PIYADA THEERAKULPISUT
Department of Biology, Faculty of Science, Khon Kaen University. Mueang Khon Kaen, Khon Kaen 40002, Thailand

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Molecular diversity of rice germplasms from Thailand characterized by different pericarp colors using Inter Simple Sequence Repeat (ISSR) markers JUTHAPORN SAENGPRAJAK; JIRAPA PHETSOM; APHIDECH SANGDEE; PORNTIP ATICHART; PIYADA THEERAKULPISUT
Biodiversitas Journal of Biological Diversity Vol. 25 No. 7 (2024)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d250705

Abstract

Abstract. Saengprajak J, Phetsom J, Sangdee A, Atichart P, Theerakulpisut P. 2024. Molecular diversity of rice germplasms from Thailand characterized by different pericarp colors using Inter Simple Sequence Repeat (ISSR) markers. Biodiversitas 25: 2839-2848. Studying genetic diversity in rice using molecular markers is necessary for varietal identification, better understanding of relationships and evolution, and conserving genetic resources. This study aimed to evaluate the genetic diversity of rice germplasms from Thailand characterized by different pericarp colors using ISSR markers. Thirty-two white and colored rice genotypes were assessed using 16 selected ISSR markers, which generated 179 alleles ranging from 210 to 1,374 bp, averaging 11.19 alleles per locus. The polymorphism percentage ranged from 40% to 100%, averaging 80%. The genetic similarity coefficient ranged from 0.458 to 0.855, while PIC values varied between 0.15 and 0.45, averaging 0.31. ISSR markers show a high Resolving Power (RP) of 12.15 and a Marker Index (MI) of 3.20, indicating their significant discriminatory power and effectiveness in detecting genetic diversity. The dendrogram grouped genotypes into five clusters: Cluster I included 5 red pericarp genotypes, Cluster II had 6 purple-black pericarp genotypes, Cluster III had 2 mixed white and purple-black pericarp genotypes, Cluster IV included 18 white pericarp genotypes, and Cluster V comprised 1 white pericarp genotype. PCA results corresponded to seed coat traits, forming eight grouping patterns similar to dendrogram clusters. These findings show that ISSR markers effectively assess genetic diversity and relationships in rice germplasms, providing valuable information for managing germplasm resources, developing variety-specific markers, and supporting rice breeding programs.
Genetic analysis of brown planthopper resistance in Thai cultivars, local varieties, and wild relatives of rice using molecular markers JUTHAPORN SAENGPRAJAK; JIRAPA PHETSOM; APHIDECH SANGDEE; AJIN RATTANAPAN; ARNUSORN SAENGPRAJAK; THANWANIT THANYASIRIWAT; WUTTIPONG MAHAKHAM; PIYADA THEERAKULPISUT
Biodiversitas Journal of Biological Diversity Vol. 25 No. 12 (2024)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d251223

Abstract

Abstract. Saengprajak J, Phetsom J, Sangdee A, Rattanapan A, Saengprajak A, Thanyasiriwat T, Mahakham W, Theerakulpisut P. 2024. Genetic analysis of brown planthopper resistance in Thai cultivars, local varieties, and wild relatives of rice using molecular markers. Biodiversitas 25: 4870-4877. The brown planthopper [Nilaparvata lugens Stål 1854] is prevalent in Asia as a major insect pest that causes significant damage to rice crops. This study aimed to identify cost-effective, eco-friendly methods for developing BPH (Brown Planthopper)-resistant rice varieties by examining the genetic basis of resistance in 40 rice germplasms, including Thai cultivars, local varieties, and wild relatives. Five DNA markers, including SSR (bph2, Bph3, Bph15, Bph17) and InDel (Bph14) markers, closely linked to major BPH resistance genes, were utilized to evaluate genetic diversity. Ten loci, with an average of 2 alleles per locus and 100% polymorphism, were identified. Of the 35 genotypes analyzed, each genotype contained one to five BPH resistance genes. Allele frequencies ranged from 34.92% to 42.86%, while expected heterozygosity varied between 0.242 (RM463) and 0.367 (RM16626), averaging 0.321. The polymorphic information content (PIC) values ranged from 0.388 to 0.437, with an average of 0.419, indicating moderate polymorphism and effective discriminating power for the selected BPH-specific markers. UPGMA analysis grouped the 40 rice genotypes into three main clusters, distinguishing them into resistant and susceptible groups. Our findings provide valuable information for selecting parental lines with BPH resistance, supporting the integration of marker-assisted selection (MAS) into rice breeding programs to develop BPH-resistant varieties.