TGMB_2024v14n3

Tree Genetics and Molecular Breeding 2024, Vol.14, No.3, 119-131 http://genbreedpublisher.com/index.php/tgmb 130 Gao Y., Liu J., Yang F., Zhang G., Wang D., Zhang L., Ou Y., and Yao Y., 2019, The WRKY transcription factor WRKY8 promotes resistance to pathogen infection and mediates drought and salt stress tolerance in Solanum lycopersicum, Physiologia Plantarum, 168(1): 98-117. https://doi.org/10.1111/ppl.12978 PMid:31017672 Gautam S., Timilsina S., and Shrestha M., 2021, The effects of forest management activities on genetic diversity of forest trees, Indonesian Journal of Social and Environmental Issues (IJSEI), 2(2): 110-118. https://doi.org/10.47540/ijsei.v2i2.211 Grattapaglia D., Silva-Junior O., Resende R., Cappa E., Müller B., Tan B., Isik F., Ratcliffe B., and El-Kassaby Y., 2018, Quantitative genetics and genomics converge to accelerate forest tree breeding, Frontiers in Plant Science, 9: 1693. https://doi.org/10.3389/fpls.2018.01693 PMid:30524463 PMCid:PMC6262028 Guevara-Escudero M., Osorio A., and Cortés A., 2021, Integrative pre-breeding for biotic resistance in forest trees, Plants, 10(10): 2022. https://doi.org/10.3390/plants10102022 PMid:34685832 PMCid:PMC8541610 He F., Shi Y., Zhao Q., Zhao K., Cui X., Chen L., Yang H., Zhang F., Mi J., Huang J., and Wan X., 2021, Genome-wide investigation and expression profiling of polyphenol oxidase (PPO) family genes uncover likely functions in organ development and stress responses in Populus trichocarpa, BMC Genomics, 22: 731. https://doi.org/10.1186/s12864-021-08028-9 PMid:34625025 PMCid:PMC8501708 Heer K., Behringer D., Piermattei A., Piermattei A., Bässler C., Brandl R., Fady B., Jehl H., Liepelt S., Lorch S., Piotti A., Vendramin G., Weller M., Ziegenhagen B., Büntgen U., Büntgen U., and Opgenoorth L., 2018, Linking dendroecology and association genetics in natural populations: stress responses archived in tree rings associate with SNP genotypes in silver fir (Abies alba Mill.), Molecular Ecology, 27: 1428-1438. https://doi.org/10.1111/mec.14538 PMid:29443422 Huang W., 2019, The impact of the genetically modified crop’s value on the sustainability of an ecosystem’s biomass, Applied Ecology and Environmental Research, 17(6): 14375-14390. https://doi.org/10.15666/aeer/1706_1437514390 Ijaz S., Haq I., Khan I., Ali H., Kaur S., and Razzaq H., 2022, Identification of resistance gene analogs of the NBS-LRR family through transcriptome probing and in silico prediction of the expressome of Dalbergia sissoo under dieback disease stress, Frontiers in Genetics, 13: 1036029. https://doi.org/10.3389/fgene.2022.1036029 PMid:36276980 PMCid:PMC9585183 Juarez J., Silva E., Silva N., Silva-Rocha R., and Guazzaroni M., 2023, Identification and functional analysis of novel stress-resistance genes from metagenomes of extreme environments, bioRxiv, (2023): 2023-06. https://doi.org/10.1101/2023.06.07.544099 Kelly L., Plumb W., Carey D., Mason M., Cooper E., Crowther W., Whittemore A., Rossiter S., Koch J., and Buggs R., 2019, Genes for ash tree resistance to an insect pest identified via comparative genomics, bioRxiv, (2019): 772913. https://doi.org/10.1101/772913 MacDonald C., Colombo S., and Arts M., 2018, Genetically engineered oil seed crops and novel terrestrial nutrients: ethical considerations, Science and Engineering Ethics, 25: 1485-1497. https://doi.org/10.1007/s11948-018-0074-9 PMid:30465298 Metheringham C., Plumb W., Stocks J., Kelly L., Gorriz M., Moat J., Buggs R., and Nichols R., 2022, Rapid polygenic adaptation in a wild population of ash trees under a novel fungal epidemic, bioRxiv, (2022): 2022-08. https://doi.org/10.1101/2022.08.01.502033 Naidoo S., Slippers B., Plett J., Coles D., and Oates C., 2019, The road to resistance in forest trees, Frontiers in Plant Science, 10: 273. https://doi.org/10.3389/fpls.2019.00273 PMid:31001287 PMCid:PMC6455082 Polle A., Chen S., Eckert C., and Harfouche A., 2019, Engineering drought resistance in forest trees, Frontiers in Plant Science, 9: 1875. https://doi.org/10.3389/fpls.2018.01875 PMid:30671067 PMCid:PMC6331418 Przybylski P., Mohytych V., Rutkowski P., Tereba A., Tyburski Ł., and Fyałkowska K., 2021, Relationships between some biodiversity indicators and crown damage of Pinus sylvestris L. in natural old growth pine forests, Sustainability, 13(3): 1239. https://doi.org/10.3390/SU13031239 Ren Z., He S., Zhou Y., Zhao N., Jiang T., Zhai H., and Liu Q., 2020, A sucrose non-fermenting-1-related protein kinase-1 gene, IbSnRK1, confers salt, drought and cold tolerance in sweet potato, Crop Journal, 8: 905-917. https://doi.org/10.1016/j.cj.2020.04.010

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