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Yuichi Tada

Explore the profile of Yuichi Tada including associated specialties, affiliations and a list of published articles. Areas
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Articles 23
Citations 299
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Recent Articles
11.
Tada Y, Endo C, Katsuhara M, Horie T, Shibasaka M, Nakahara Y, et al.
Plant Cell Physiol . 2018 Oct; 60(1):176-187. PMID: 30325438
Class II high-affinity potassium transporters (HKTs) have been proposed to mediate Na+-K+ co-transport in plants, as well as Na+ and K+ homeostasis under K+-starved and saline environments. We identified class...
12.
Mansouri M, Naghavi M, Alizadeh H, Mohammadi-Nejad G, Mousavi S, Hosseini Salekdeh G, et al.
Funct Integr Genomics . 2018 Jun; 19(1):13-28. PMID: 29931612
Aegilops tauschii is the diploid progenitor of the bread wheat D-genome. It originated from Iran and is a source of abiotic stress tolerance genes. However, little is known about the...
13.
Yamamoto N, Garcia R, Suzuki T, Solis C, Tada Y, Venuprasad R, et al.
Rice (N Y) . 2018 May; 11(1):33. PMID: 29766351
Background: Increasing rice demand is one of the consequences of the steadily improving socio-economic status of the African countries. New Rice for Africa (NERICA), which are interspecific hybrids between Asian...
14.
Kazama D, Itakura M, Kurusu T, Mitsuda N, Ohme-Takagi M, Tada Y
Plants (Basel) . 2016 May; 2(4):769-85. PMID: 27137403
We produced transgenic Arabidopsis plants that express chimeric genes for transcription factors converted to dominant repressors, using Chimeric REpressor gene-Silencing Technology (CRES-T), and evaluated the salt tolerance of each line....
15.
Kurusu T, Kuchitsu K, Tada Y
Front Plant Sci . 2015 Jun; 6:427. PMID: 26113854
Salinity stress, which induces both ionic and osmotic damage, impairs plant growth and causes severe reductions in crop yield. Plants are equipped with defense responses against salinity stress such as...
16.
Yamamoto N, Takano T, Tanaka K, Ishige T, Terashima S, Endo C, et al.
Front Plant Sci . 2015 May; 6:241. PMID: 25954282
The turf grass Sporobolus virginicus is halophyte and has high salinity tolerance. To investigate the molecular basis of its remarkable tolerance, we performed Illumina high-throughput RNA sequencing on roots and...
17.
Tada Y, Komatsubara S, Kurusu T
AoB Plants . 2014 Jul; 6. PMID: 25024277
Understanding the mechanisms used by halophytic members of the Poaceae to cope with salt stress will contribute to the knowledge necessary to genetically engineer salt-tolerant crops. In this study, we...
18.
Kazama D, Kurusu T, Mitsuda N, Ohme-Takagi M, Tada Y
Plant Signal Behav . 2014 Mar; 9(3):e28211. PMID: 24614501
Arabidopsis plants transformed with a chimeric repressor for 6 transcription factors (TFs), including ADA2b, Msantd, DDF1, DREB26, AtGeBP, and ATHB23, that were converted by Chimeric REpressor gene Silencing Technology (CRES-T),...
19.
Satoh E, Tada Y, Matsuhisa F
Neurol Res . 2011 Nov; 33(9):899-907. PMID: 22080989
Objectives: Our previous study showed that acute restraint stress enhances depolarization-induced increases in intrasynaptosomal free calcium (Ca(2+)) concentration ([Ca(2+)](i)) and Ca(2+)-dependent glutamate release in mouse cerebrocortical nerve terminals (synaptosomes). In...
20.
Nishio A, Kawakami T, Mitsuhashi Y, Hayasaki K, Kiyama M, Tada Y, et al.
Neurol Med Chir (Tokyo) . 2009 Dec; 49(12):604-7. PMID: 20035138
A 61-year-old woman was admitted for head injury after a traffic accident. Two months later, she developed abducens nerve palsy, chemosis, and pulsatile tinnitus. Right internal carotid angiography demonstrated a...