Asian Journal of Plant Sciences, 2008, 7(1), 60-66.
Geographically, different rice ecosystems are found throughout the various regions of Thailand and since ancient times, traditional upland and lowland rice cultivars from these regions have played a key role in both production as a staple food and rice germplasm for variety improvement. In this study, a polymorphism of chloroplast DNA and the physiological marker of 74 upland and lowland rice accessions were collected and examined from all regions of the country. Based on the results of the phenol reaction, the hulls of all upland rice cultivars from the northern region of Thailand, but not those from the northeastern region, showed unchanged color of the hulls when soaked in a 1.5% phenol solution and were scored as positive (Ph–). Lowland rice cultivars from other regions in Thailand turned to black of hull color (Ph+). Upland rice from the Northern and northeastern regions carried Non-Deletion (ND) type ORF100, but only a few lowland rice samples from the central region carried the ND type. Most of the lowland rice cultivars showed deletion type (D type) of the region. Six plastid subtype ID sequences (6C7A, 7C7A, 7C6A, 8C8A, 9C7A and 9C8A) were found in the collected samples. Upland rice from both the northern and northeastern regions carried three (6C7A, 7C7A and 7C6A) PS-ID sequences. The subtype 8C8A was not found in the northern region samples, but predominated in the northeastern samples. The PS-ID sequences of upland (6C7A and 7C6A) and lowland (8C8A) black rice cultivars were different, suggesting that this molecular marker is useful in terms of DNA marker-assisted selection for black rice variety improvement.
ASCI-ID: 7-1288
Asian Journal of Plant Sciences, 2011, 10(4), 245-254.
Genetic Comparisons of Landrace Rice Accessions by Morphological and RAPDs TechniquesAsian Journal of Plant Sciences, 2007, 6(4), 653-666.
Ascertain the Effect of PEG and Exogenous ABA on Rice Growth at Germination Stage and Their Contribution to Selecting Drought Tolerant GenotypesAsian Journal of Plant Sciences, 2007, 6(4), 684-687.
Identification of Differentially Expressed Proteins Associated with Chlorophyll-Deficient Mutant RiceAsian Journal of Plant Sciences, 2009, 8(5), 344-352.
Evaluation of the Growth and Yield of Upland Rice Varieties to Drought StressAsian Journal of Plant Sciences, 2023, 22(3), 465-472.
Screening Rice Lines Tolerant to Low Temperature at the Germination Stage Using Thermogradient barAsian Journal of Plant Sciences, 2022, 21(4), 677-684.
Pakistan Journal of Biological Sciences, 2021, 24(7), 748. DOI: 10.3923/pjbs.2021.748.755
Seed morphological traits and genotypic diversity of weedy rice (Oryza sativa f. spontanea) populations found in the Thai Hom Mali rice fields of north‐eastern ThailandWeed Biology and Management, 2009, 9(1), 1. DOI: 10.1111/j.1445-6664.2008.00312.x
Diversity of Heading date 1 (Hd1) gene that conditions flowering time in traditional tropical japonica and traditional indica rice from ThailandIndian Journal of Genetics and Plant Breeding (The), 2024, 84(03), . DOI: 10.31742/ISGPB.84.3.9