy is unknown. We detected high sucrose...
7.
Ho L, Klemens P, Neuhaus H, Ko H, Hsieh S, Guo W
J Exp Bot . 2019 Apr; 70(12):3241-3254. PMID: 30958535
Sugar allocation from source to sink (young) leaves, critical for plant development, relies on activities of plasma membrane sugar transporters. However, the key sugar unloading mechanism to sink leaves remains...
8.
Chen H, Huh J, Yu Y, Ho L, Chen L, Tholl D, et al.
Plant J . 2015 Aug; 83(6):1046-58. PMID: 26234706
Plant roots secrete a significant portion of their assimilated carbon into the rhizosphere. The putative sugar transporter SWEET2 is highly expressed in Arabidopsis roots. Expression patterns of SWEET2-β-glucuronidase fusions confirmed...
9.
Benatti M, Yookongkaew N, Meetam M, Guo W, Punyasuk N, AbuQamar S, et al.
New Phytol . 2014 Mar; 202(3):940-951. PMID: 24635746
Most angiosperm genomes contain several genes encoding metallothionein (MT) proteins that can bind metals including copper (Cu) and zinc (Zn). Metallothionein genes are highly expressed under various conditions but there...
10.
Guo W, Nagy R, Chen H, Pfrunder S, Yu Y, Santelia D, et al.
Plant Physiol . 2014 Jan; 164(2):777-89. PMID: 24381066
Fructose (Fru) is a major storage form of sugars found in vacuoles, yet the molecular regulation of vacuolar Fru transport is poorly studied. Although SWEET17 (for SUGARS WILL EVENTUALLY BE...