TGMB_2024v14n2

Tree Genetics and Molecular Breeding 2024, Vol.14, No.2, 43-56 http://genbreedpublisher.com/index.php/tgmb 56 Satam H., Joshi K., Mangrolia U., Waghoo S., Zaidi G., Rawool S., Thakare R.P., Banday S., Mishra A., Das G., and Malonia S.K., 2023, Next-generation sequencing technology: current trends and advancements, Biology, 12(7): 997. https://doi.org/10.3390/biology12070997 PMid:37508427 PMCid:PMC10376292 Schneider H., 2023, Integrating genomics and conservation to safeguard plant diversity, Integrative Conservation, 2: 10-18. https://doi.org/10.1002/inc3.15 Shafer A.B., Wolf J.B., Alves P.C., Bergström L., Bruford M.W., Brännström I., Colling G., Dalén L., De Meester L., Ekblom R., Fawcett K.D., Fior S., Hajibabaei M., Hill J.A., Hoezel1 A.R., Höglund J., Jensen E.L., Krause J., Kristensen T.N., Krützen M., McKay J.K., Norman A.J., Ogden R., Österling E.M., Ouborg N.J., Piccolo J., Popović D., Primmer C.R., Reed F.A., Roumet M., Salmona J., Schenekar T., Schwartz M.K., Segelbacher G., Senn H., Thaulow J., Valtonen M., Veale A., Vergeer P., Vijay N., Vilà C., Weissensteiner M., Wennerström L., Wheat C.W., and Zieliński P., 2015, Genomics and the challenging translation into conservation practice, Trends in Ecology and Evolution, 30(2): 78-87. https://doi.org/10.1016/j.tree.2014.11.009 PMid:25534246 Sniezko R., Koch J.L., Liu J., and Romero-Severson J., 2023, Will genomic information facilitate forest tree breeding for disease and pest resistance? Forests, 14(12): 2382. https://doi.org/10.3390/f14122382 Stephan T., Burgess S., Cheng H.H., Danko C., Gill C., Jarvis E., Koepfli K., Koltes J., Lyons E., Ronald P., Ryder, O., Schriml L., Soltis P., Vandewoude S., Zhou H., Ostrander E., and Karlsson E., 2022, Darwinian genomics and diversity in the tree of life, Proceedings of the National Academy of Sciences of the United States of America, 119(4): e2115644119. https://doi.org/10.1073/pnas.2115644119 PMid:35042807 PMCid:PMC8795533 Vilà‐Cabrera A., Martínez‐Vilalta J., and Retana J., 2015, Functional trait variation along environmental gradients in temperate and Mediterranean trees, Global Ecology and Biogeography, 24(12): 1377-1389. https://doi.org/10.1111/geb.12379 Wambugu P., and Henry R., 2022, Supporting in situ conservation of the genetic diversity of crop wild relatives using genomic technologies, Molecular Ecology, 31: 2207-2222. https://doi.org/10.1111/mec.16402 PMid:35170117 PMCid:PMC9303585 Weiss M., Sniezko R., Puiu D., Crepeau M., Stevens K., Salzberg S., Langley C., and De La Torre A.R., 2020, Genomic basis of white pine blister rust quantitative disease resistance and its relationship with qualitative resistance, The Plant Journal, 104(2): 365-376. https://doi.org/10.1111/tpj.14928 PMid:32654344 PMCid:PMC10773528 Zinkgraf M., Meneses N., Whitham T., and Allan G., 2016, Genetic variation in NIN1 and C/VIF1 genes is significantly associated with Populus angustifolia resistance to a galling herbivore, Pemphigus betae, Journal of Insect Physiology, 84: 50-59. https://doi.org/10.1016/j.jinsphys.2015.10.007 PMid:26518288 Zinkgraf M., Zhao S., Canning C., Gerttula S., Lu M., Filkov V., and Groover A., 2020, Evolutionary network genomics of wood formation in a phylogenetic survey of angiosperm forest trees, The New Phytologist, 228(6): 1811-1823. https://doi.org/10.1111/nph.16819 PMid:32696464

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