JUTHAPORN SAENGPRAJAK
Department of Biology, Faculty of Science, Mahasarakham University. Kham Riang, Kantharawichai District, Maha Sarakham 44150, Thailand

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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.
Morphological and genetic identification of novel cryptic freshwater shrimp species (Caridina and Macrobrachium) in Northeastern Thailand using DNA barcoding JUTHAPORN SAENGPRAJAK; EAKAPOL WANGKAHART; CHITCHOL PHALARAKSH; NOPPAKUN PAKDEENARONG
Biodiversitas Journal of Biological Diversity Vol. 26 No. 10 (2025)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d261005

Abstract

Abstract. Saengprajak J, Wangkahart E, Phalaraksh C, Pakdeenarong N. 2025. Morphological and genetic identification of novel cryptic freshwater shrimp species (Caridina and Macrobrachium) in Northeastern Thailand using DNA barcoding. Biodiversitas 26: 4886-4897. The phylogenetics clarifies species identities, reveals cryptic lineages, and assesses saline soils area may suppress cryptic diversity in freshwater prawns. Thus, this study used morphological identification and DNA barcoding to assess species composition and genetic variation of freshwater prawn species in saline and non-saline soil. Specimens were collected from 300 samples across 15 sites (saline-soil areas of Mahasarakham Province and non-saline habitats of Mukdahan Province) and identified based on morphology. Mitochondrial cytochrome C Oxidase I (COI) barcodes were also sequenced for molecular identification. Morphological analysis revealed three species (Macrobrachium lanchesteri, Macrobrachium niphanae, and Caridina macrophora) were found in both Mahasarakham and Mukdahan. In comparison, Caridina gracilirostris was recorded exclusively in Mukdahan, with four species (Macrobrachium lanchesteri, Macrobrachium niphanae, Caridina macrophora, and Caridina gracilirostris), with Mukdahan harboring one additional atyid (Caridina gracilirostris) not found in Mahasarakham. DNA barcoding revealed six distinct genetic lineages, including the four morphologically identified species and two cryptic lineages (Macrobrachium sp. and Caridina sp.) not detectable through morphology. Macrobrachium sintangense was identified by DNA in Mukdahan samples despite being misidentified morphologically. Mukdahan Province showed higher species richness and a lack of soil salinity, whereas saline conditions corresponded with lower diversity. Results demonstrated the effectiveness of DNA barcoding in revealing cryptic diversity and distributional differences influenced by environmental factors. Our findings provide a baseline for freshwater prawn conservation in Northeast Thailand and underscore the importance of integrative taxonomy for biodiversity assessment.