15 results on '"Lin, Chen-Xue"'
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2. Molecular, chromosomal, and morphological evidence reveals a new allotetraploid fern species of Asplenium (Aspleniaceae) from southern Jiangxi, China
3. Figure 4 from: Lin C-X, Xu G-L, Jin Z-F, Liao W-B, Xu K-W (2022) Molecular, chromosomal, and morphological evidence reveals a new allotetraploid fern species of Asplenium (Aspleniaceae) from southern Jiangxi, China. PhytoKeys 199: 113-127. https://doi.org/10.3897/phytokeys.199.81292
4. Figure 1 from: Lin C-X, Xu G-L, Jin Z-F, Liao W-B, Xu K-W (2022) Molecular, chromosomal, and morphological evidence reveals a new allotetraploid fern species of Asplenium (Aspleniaceae) from southern Jiangxi, China. PhytoKeys 199: 113-127. https://doi.org/10.3897/phytokeys.199.81292
5. Figure 5 from: Lin C-X, Xu G-L, Jin Z-F, Liao W-B, Xu K-W (2022) Molecular, chromosomal, and morphological evidence reveals a new allotetraploid fern species of Asplenium (Aspleniaceae) from southern Jiangxi, China. PhytoKeys 199: 113-127. https://doi.org/10.3897/phytokeys.199.81292
6. Figure 2 from: Lin C-X, Xu G-L, Jin Z-F, Liao W-B, Xu K-W (2022) Molecular, chromosomal, and morphological evidence reveals a new allotetraploid fern species of Asplenium (Aspleniaceae) from southern Jiangxi, China. PhytoKeys 199: 113-127. https://doi.org/10.3897/phytokeys.199.81292
7. Figure 3 from: Lin C-X, Xu G-L, Jin Z-F, Liao W-B, Xu K-W (2022) Molecular, chromosomal, and morphological evidence reveals a new allotetraploid fern species of Asplenium (Aspleniaceae) from southern Jiangxi, China. PhytoKeys 199: 113-127. https://doi.org/10.3897/phytokeys.199.81292
8. Supplementary material 1 from: Lin C-X, Xu G-L, Jin Z-F, Liao W-B, Xu K-W (2022) Molecular, chromosomal, and morphological evidence reveals a new allotetraploid fern species of Asplenium (Aspleniaceae) from southern Jiangxi, China. PhytoKeys 199: 113-127. https://doi.org/10.3897/phytokeys.199.81292
9. Figure 6 from: Lin C-X, Xu G-L, Jin Z-F, Liao W-B, Xu K-W (2022) Molecular, chromosomal, and morphological evidence reveals a new allotetraploid fern species of Asplenium (Aspleniaceae) from southern Jiangxi, China. PhytoKeys 199: 113-127. https://doi.org/10.3897/phytokeys.199.81292
10. Molecular, chromosomal, and morphological evidence reveals a new allotetraploid fern species of Asplenium (Aspleniaceae) from southern Jiangxi, China
11. Asplenium danxiaense sp. nov. (Aspleniaceae, Aspleniineae), a new tetraploid fern species from Guangdong, China, based on morphological and molecular data
12. Asplenium danxiaense sp. nov. (Aspleniaceae, Aspleniineae), a new tetraploid fern species from Guangdong, China, based on morphological and molecular data
13. Asplenium danxiaense K. W. Xu 2022, sp. nov
14. Asplenium danxiaense sp. nov. (Aspleniaceae, Aspleniineae), a new tetraploid fern species from Guangdong, China, based on morphological and molecular data
15. Extensive cytonuclear discordance revealed by phylogenomic analyses suggests complex evolutionary history in the holly genus Ilex (Aquifoliaceae).
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