āļ āļđāļĄāļīāļžāļąāļ’āļ™āđŒ āļ—āļ­āļ‡āļ­āļĒāļđāđˆ
āļœāļđāđ‰āļŠāđˆāļ§āļĒāļĻāļēāļŠāļ•āļĢāļēāļˆāļēāļĢāļĒāđŒ
āļĻāļđāļ™āļĒāđŒāđ€āļ—āļ„āđ‚āļ™āđ‚āļĨāļĒāļĩāļŠāļĩāļ§āļ āļēāļžāđ€āļāļĐāļ•āļĢ āļāļģāđāļžāļ‡āđāļŠāļ™ (āļŠāđˆāļ§āļ™āļāļĨāļēāļ‡) āļĻāļđāļ™āļĒāđŒāđ€āļ—āļ„āđ‚āļ™āđ‚āļĨāļĒāļĩāļŠāļĩāļ§āļ āļēāļžāđ€āļāļĐāļ•āļĢ āļ§āļīāļ—āļĒāļēāđ€āļ‚āļ•āļāļģāđāļžāļ‡āđāļŠāļ™
pumipat.tong@ku.ac.th
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EDUCATION
  • āļ§āļ—.āļ”.āļŠāļĩāļ§āđ€āļ§āļŠāļĻāļēāļŠāļ•āļĢāđŒ, āļˆāļļāļŽāļēāļĨāļ‡āļāļĢāļ“āđŒāļĄāļŦāļēāļ§āļīāļ—āļĒāļēāļĨāļąāļĒ, āđ„āļ—āļĒ, 2559
  • āļ§āļ—.āļĄ.āļŠāļĩāļ§āļŠāļēāļĢāļŠāļ™āđ€āļ—āļĻ , āļĄāļŦāļēāļ§āļīāļ—āļĒāļēāļĨāļąāļĒāđ€āļ—āļ„āđ‚āļ™āđ‚āļĨāļĒāļĩāļžāļĢāļ°āļˆāļ­āļĄāđ€āļāļĨāđ‰āļēāļ˜āļ™āļšāļļāļĢāļĩ , āđ„āļ—āļĒ, 2551
  • āļ§āļ—.āļš.āđ€āļ—āļ„āđ‚āļ™āđ‚āļĨāļĒāļĩāļŠāļĩāļ§āļ āļēāļžāļ—āļēāļ‡āļāļēāļĢāđ€āļāļĐāļ•āļĢ (āđ€āļāļĩāļĒāļĢāļ•āļīāļ™āļīāļĒāļĄāļ­āļąāļ™āļ”āļąāļšāļŦāļ™āļķāđˆāļ‡) , āļĄāļŦāļēāļ§āļīāļ—āļĒāļēāļĨāļąāļĒāđ€āļāļĐāļ•āļĢāļĻāļēāļŠāļ•āļĢāđŒ , āđ„āļ—āļĒ, 2548



RESOURCE
āđāļŦāļĨāđˆāļ‡āļ—āļĩāđˆāļĄāļē
āļˆāļģāļ™āļ§āļ™āļŦāļ™āđˆāļ§āļĒāļ›āļāļīāļšāļąāļ•āļīāļāļēāļĢāļ—āļĩāđˆāđ€āļ‚āđ‰āļēāļĢāđˆāļ§āļĄ 0 āļŦāļ™āđˆāļ§āļĒ āļˆāļģāļ™āļ§āļ™āđ€āļ„āļĢāļ·āđˆāļ­āļ‡āļĄāļ·āļ­āļ§āļīāļˆāļąāļĒ 0 āļŠāļīāđ‰āļ™ āļŠāļ–āļēāļ™āļ—āļĩāđˆāļ›āļāļīāļšāļąāļ•āļīāļ‡āļēāļ™āļ§āļīāļˆāļąāļĒ āļŦāđ‰āļ­āļ‡ 109 103 āđāļĨāļ° 104 āļŠāļąāđ‰āļ™ 1 āļ­āļēāļ„āļēāļĢāļ•āļķāļ āļĻ āļ„āļļāļ“āļŠāļ§āļ™āļŠāļĄ āļˆāļąāļ™āļ—āļĢāļ°āđ€āļ›āļēāļĢāļĒāļ° āļ āļēāļ„āļ§āļīāļŠāļēāļ„āļŦāļāļĢāļĢāļĄāļĻāļēāļŠāļ•āļĢāđŒ
āđāļŠāļ”āļ‡āđ€āļžāļīāđˆāļĄāđ€āļ•āļīāļĄ


āļœāļĨāļ‡āļēāļ™
Works
PROJECT
āļ‡āļēāļ™āļ§āļīāļˆāļąāļĒāļ—āļĩāđˆāļ­āļĒāļđāđˆāļĢāļ°āļŦāļ§āđˆāļēāļ‡āļāļēāļĢāļ”āļģāđ€āļ™āļīāļ™āļāļēāļĢ: 10
āļ‡āļēāļ™āļ§āļīāļˆāļąāļĒāļ—āļĩāđˆāđ€āļŠāļĢāđ‡āļˆāļŠāļīāđ‰āļ™āđāļĨāđ‰āļ§: 29
OUTPUT
āļšāļ—āļ„āļ§āļēāļĄ: 35
āļœāļĨāļ‡āļēāļ™āļ­āļ·āđˆāļ™āđ†: 2
OUTCOME
AWARD
āļ›āļĢāļ°āļāļēāļĻāđ€āļāļĩāļĒāļĢāļ•āļīāļ„āļļāļ“/āļĢāļēāļ‡āļ§āļąāļĨāļ™āļąāļāļ§āļīāļˆāļąāļĒ: 0
āļĢāļēāļ‡āļ§āļąāļĨāļœāļĨāļ‡āļēāļ™āļ§āļīāļˆāļąāļĒ/āļŠāļīāđˆāļ‡āļ›āļĢāļ°āļ”āļīāļĐāļāđŒ: 1
āļĢāļēāļ‡āļ§āļąāļĨāļœāļĨāļ‡āļēāļ™āļ™āļģāđ€āļŠāļ™āļ­āđƒāļ™āļāļēāļĢāļ›āļĢāļ°āļŠāļļāļĄāļ§āļīāļŠāļēāļāļēāļĢ: 1


INTEREST
āļ„āļ§āļēāļĄāļŠāļ™āđƒāļˆ
Bioinfomatics, Genomics, Plant breeding


Expertise Cloud
āļ„āļ§āļēāļĄāđ€āļŠāļĩāđˆāļĒāļ§āļŠāļēāļ
Person Relationship
āļ™āļąāļāļ§āļīāļˆāļąāļĒ
āļ—āļĩāđˆāļĄāļĩāļœāļĨāļ‡āļēāļ™āļĄāļēāļāļ—āļĩāđˆāļŠāļļāļ” 10 āļ„āļ™āđāļĢāļ
Scopus h-index
h-index: 9
# Document title Authors Year Source Cited by
1 Genome-wide association study and genomic prediction for resistance against Streptococcus agalactiae in hybrid red tilapia (Oreochromis spp.) Sukhavachana S., Tongyoo P., Massault C., McMillan N., Leungnaruemitchai A., Poompuang S. 2020
Aquaculture,
525, 735297
31
2 Snake venom metalloproteinases and their peptide inhibitors from Myanmar Russell’s viper venom Yee K., Pitts M., Tongyoo P., Rojnuckarin P., Wilkinson M. 2017
Toxins,
9(1), 15
30
3 Genetic diversity and re-classification of coffee (Coffea canephora Pierre ex A. Froehner) from South Western Nigeria through genotyping-by-sequencing-single nucleotide polymorphism analysis Anagbogu C., Anagbogu C., Anagbogu C., Bhattacharjee R., Ilori C., Tongyoo P., Dada K., Muyiwa A., Gepts P., Beckles D. 2019
Genetic Resources and Crop Evolution,
66(3), pp. 685-696
26
4 Detecting novel genetic variants associated with isoniazid-resistant Mycobacterium tuberculosis Shekar S., Yeo Z., Wong J., Chan M., Ong D., Tongyoo P., Wong S., Lee A., Lee A., Lee A. 2014
PLoS ONE,
9(7), e102383
25
5 Deep proteomic profiling of vasopressin-sensitive collecting duct cells. I. Virtual western blots and molecular weight distributions Yang C., Tongyoo P., Tongyoo P., Emamian M., Sandoval P., Raghuram V., Knepper M. 2015
American Journal of Physiology - Cell Physiology,
309(12), pp. C785-C798
25
6 Biomarkers for refractory lupus nephritis: A microarray study of kidney tissue Benjachat T., Tongyoo P., Tantivitayakul P., Somparn P., Hirankarn N., Prom-On S., Pisitkun P., Leelahavanichkul A., Avihingsanon Y., Avihingsanon Y., Townamchai N. 2015
International Journal of Molecular Sciences,
16(6), pp. 14276-14290
20
7 EnHERV: Enrichment analysis of specific human endogenous retrovirus patterns and their neighboring genes Tongyoo P., Avihingsanon Y., Prom-On S., Mutirangura A., Mhuantong W., Hirankarn N. 2017
PLoS ONE,
12(5), e0177119
19
8 Genome-wide association mapping and genomic prediction of yield-related traits and starch pasting properties in cassava Phumichai C., Phumichai C., Phumichai C., Aiemnaka P., Nathaisong P., Hunsawattanakul S., Hunsawattanakul S., Hunsawattanakul S., Fungfoo P., Rojanaridpiched C., Vichukit V., Kongsil P., Kittipadakul P., Wannarat W., Chunwongse J., Tongyoo P., Kijkhunasatian C., Chotineeranat S., Piyachomkwan K., Wolfe M.D., Jannink J.L., Sorrells M.E. 2021
Theoretical and Applied Genetics
17
9 Analysis of methylation microarray for tissue specific detection Muangsub T., Samsuwan J., Tongyoo P., Kitkumthorn N., Mutirangura A. 2014
Gene,
553(1), pp. 31-41
16
10 Genetic diversity and capsaicinoids content association of Thai chili landraces analyzed by whole genome sequencing-based SNPs Kethom W., Kethom W., Tongyoo P., Tongyoo P., Mongkolporn O., Mongkolporn O. 2019
Scientia Horticulturae,
249, pp. 401-406
8
11 Genetic diversity and population structure of ridge gourd (Luffa acutangula) accessions in a Thailand collection using SNP markers Perez G.A., Tongyoo P., Tongyoo P., Chunwongse J., Chunwongse J., de Jong H., de Jong H., de Jong H., Wongpraneekul A., Sinsathapornpong W., Chuenwarin P., Chuenwarin P. 2021
Scientific Reports,
11(1), 15311
8
12 Development of di-nucleotide microsatellite markers and construction of genetic linkage map in mango (Mangifera indica L.) Chunwongse C., Chunwongse C., Phumichai C., Tongyoo P., Tongyoo P., Juejun N., Juejun N., Chunwongse J., Chunwongse J., Chunwongse J. 2015
Songklanakarin Journal of Science and Technology,
37(2), pp. 119-127
7
13 Optimizing genomic prediction using low-density marker panels for streptococcosis resistance in red tilapia (Oreochromis spp.) Sukhavachana S., Tongyoo P., Luengnaruemitchai A., Poompuang S. 2021
Animal Genetics
6
14 Genome-wide association study revealed genetic loci for resistance to fusarium wilt in tomato germplasm Kawicha P., Kawicha P., Tongyoo P., Tongyoo P., Wongpakdee S., Rattanapolsan L., Duangjit J., Chunwongse J., Chunwongse J., Suwor P., Sangdee A., Thanyasiriwat T., Thanyasiriwat T. 2023
Crop Breeding and Applied Biotechnology,
23(1), e43532311
5
15 Comparative transcriptomics analysis reveals defense mechanisms of Manihot esculenta Crantz against Sri Lanka Cassava MosaicVirus Chaowongdee S., Chaowongdee S., Vannatim N., Malichan S., Kuncharoen N., Tongyoo P., Tongyoo P., Siriwan W. 2024
BMC Genomics,
25(1), 436
3
16 Preliminary Study on Comparative Efficacy of Four Light Sources for Trapping Culicoides spp. (Diptera: Ceratopogonidae) in Prachuap Khiri Khan Province, Thailand Choocherd S., Pattanatanang K., Chimnoi W., Kamyingkird K., Tongyoo P., Tongyoo P., Phasuk J. 2022
Journal of economic entomology,
115(5), pp. 1719-1723
3
17 Comparative Transcriptomic Analysis of Genes in the 20-Hydroxyecdysone Biosynthesis in the Fern Microsorum scolopendria towards Challenges with Foliar Application of Chitosan Sripinyowanich S., Petchsri S., Tongyoo P., Tongyoo P., Lee T.K., Lee S., Cho W.K. 2023
International Journal of Molecular Sciences,
24(3), 2397
3
18 Mutation mapping of a variegated EMS tomato reveals an FtsH-like protein precursor potentially causing patches of four phenotype classes in the leaves with distinctive internal morphology Dechkrong P., Srima S., Sukkhaeng S., Utkhao W., Utkhao W., Thanomchat P., de Jong H., de Jong H., de Jong H., Tongyoo P., Tongyoo P. 2024
BMC Plant Biology,
24(1), 265
2
19 Genetic loci associated with Fusarium wilt resistance in tomato (Solanum lycopersicum L.) discovered by genome-wide association study Thanyasiriwat T., Thanyasiriwat T., Tongyoo P., Tongyoo P., Saman P., Suwor P., Sangdee A., Kawicha P., Kawicha P. 2023
Plant Breeding
1
20 Comparing different statistical models for association mapping and genomic prediction of fruit quality traits in tomato Prateep-Na-Thalang N., Prateep-Na-Thalang N., Tongyoo P., Tongyoo P., Phumichai C., Duangjit J., Duangjit J. 2024
Scientia Horticulturae,
327, 112838
0
21 Evaluation of banana blood disease resistant trait and genetic analysis in Thai banana germplasm: a step towards fertile improved diploid development Kawicha P., Thanyasiriwat T., Rattanapolsan L., Sangdee A., Tongyoo P., Tongyoo P., Jeensae R., Kongsiri N., Theanhom A.A., Phengchang P., Suvittawat K., Wongmaneeroj M., Jamjumrus S., Saradhuldhat P., Boonruangrod R. 2024
Genetic Resources and Crop Evolution,
657916
0
22 Screening for ToLCNDV tolerance in ridge gourd germplasm, inheritance study and SNP marker identification using GWAS based on DArTseq Khaytan N., Perez G.A., Tongyoo P., Tongyoo P., Reanwarakorn K., Chunwongse J., Chunwongse J., Wongpraneekul A., Sinsathapornpong W., Sratongjun M., Khumim K., Chuenwarin P., Chuenwarin P. 2025
Scientia Horticulturae,
339, 113867
0
23 Putative male parent of banana cultivar ‘Pakchong KU 46’ using SNP analysis Boonruangrod R., Tongyoo P., Tongyoo P., Mongkolporn O., Phengchang P., Tanongjid K., Thawornchareon D., Theanhom A.A., Suvittawat K. 2024
Genetic Resources and Crop Evolution,
e0178734
0
24 Characterization of a novel Ty-2a intragenic allele for marker development in tomato yellow leaf curl virus resistance breeding programs of tomato Thongsanit T., Thongsanit T., Chomdej O., Chomdej O., Chunwongse J., Chunwongse J., Tongyoo P., Tongyoo P. 2024
Asia-Pacific Journal of Science and Technology,
29(6), APST-29-06-11
0
25 Unraveling DNA Variations in Genes Underlying Haploid Induction through Genomic Exploration of a Mutagenized Tomato Population Tongyoo P., Tongyoo P., Muthata P., Muthata P., Srima S., Chomdej O., Chomdej O., Dechkrong P. 2025
International Journal of Agriculture and Biosciences,
14(1), pp. 118-126
0
26 Evaluation of diversity, population structure and core collection of Thailand Luffa cylindrica germplasm accessions Perez G.A., Karoojee S., Karoojee S., Tongyoo P., Tongyoo P., Chunwongse J., Chunwongse J., Chuenwarin P., Chuenwarin P. 2022
Agriculture and Natural Resources,
56(3), pp. 455-462
0
27 Corrigendum to “Genetic diversity and capsaicinoids content association of Thai chili landraces analyzed by whole genome sequencing-based SNPs” (Scientia Horticulturae (2019) 249 (401–406), (S0304423819300998), (10.1016/j.scienta.2019.02.022)) Kethom W., Kethom W., Tongyoo P., Tongyoo P., Mongkolporn O., Mongkolporn O. 2019
Scientia Horticulturae,
256, 108625
0
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