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Genes|September 27, 2019
Comparison between the Transcriptomes of 'KDML105' Rice and a Salt-Tolerant Chromosome Segment Substitution LineNopphawitchayaphong Khrueasan, Panita Chutimanukul, Kitiporn Plaimas, et al.
Plant Molecular Biology|August 19, 2004
Cell specific, cross-species expression of myrosinases in Brassica napus, Arabidopsis thaliana and Nicotiana tabacumOle Petter Thangstad, Bodil Gilde, Supachitra Chadchawan, et al.
Data in Brief|October 27, 2018
Data in support of photosynthetic responses in a chromosome segment substitution line of 'Khao Dawk Mali 105' rice at seedling stagePanita Chutimanukul, Boonthida Kositsup, Kitiporn Plaimas, et al.
Plant & Cell Physiology|February 17, 2017
OsNucleolin1-L Expression in Arabidopsis Enhances Photosynthesis via Transcriptome Modification under Salt Stress ConditionsThanikarn Udomchalothorn, Kitiporn Plaimas, Siriporn Sripinyowanich, et al.
International Journal of Molecular Sciences|February 15, 2022
Identification of a Negative Regulator for Salt Tolerance at Seedling Stage via a Genome-Wide Association Study of Thai Rice PopulationsThammaporn Kojonna, Thiti Suttiyut, Nopphakhun Khunpolwattana, et al.
BMC Genomics|January 24, 2019
Genome-wide association study for salinity tolerance at the flowering stage in a panel of rice accessions from ThailandChakkree Lekklar, Monnat Pongpanich, Duangjai Suriya-Arunroj, et al.
Plants (Basel, Switzerland)|May 14, 2022
Role of <i>LOC_Os01g68450</i>, Containing DUF2358, in Salt Tolerance Is Mediated via Adaptation of Absorbed Light Energy DissipationChutarat Punchkhon, Panita Chutimanukul, Ratchata Chokwiwatkul, et al.
Frontiers in Plant Science|September 13, 2021
Combining Genome and Gene Co-expression Network Analyses for the Identification of Genes Potentially Regulating Salt Tolerance in RicePanita Chutimanukul, Triono Bagus Saputro, Puriphot Mahaprom, et al.
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