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Items: 14


Comparative Genomic Analysis of Rice with Contrasting Photosynthesis and Grain Production under Salt Stress.

Lekklar C, Suriya-Arunroj D, Pongpanich M, Comai L, Kositsup B, Chadchawan S, Buaboocha T.

Genes (Basel). 2019 Jul 25;10(8). pii: E562. doi: 10.3390/genes10080562.


Genome-wide association study for salinity tolerance at the flowering stage in a panel of rice accessions from Thailand.

Lekklar C, Pongpanich M, Suriya-Arunroj D, Chinpongpanich A, Tsai H, Comai L, Chadchawan S, Buaboocha T.

BMC Genomics. 2019 Jan 22;20(1):76. doi: 10.1186/s12864-018-5317-2.


Rice Overexpressing OsNUC1-S Reveals Differential Gene Expression Leading to Yield Loss Reduction after Salt Stress at the Booting Stage.

Boonchai C, Udomchalothorn T, Sripinyowanich S, Comai L, Buaboocha T, Chadchawan S.

Int J Mol Sci. 2018 Dec 7;19(12). pii: E3936. doi: 10.3390/ijms19123936.


Downstream components of the calmodulin signaling pathway in the rice salt stress response revealed by transcriptome profiling and target identification.

Yuenyong W, Chinpongpanich A, Comai L, Chadchawan S, Buaboocha T.

BMC Plant Biol. 2018 Dec 5;18(1):335. doi: 10.1186/s12870-018-1538-4.


Two-State Co-Expression Network Analysis to Identify Genes Related to Salt Tolerance in Thai rice.

Suratanee A, Chokrathok C, Chutimanukul P, Khrueasan N, Buaboocha T, Chadchawan S, Plaimas K.

Genes (Basel). 2018 Nov 29;9(12). pii: E594. doi: 10.3390/genes9120594.


Data in support of photosynthetic responses in a chromosome segment substitution line of 'Khao Dawk Mali 105' rice at seedling stage.

Chutimanukul P, Kositsup B, Plaimas K, Buaboocha T, Siangliw M, Toojinda T, Comai L, Chadchawan S.

Data Brief. 2018 Oct 3;21:307-312. doi: 10.1016/j.dib.2018.09.128. eCollection 2018 Dec.


High Performance of Photosynthesis and Osmotic Adjustment Are Associated With Salt Tolerance Ability in Rice Carrying Drought Tolerance QTL: Physiological and Co-expression Network Analysis.

Nounjan N, Chansongkrow P, Charoensawan V, Siangliw JL, Toojinda T, Chadchawan S, Theerakulpisut P.

Front Plant Sci. 2018 Aug 6;9:1135. doi: 10.3389/fpls.2018.01135. eCollection 2018.


Salt stress in rice: multivariate analysis separates four components of beneficial silicon action.

Lekklar C, Chadchawan S, Boon-Long P, Pfeiffer W, Chaidee A.

Protoplasma. 2019 Mar;256(2):331-347. doi: 10.1007/s00709-018-1293-2. Epub 2018 Aug 10.


OsNucleolin1-L Expression in Arabidopsis Enhances Photosynthesis via Transcriptome Modification under Salt Stress Conditions.

Udomchalothorn T, Plaimas K, Sripinyowanich S, Boonchai C, Kojonna T, Chutimanukul P, Comai L, Buaboocha T, Chadchawan S.

Plant Cell Physiol. 2017 Apr 1;58(4):717-734. doi: 10.1093/pcp/pcx024.


Salt-responsive mechanisms in chromosome segment substitution lines of rice (Oryza sativa L. cv. KDML105).

Nounjan N, Siangliw JL, Toojinda T, Chadchawan S, Theerakulpisut P.

Plant Physiol Biochem. 2016 Jun;103:96-105. doi: 10.1016/j.plaphy.2016.02.038. Epub 2016 Mar 2.


Effect of silver nanoparticles on rice (Oryza sativa L. cv. KDML 105) seed germination and seedling growth.

Thuesombat P, Hannongbua S, Akasit S, Chadchawan S.

Ecotoxicol Environ Saf. 2014 Jun;104:302-9. doi: 10.1016/j.ecoenv.2014.03.022. Epub 2014 Apr 15.


Overexpression of a partial fragment of the salt-responsive gene OsNUC1 enhances salt adaptation in transgenic Arabidopsis thaliana and rice (Oryza sativa L.) during salt stress.

Sripinyowanich S, Chamnanmanoontham N, Udomchalothorn T, Maneeprasopsuk S, Santawee P, Buaboocha T, Qu LJ, Gu H, Chadchawan S.

Plant Sci. 2013 Dec;213:67-78. doi: 10.1016/j.plantsci.2013.08.013. Epub 2013 Sep 7.


Cell specific, cross-species expression of myrosinases in Brassica napus, Arabidopsis thaliana and Nicotiana tabacum.

Thangstad OP, Gilde B, Chadchawan S, Seem M, Husebye H, Bradley D, Bones AM.

Plant Mol Biol. 2004 Mar;54(4):597-611.


Guard cell- and phloem idioblast-specific expression of thioglucoside glucohydrolase 1 (myrosinase) in Arabidopsis.

Husebye H, Chadchawan S, Winge P, Thangstad OP, Bones AM.

Plant Physiol. 2002 Apr;128(4):1180-8.

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