GAB_2024v15n2

Genomics and Applied Biology 2024, Vol.15, No.2, 75-88 http://bioscipublisher.com/index.php/gab 87 Jin C., Li Z., Li Y., Wang S., Li L. and Liu M., 2020, Update of genetic linkage map and QTL analysis for growth traits in Eucommia ulmoides Oliver, Forests, 11(3): 311. Jin C., Li Z., Li Y., Wang S., Li L., Liu M. and Ye J., 2020, Transcriptome analysis of terpenoid biosynthetic genes and simple sequence repeat marker screening in Eucommia ulmoides, Molecular Biology Reports, 47: 1979-1990. Kim B.H., Park K.S. and Chang I.M., 2009, Elucidation of anti-inflammatory potencies of Eucommia ulmoides bark and Plantago asiatica seeds, Journal of medicinal food, 12(4): 764-769. Lamichhaney S., Card D.C., Grayson P., Tonini J.F.R., Bravo G.A., Näpflin K., Termignoni-García F., Torres C., Burbrink F., Clarke J.A., Sackton T.B., and Edwards S.V., 2019, Integrating natural history collections and comparative genomics to study the genetic architecture of convergent evolution, Philosophical Transactions of the Royal Society B, 374(1777): 20180248. https://doi.org/10.1098/rstb.2018.0248 Li Y., Wang D.W., Li Z.Q., Wei J.K., Jin C.F., and Liu M.H., 2014, A molecular genetic linkage map of Eucommia ulmoides and quantitative trait loci (QTL) analysis for growth traits, International Journal of Molecular Sciences, 15(2): 2053-2074. https://doi.org/10.3390/ijms15022053 Li Y., Wei H.R., Yang J., Du K., Li J., Zhang Y., Qiu T., Liu Z., Ren Y.Y., Song L.J., and Kang X.Y., 2020, High-quality de novo assembly of the Eucommia ulmoides haploid genome provides new insights into evolution and rubber biosynthesis, Horticulture Research, 7: 183. https://doi.org/10.1038/s41438-020-00406-w Li Y., Wang D., Li Z., Wei J., Jin C. and Liu M., 2014, A molecular genetic linkage map of Eucommia ulmoides and quantitative trait loci (QTL) analysis for growth traits, International Journal of Molecular Sciences, 15(2): 2053-2074. Li Y., Wei H., Yang J., Du K., Li J., Zhang Y., Qiu T., Liu Z., Ren Y., Song L. and Kang X., 2020, High-quality de novo assembly of the Eucommia ulmoides haploid genome provides new insights into evolution and rubber biosynthesis, Horticulture Research, 7. Liu C.L., Wang L., Lu W.J., Zhong J., Du H.Y., Liu P.F., Du Q.X., Du L.Y., and Qing J., 2022, Construction of SNP-based high-density genetic map using genotyping by sequencing (GBS) and QTL analysis of growth traits in Eucommia ulmoides Oliv, Forests, 13(9): 1479. https://doi.org/10.3390/f13091479 Liu H.M., Fu J.M., Du H.Y., Hu J.J., and Wuyun T.N., 2016, De novo sequencing of Eucommia ulmoides flower bud transcriptomes for identification of genes related to floral development, Genomics Data, 9: 105-110. https://doi.org/10.1016/j.gdata.2016.07.001 Liu J., Wang X.Y., Chen Y.L., Liu Y., Wu Y.S., Ren S.S., and Li L., 2021a, Identification, evolution and expression analysis of WRKY gene family in Eucommia ulmoides, Genomics, 113(5): 3294-3309. https://doi.org/10.1016/j.ygeno.2021.05.011 Liu Y.C., Peng X.X., Lu Y.B., Wu X.X., Chen L.W., and Feng H., 2021b. Genome-wide association study reveals the genes associated with the leaf inclusion contents in Chinese medical tree Eucommia ulmoides, Bioscience, Biotechnology, and Biochemistry, 85(2): 233-241. https://doi.org/10.1093/bbb/zbaa005 Liu H., Fu J., Du H., Hu J. and Wuyun T., 2016, De novo sequencing of Eucommia ulmoides flower bud transcriptomes for identification of genes related to floral development, Genomics Data, 9: 105-110. Liu Y.C., Peng X.X., Lu Y.B., Wu X.X., Chen L.W. and Feng H., 2021, Genome-wide association study reveals the genes associated with the leaf inclusion contents in Chinese medical tree Eucommia ulmoides, Bioscience, Biotechnology, and Biochemistry, 85(2): 233-241. Louis A., Muffato M., and Crollius H.R., 2012, Genomicus: five genome browsers for comparative genomics in eukaryota, Nucleic Acids Research, 41(D1): D700-D705. https://doi.org/10.1093/nar/gks1156 Louis A., Muffato M. and Roest Crollius H., 2012, Genomicus: five genome browsers for comparative genomics in eukaryota, Nucleic acids research, 41(D1): D700-D705. Ouyang D., Wang L.C., Tang T., and Feng H., 2021, Genomic-wide identification and characterization of the uridine diphosphate glycosyltransferase family in Eucommia ulmoides oliver, Plants, 10(9): 1934. https://doi.org/10.3390/plants10091934 Qing J., Du Q.X., Meng Y.D., Liu P.F., Du H.Y., and Wang L., 2021, Genome-wide identification and expression pattern analysis of the ribonuclease T2 family in Eucommia ulmoides, Scientific Reports, 11: 6900. https://doi.org/10.1038/s41598-021-86337-5 Qing J., Meng Y.D., He F., Du Q.X., Zhong J., Du H.Y., Liu P.F., Du L.Y. and Wang L., 2022, Whole genome re-sequencing reveals the genetic diversity and evolutionary patterns of Eucommia ulmoides, Molecular Genetics and Genomics, 297(2): 485-494. Stone E.A., Cooper G.M., and Sidow A., 2005, Trade-offs in detecting evolutionarily constrained sequence by comparative genomics, Annual review of genomics and human genetics, 6: 143-164. https://doi.org/10.1146/ANNUREV.GENOM.6.080604.162146 Wang C.C., Gong H.M., Feng M., and Tian C.L., 2023, Phenotypic variation in leaf, fruit and seed traits in natural populations of eucommia ulmoides, a relict chinese endemic tree, Forests, 14(3): 462. https://doi.org/10.3390/f14030462 Wang L., Du H.Y., Li T.Z., and Wuyun T.N., 2018a, De novo transcriptome sequencing and identification of genes related to salt stress in Eucommia ulmoides Oliver, Trees, 32: 151-163. https://doi.org/10.1007/s00468-017-1620-9

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