PGT_2026v17n2

Plant Gene and Trait 2026, Vol.17, No.2, 112-126 http://genbreedpublisher.com/index.php/pgt 125 Conflict of Interest Disclosure The authors affirm that this research was conducted without any commercial or financial relationships that could be construed as a potential conflict of interest. References Alves G., Hoshino R.T., Tejo D.P., Pedro S.G., Takane R.J., and De Faria R.T., 2024, Calcium fertilization on the Phalaenopsis spp. cultivation (Orchidaceae), Journal of Plant Nutrition, 47(20): 3860-3867. https://doi.org/10.1080/01904167.2024.2387142 Badriah D.S., Pramanik D., Kartikaningrum S., Dewanti M., Mawaddah M., Suryawati S., Fibrianty E., Muharam A., and Budiarto K., 2024, Progeny evaluation from the crossing of novelty-type Phalaenopsis I Hsin Bee×Phalaenopsis pulcherrima var. champorensis, Sains Malaysiana, 53(2): 249-265. https://doi.org/10.17576/jsm-2024-5302-02 Bidarnamani F., Mohkami Z., and Karimian M., 2024, Pollination phenotypes in Phalaenopsis crosses: guiding selection for optimal breeding, Journal of Horticultural Sciences, 19(2): 3401. https://doi.org/10.24154/jhs.v19i2.3401 Cembrowska-Lech D., Krzemińska A., Miller T., Nowakowska A., Adamski C., Radaczyńska M., Mikiciuk G., and Mikiciuk M., 2023, An integrated multi-omics and artificial intelligence framework for advance plant phenotyping in horticulture, Biology, 12(10): 1298. https://doi.org/10.3390/biology12101298 Chen J.M., Zhu X.Y., Zheng R.Y., Tong Y., Peng Y.K., Xie K., Su Q.L., Huang R., Zhan S., Shen M., Ahmad S., Zhao K., Peng D., and Zhou Y., 2024, Orchestrating of native Phalaenopsis flower scents lighted the way through artificial selective breeding partiality in the current resource utilization, Industrial Crops and Products, 217: 118850. https://doi.org/10.1016/j.indcrop.2024.118850 Farooq M.A., Gao S., Hassan M.A., Huang Z., Rasheed A., Hearne S., Prasanna B.M., Li X., and Li H., 2024, Artificial intelligence in plant breeding, Trends in Genetics, 40(10): 891-908. https://doi.org/10.1016/j.tig.2024.07.001 Fauzia L., Siregar R., and Jufri M., 2023, Analysis of consumer preference for purchasing ornamental plants, International Journal of Research and Review, 10(2): 596-601. https://doi.org/10.52403/ijrr.20230271 Gabellini S., and Scaramuzzi S., 2022, Evolving consumption trends marketing strategies and governance settings in ornamental horticulture: a grey literature review, Horticulturae, 8(3): 234. https://doi.org/10.3390/horticulturae8030234 Gawenda I., Schröder-Lorenz B., and Debener B., 2012, Markers for ornamental traits in Phalaenopsis orchids: population structure linkage disequilibrium and association mapping, Molecular Breeding, 30(1): 305-316. https://doi.org/10.1007/s11032-011-9620-8 Guan Y., Zhang Q., Zhang T., Li M., Ai Y., Zhai J., Lan S., Liu Z., Wu S., and Peng D., 2025, Transcriptome analysis reveals the mechanisms underlying petal growth during the flower opening process in Phalaenopsis orchids, BMC Plant Biology, 25: 67. https://doi.org/10.1186/s12870-025-06713-5 Han C.J., Dong F., Qi Y., Wang Y.N., Zhu J., Li B.H., Zhang L.J., LüX.H., and Wang J.H., 2025, The breeding cultivation and potential applications of ornamental orchids with a focus on Phalaenopsis-a brief review, Plants, 14(11): 1689. https://doi.org/10.3390/plants14111689 Hartati S., and Samanhudi S., 2024, Phalaenopsis orchid hybrid diversity based on flower and leaves morphology, International Journal on Advanced Science Engineering and Information Technology, 14(4): 1327. https://doi.org/10.18517/ijaseit.14.4.20070 Hsu C.C., Chen S.Y., Chiu S.J., Lai C.Y., Lai P.H., Shehzad T., Wu W.L., Chen W.H., Paterson A.H., and Chen H.H., 2022, High-density genetic map and genome-wide association studies of aesthetic traits in Phalaenopsis orchids, Scientific Reports, 12(1): 3346. https://doi.org/10.1038/s41598-022-07318-w Iiyama C., Vilcherrez-Atoche J., GermanàM., Vendrame W., and Cardoso J., 2024, Breeding of ornamental orchids with focus on Phalaenopsis: current approaches tools and challenges for this century, Heredity, 132(4): 163-178. https://doi.org/10.1038/s41437-024-00671-8 Indraloka A.B., and Rahayu S., 2022, Variasi fenotip pada bunga dan labellum 15 anggrek Phalaenopsis hibrida (Orchidaceae), Agrosaintifika, 5(1): 3089, https://doi.org/10.32764/agrosaintifika.v5i1.3089 Kaya C., 2025, Optimizing crop production with plant phenomics through high-throughput phenotyping and AI in controlled environments, Food and Energy Security, 14(1): e70050. https://doi.org/10.1002/fes3.70050 Lai Y.C., Chen S.F., Wu Y.P., Chen W.H., Chen H.H., Lin Y.S., Lin T.Y., Lin T.Y., and Kao C.Y., 2024, Genetic profiles and phenotypic patterns in Taiwanese Phalaenopsis orchids: a two-step phenotype and genotype strategy using modified genetic distance algorithms, Frontiers in Plant Science, 15: 1416886. https://doi.org/10.3389/fpls.2024.1416886

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