[1] Adhikari, B., Pendry, C.A., Pennington, R.T., et al., 2012. A revision of Berberis s.s.(Berberidaceae) in Nepal. Edinb. J. Bot. 69, 447-522 [2] Ahrendt, L.W.A., 1961. Berberis and Mahonia. A taxonomic revision. Bot. J. Linn. Soc. 57, 1-410 [3] Chang, Y.H., Yao, G., Neilsen, J., et al., 2021. Rhododendron kuomeianum (Ericaceae), a new species from northeastern Yunnan (China), based on morphological and genomic data. Plant Divers. 43, 292-298 [4] Du, C., Liao, S., Boufford, D.E., et al., 2020. Twenty years of Chinese vascular plant novelties, 2000 through 2019. Plant Divers. 42, 393-398 [5] Ding, W.N., Ree, R.H., Spicer, R.A., et al., 2020. Ancient orogenic and monsoon-driven assembly of the world's richest temperate alpine fora. Science 369, 578-581 [6] Harber, J., 2020. The Berberis of China and Vietnam:A Revision, Monogr. Syst. Bot. Missouri Bot. Gard. pp. 359 [7] Hsieh, C.L., Yu, C.C., Huang, Y.L., et al., 2022. Mahonia vs. Berberis unloaded:generic delimitation and infrafamilial classification of Berberidaceae based on plastid phylogenomics. Front. Plant Sci. 12, 720171 [8] IUCN, 2012. IUCN Red List Category and Criteria. Version 3.1, second ed., Gland and Cambridge, pp. 32 [9] Jin, J.J., Yu, W.B., Yang, J.B., et al., 2020. Get Organelle:a fast and versatile toolkit for accurate de novo assembly of organelle genomes. Genome Biol. 21, 241 [10] Katoh, K., Standley, D.M., 2013. MAFFT multiple sequence alignment software version 7:improvements in performance and usability. Mol. Biol. Evol. 30(4), 772-780 [11] Kearse, M., Moir, R., Wilson, A., et al., 2012. Geneious basic:an integrated and extendable desktop software platform for the organization and analysis of sequence data. Bioinformatics 28, 1647-1649 [12] Kim, Y.D., Kim, S.H., Landrum, L.R., 2004. Taxonomic and phytogeographic implications from ITS phylogeny in Berberis (Berberidaceae). J. Plant Protect. Res. 117, 175-182 [13] Kreuzer, M., Howard, C., Adhikari, B., et al., 2019. Phylogenomic approaches to DNA barcoding of herbal medicines:developing clade specific diagnostic characters for Berberis. Front. Plant Sci. 10, 586 [14] Li, L., Zhang, J., Lu, Z.Q., et al., 2021. Genomic data reveal two distinct species from the widespread alpine ginger Roscoea tibetica Batalin (Zingiberaceae). J. Systemat. Evol. 59, 1232-1243 [15] Landrum, L.R., 1999. Revision of Berberis (Berberidaceae) in Chile and adjacent southern Argentina. Ann. Mo. Bot. Gard. 86, 793-834 [16] Letunic, I., Bork, P., 2021. Interactive Tree of Life (iTOL) v5:an online tool for phylogenetic tree display and annotation. Nucleic Acids Res. 49, W293-W296 [17] Nieto Feliner, G., Rossello, J. A. 2007. Better the devil you know? Guidelines for insightful utilization of nrDNA ITS in species-level evolutionary studies in plants. Mol. Phylogenet. Evol. 44, 911-938 [18] Olonova, M. V., Sylvester, S. P. 2021. Poa liuliangii and P. kengii (Poaceae), two new species from the Hengduan Mountains of southwest China. Taiwania 66, 251-257 [19] Rambaut, A., 2010. FigTree v1.3.1. Edinburgh, Scotland, Institute of Evolutionary Biology, University of Edinburgh. http://tree.bio.ed.ac.uk/software/figtree [20] Schneider, C. K., 1916. Weitere Beitrage zur Kenntnis der chinesischen Arten der Gattung Berberis (Euberberis). Oesterr. Bot. Z. 66, 313-326 [21] Schneider, C., 1939. Neue Berberis der sect. Wallichianae. Repert. Spec. Nov. Regni Veg. 46, 245-267 [22] Schneider, C., 1942. Die Berberis der section Wallichianae. Mitt. Deutsch. Dendrol. Ges. 55, 1-60 [23] Shi, L., Chen, H., Jiang, M., et al., 2019. CPGAVAS2, an integrated plastome sequence annotator and analyzer. Nucleic Acids Res. 47, W65-W73 [24] Stamatakis, A., 2014. RAxML version 8:a tool for phylogenetic analysis and post-analysis of large phylogenies. Bioinformatics 30, 1312-1313 [25] Sun, H., Zhang, J. W., Deng, T., et al., 2017. Origins and evolution of plant diversity in the Hengduan Mountains, China. Plant Divers. 39, 161-166 [26] Tillich, M., Lehwark, P., Pellizzer, T., et al., 2017. GeSeq-versatile and accurate annotation of organelle genomes. Nucleic Acids Res. 45, W6-W11 [27] Wu, Z.Y., 1988. Hengduan mountain flora and their significance. J. Jpn. Bot. 63, 297-311 [28] Xing, Y.W., Ree, R. H., 2017. Uplift-driven diversification in the Hengduan Mountains, a temperate biodiversity hotspot. Proc. Natl. Acad. Sci. U.S.A. 114, E3444-E3451 [29] Ya, J.D., Lin, D.L., Han, Z.D., et al., 2021. Three new species of Liparis s.l.(Orchidaceae:malaxideae) from Southwest China based on morphological characters and phylogenetic evidence. Plant Divers. 43, 401-408 [30] Ye, X.Y., Zhang, Y.X., Li, D.Z. 2021. Two new species of Yushania (Poaceae:bambusoideae) from South China, with a taxonomic revision of related species. Plant Divers. 43, 492-501 [31] Ying, J., 2011. Berberis L. In:Wu, Z.Y., Raven, P.H., Hong, D.Y.(Eds.), Flora of China, vol. vol. 19. Science Press&Missouri Botanical Garden, Beijing&St. Louis, pp. 715-771 [32] Yu, C.C., Chung, K.F., 2014. Systematics of Berberis sect. Wallichianae (Berberidaceae) of Taiwan and Luzon with description of three new species, B. schaaliae, B. ravenii, and B. pengii. Phytotaxa 184, 61-99 [33] Yu, C.C., Chung, K.F., 2017. Why Mahonia? Molecular recircumscription of Berberis s.l., with the description of two new genera, Alloberberis and Moranothamnus. Taxon 66, 1371-1392 [34] Zheng, Q.J., Yu, C.C., Xing, Y.W., et al., 2021. A new rorippa species (brassicaceae), R. hengduanshanensis, from the hengduan mountains in China. Phytotaxa 480, 210-222 |