[1]
|
de Candolle, A.P. (1825) Mémoires sur les Légumineuses. Belin-Mandar, Auguste-Jean. https://doi.org/10.5962/bhl.title.124031
|
[2]
|
Lackey, J.A. (1977) Neonotonia, a New Generic Name to Include Glycine wightii (Arnott) Verdcourt (Leguminosae, Papilionoideae). Phytologia, 37, 209-212.
|
[3]
|
Lackey, J.A. (1977) A Revised Classification of Phaseoleae (Leguminosae: Papilionoideae) and Its Relation to Canavanine Distribution. Botanical Journal of the Linnean Society, 74, 163-178. https://doi.org/10.1111/j.1095-8339.1977.tb01173.x
|
[4]
|
Lackey, J.A. (1977) A Synopsis of Phaseoleae (Leguminosae, Papilionoideae). Ph.D. Thesis, Iowa State University.
|
[5]
|
van der Maesen, L.J.G. (1985) Revision of the Genus Pueraria DC. with Some Notes on Teyleria Backer: Leguminosae. Taylor & Francis.
|
[6]
|
van der Maesen, L.J.G. (1994) Pueraria, the Kudzu and Its Relatives, an Update of the Taxonomy. In: Sorensen, M., Ed., Proceedings of the First International Symposium on Tuberous Legumes, Guadeloupe, FWI, 55-86.
|
[7]
|
van der Maesen, L.J.G. (2002) Pueraria: Botanical Characteristics. In: Keung, W.M., Ed., Pueraria: The Genus Pueraria, Taylor & Francis, 1-28.
|
[8]
|
van der Maesen, L.J.G. and Almeida, S.M. (1988) Two Corrections to the Nomenclature in the Revision of Pueraria DC. The Journal of the Bombay Natural History Society, 85, 233-234.
|
[9]
|
中国科学院中国植物志编辑委员会. 中国植物志第41卷: 葛属[M]. 北京: 科学出版社, 1995. https://www.iplant.cn
|
[10]
|
Wu, Z.Y., Hong, D.Y. and Raven, P.H. (2010) Pueraria Candolle. Science Press, Beijing and Missouri Botanical Garden Press, 244-248. https://www.iplant.cn/info/Pueraria?t=foc
|
[11]
|
Keung, W.M. (2002) Pueraria: The Genus Pueraria. CRC Press. https://doi.org/10.1201/9780203300978
|
[12]
|
Egan, A.N., Vatanparast, M. and Cagle, W. (2016) Parsing Polyphyletic Pueraria: Delimiting Distinct Evolutionary Lineages through Phylogeny. Molecular Phylogenetics & Evolution, 104, 44-59. https://doi.org/10.1016/j.ympev.2016.08.001
|
[13]
|
Hoffberg, S.L., Bentley, K.E., Lee, J.B., Myhre, K.E., Iwao, K., Glenn, T.C. and Mauricio, R. (2015) Characterization of 15 Microsatellite Loci in Kudzu (Pueraria montana var. lobata) from the Native and Introduced Ranges. Conservation Genetics Resources, 7, 403-405. https://doi.org/10.1007/s12686-014-0381-7
|
[14]
|
Heider, B., Fischer, E., Berndl, T. and Schultze-Kraft, R. (2007) Analysis of Genetic Variation among Accessions of Pueraria montana (Lour.) Merr. var. lobata and Pueraria phaseoloides (Roxb.) Benth. Based on RAPD Markers. Genetic Resources and Crop Evolution, 54, 529-542. https://doi.org/10.1007/s10722-006-0009-1
|
[15]
|
Li, J., Yang, M., Li, Y., Jiang, M., Liu, C., He, M. and Wu, B. (2022) Chloroplast Genomes of Two Pueraria DC. Species: Sequencing, Comparative Analysis and Molecular Marker Development. FEBS Open Bio, 12, 349-361. https://doi.org/10.1002/2211-5463.13335
|
[16]
|
Zhang, Z.Y., Tang, T.M., Zhu, P., et al. (2019) Characterization of the Complete Chloroplast Genome Sequence of Pueraria montana var. lobata and Its Phylogenetic Implications. Mitochondrial DNA Part B, 4, 1998-2000. https://doi.org/10.1080/23802359.2019.1617085
|
[17]
|
Zhou, Y., Shang, X.H., Xiao, L., et al. (2023) Comparative Plastomes of Pueraria montana var. lobata (Leguminosae: Phaseoleae) and Closely Related Taxa: Insights into Phylogenomic Implications and Evolutionary Divergence. BMC Genomics, 24, Article No. 299. https://doi.org/10.1186/s12864-023-09356-8
|
[18]
|
Sun, J., Wang, Y., Qiao, P., Zhang, L., Li, E., Dong, W., Zhao, Y. and Huang, L. (2023) Pueraria Montana Population Structure and Genetic Diversity Based on Chloroplast Genome Data. Plants, 12, Article 2231. https://doi.org/10.3390/plants12122231
|
[19]
|
Dong, W.P., Xu, C., Li, D.L., Jin, X.B., Li, R.L., Lu, Q. and Suo, Z.L. (2016) Comparative Analysis of the Complete Chloroplast Genome Sequences in Psammophytic Haloxylon Species (Amaranthaceae). PeerJ, 4, e2699. https://doi.org/10.7717/peerj.2699
|
[20]
|
Dong, W.P., Xu, C., Li, W.Q., Xie, X.M., Lu, Y.Z., Liu, Y.L., Jin, X.B. and Suo, Z.L. (2017) Phylogenetic Resolution in Juglans Based on Complete Chloroplast Genomes and Nuclear DNA Sequences. Frontiers in Plant Science, 8, Article 1148. https://doi.org/10.3389/fpls.2017.01148
|
[21]
|
Xu, C., Dong, W.P., Li, W.Y., Lu, Y.Z., Xie, X.M., Jin, X.B., Shi, J.P., He, K.H. and Suo, Z.L. (2017) Comparative Analysis of Six Lagerstroemia Complete Chloroplast Genomes. Frontiers in Plant Science, 8, Article 15. https://doi.org/10.3389/fpls.2017.00015
|
[22]
|
Li, W.Q., Liu, Y.L., Yang, Y., Xie, X.M., Lu, Y.Z., Yang, Z.R., Jin, X.B., Dong, W.P. and Suo, Z.L. (2018) Interspecific Chloroplast Genome Sequence Diversity and Genomic Resources in Diospyros. BMC Plant Biology, 18, Article No. 210. https://doi.org/10.1186/s12870-018-1421-3
|
[23]
|
Dong, W.P., Xu, C., Liu, Y.L., Shi, J.P., Li, W.Y. and Suo, Z.L. (2021) Chloroplast Phylogenomics and Divergence Times of Lagerstroemia (Lythraceae). BMC Genomics, 22, Article No. 434. https://doi.org/10.1186/s12864-021-07769-x
|
[24]
|
Guo, C., Liu, K.J., Li, E.Z., Chen, Y.F., He, J.Y., Li, W.Y., Dong, W.P. and Suo, Z.L. (2023) Maternal Donor and Genetic Variation of Lagerstroemia indica Cultivars. International Journal of Molecular Sciences, 24, Article 3606. https://doi.org/10.3390/ijms24043606
|
[25]
|
Suo, Z.L., Zhang, C.H., Zheng, Y.Q., He, L.X., Jin, X.B., Hou, B.X. and Li, J.J. (2012) Revealing Genetic Diversity of Tree Peonies at Micro-Evolution Level with Hyper-Variable Chloroplast Markers and Floral Traits. Plant Cell Reports, 31, 2199-2213. https://doi.org/10.1007/s00299-012-1330-0
|
[26]
|
Suo, Z.L., Chen, L.N., Pei, D., Jin, X.B. and Zhang, H.J. (2015) A New Nuclear DNA Marker from Ubiquitin Ligase Gene Region for Genetic Diversity Detection of Walnut Germplasm Resources. Biotechnology Reports, 5, 40-45. https://doi.org/10.1016/j.btre.2014.11.003
|
[27]
|
李斌, 左云娟, 刘艳磊, 等. 基于叶绿体基因组的单核苷酸多态位点的落叶松属(Larix Mill.)植物的分子鉴定新方法[J]. 植物学研究, 2023, 12(4): 227-239. https://doi.org/10.12677/br.2023.124030
|
[28]
|
刘美辰, 左云娟, 刘艳磊, 等. 基于叶绿体全基因组核苷酸变异位点的大豆属(Glycine Willd.)植物的分子鉴定新方法[J]. 植物学研究, 2024, 13(2): 124-142. https://doi.org/10.12677/BR.2024.132015
|
[29]
|
刘美辰, 张建农, 左云娟, 等. 基于叶绿体全基因组序列变异位点的葫芦科植物资源遗传多样性的分子鉴定新方法[J]. 植物学研究, 2024, 13(3): 289-314. https://doi.org/10.12677/br.2024.133032
|
[30]
|
刘美辰, 左云娟, 靳晓白, 等. 基于叶绿体基因组变异位点的兰属(兰科)植物资源遗传多样性的分子鉴定新方法[J]. 计算生物学, 2024, 14(2): 13-28. https://doi.org/10.12677/hjcb.2024.142002
|
[31]
|
刘美辰, 李斌, 左云娟, 等. 基于质体基因组序列变异位点的松科油杉属和冷杉属植物资源遗传多样性的分子鉴定新方法[J]. 植物学研究, 2024, 13(4): 434-445. https://doi.org/10.12677/br.2024.134046
|
[32]
|
刘美辰, 刘一心, 左云娟, 等. 基于叶绿体基因组变异位点的百合属(百合科)植物资源遗传多样性的分子鉴定新方法[J]. 植物学研究, 2024, 13(4): 469-486. https://doi.org/10.12677/br.2024.134050
|
[33]
|
Katoh, K. and Standley, D.M. (2013) MAFFT Multiple Sequence Alignment Software Version 7: Improvements in Performance and Usability. Molecular Biology and Evolution, 30, 772-780. https://doi.org/10.1093/molbev/mst010
|
[34]
|
Kumar, S., Stecher, G. and Tamura, K. (2016) MEGA7: Molecular Evolutionary Genetics Analysis Version 7.0 for Bigger Datasets. Molecular Biology and Evolution, 33, 1870-1874. https://doi.org/10.1093/molbev/msw054
|
[35]
|
Rozas, J., Ferrer-Mata, A., Sánchez-DelBarrio, J.C., Guirao-Rico, S., Librado P., Ramos-Onsins, S.E. and Sánchez-Gracia, A. (2017) DnaSP 6: DNA Sequence Polymorphism Analysis of Large Data Sets. Molecular Biology and Evolution, 34, 3299-3302. https://doi.org/10.1093/molbev/msx248
|
[36]
|
Goodwin, Z.A., Harris, D.J., Filer, D., Wood, J.R.I. and Scotland, R.W. (2015) Wide Spread Mistaken Identity in Tropical Plant Collections. Current Biology, 25, R1057-R1069. https://doi.org/10.1016/j.cub.2015.10.002
|
[37]
|
洪德元. 生物多样性事业需要科学、可操作的物种概念[J]. 生物多样性, 2016, 24(9): 979-999.
|
[38]
|
王文采, 等. 世界植物简志[M]. 北京: 北京出版集团北京出版社, 2021: 1-172.
|
[39]
|
朱旭, 李嘉奇. 全球协同落实《昆明-蒙特利尔全球生物多样性框架》的挑战与出路: 基于SFIC模型的分析[J]. 生物多样性, 31(8): 23167.
|