1 |
Darwin C R. On the various contrivances by which British and foreign orchids are fertilised by insects: And on the good effects of intercrossing. London: Cambridge University Press, 1862: 384-387.
|
2 |
Faegri K, Pijl L. The principles of pollination ecology. Oxford: Pergamon Press, 1979.
|
3 |
Fenster C B, Armbruster W S, Wilson P, et al. Pollination syndromes and floral specialization. Annual Review of Ecology Evolution and Systematics, 2004, 35(1): 375-403.
|
4 |
Harder L D, Johnson S D. Darwin’s beautiful contrivances: Evolutionary and functional evidence for floral adaptation. New Phytologist, 2009, 183(3): 530-545.
|
5 |
Sletvold N, Ågren J. There is more to pollinator-mediated selection than pollen limitation. Evolution, 2014, 68(7): 1907-1918.
|
6 |
Chapurlat E, Ågren J, Sletvold N. Spatial variation in pollinator-mediated selection on phenology, floral display and spur length in the orchid Gymnadenia conopsea. New Phytologist, 2015, 208(4): 1264-1275.
|
7 |
Sletvold N, Moritz K K, Ågren J. Additive effects of pollinators and herbivores result in both conflicting and reinforcing selection on floral traits. Ecology, 2015, 96(1): 214-221.
|
8 |
Sletvold N, Ågren J. Experimental reduction in interaction intensity strongly affects biotic selection. Ecology, 2016, 97(11): 3091-3098.
|
9 |
Kingsolver J G, Pfennig D W. Patterns and power of phenotypic selection in nature. Bioscience, 2007, 57(7): 561-572.
|
10 |
Campbell D R. Evolution of floral traits in a hermaphroditic plant: Field measurements of heritabilities and genetic correlations. Evolution, 1996, 50(4): 1442-1453.
|
11 |
Sletvold N, Grindeland J M, Ågren J. Pollinator-mediated selection on floral display, spur length and flowering phenology in the deceptive orchid Dactylorhiza lapponica. New Phytologist, 2010, 188(2): 385-392.
|
12 |
Lu N N, Liu Z H, Ma Y, et al. Phenotypic selection analysis of flower traits in Delphinium kamaonense var. glabrescens (Ranunculaceae). Biodiversity Science, 2019, 27(2): 772-777.
|
|
路宁娜, 刘振恒, 马妍, 等. 展毛翠雀的花性状表型选择. 生物多样性, 2019, 27(2): 772-777.
|
13 |
Conner J K, Rush S. Effects of flower size and number on pollinator visitation to wild radish, Raphanus raphanistrum. Oecologia, 1996, 105(4): 509-516.
|
14 |
Zhao Z G, Lu N N, Conner J K. Adaptive pattern of nectar volume within inflorescences: Bumblebee foraging behavior and pollinator-mediated natural selection. Scientific Reports, 2016, 6(1): 34499.
|
15 |
Zhao Z G, Wang Y K. Selection by pollinators on floral traits in generalized Trollius ranunculoides (Ranunculaceae) along altitudinal gradients. PLoS One, 2015, 10(2): e0118299.
|
16 |
Conner J K. Understanding natural selection: An approach integrating selection gradients, multiplicative fitness components, and path analysis. Ethology Ecology and Evolution, 1996, 8(4): 387-397.
|
17 |
Zhang B, Li Q J. Phenotypic selection on the staminal lever mechanism in Salvia digitaloides (Labiaceae). Evolutionary Ecology, 2014, 28(2): 373-386.
|
18 |
Zhang B, Sun S, Zhang Z Q, et al. A review of the evolutionary and ecological significance of lever-like stamens. Chinese Journal of Plant Ecology, 2010, 34(1): 89-99.
|
|
张勃, 孙杉, 张志强, 等. 杠杆状雄蕊及其进化生态学意义. 植物生态学报, 2010, 34(1): 89-99.
|
19 |
Claßen-Bockhoff R, Speck T, Tweraser E, et al. The staminal lever mechanism in Salvia L. (Lamiaceae): A key innovation for adaptive radiation? Organisms, Diversity and Evolution, 2004, 4(3): 189-205.
|
20 |
Walker J B, Sytsma K J. Staminal evolution in the genus Salvia (Lamiaceae): Molecular phylogenetic evidence for multiple origins of the staminal lever. Annals of Botany, 2007, 100(2): 375-391.
|
21 |
Wester P, Claßen-Bockhoff R. Bird pollination in South African Salvia species. Flora, 2006, 201(5): 369-406.
|
22 |
Wester P, Claßen-Bockhoff R. Floral diversity and pollen transfer mechanisms in bird-pollinated Salvia species. Annals of Botany, 2007, 100(6): 401-421.
|
23 |
Zhang B, Claßen-Bockhoff R, Zhang Z Q, et al. Functional implications of the staminal lever mechanism in Salvia cyclostegia (Lamiaceae). Annals of Botany, 2011, 107(4): 621-628.
|
24 |
Reith M, Baumann G, Claßen-Bockhoff R, et al. New insights into the functional morphology of the lever mechanism of Salvia pratensis (Lamiaceae). Annals of Botany, 2007, 100(2): 393-400.
|
25 |
Zhang B, Claßen-Bockhoff R. Sex-differential reproduction success and selection on floral traits in gynodioecious Salvia pratensis. BMC Plant Biology, 2019, 19(3): 688-696.
|
26 |
Conner J K, Hartl D L. A primer of ecological genetics. Massachusetts: Sinauer Associates, 2004.
|
27 |
Lande R, Arnold S J. The measurement of selection on correlated characters. Evolution, 1983, 37(6): 1210-1226.
|
28 |
Ashman T L, Knight T M, Steets J A, et al. Pollen limitation of plant reproduction: Ecological and evolutionary causes and consequences. Ecology, 2004, 85(9): 2408-2421.
|
29 |
Sletvold N, Tye M, Ågren J. Resource- and pollinator-mediated selection on floral traits. Functional Ecology, 2016, 31(1): 135-141.
|
30 |
Gómez J. Phenotypic selection and response to selection in Lobularia maritima: Importance of direct and correlational components of natural selection. Journal of Evolutionary Biology, 2000, 13(4): 689-699.
|
31 |
Irwin R E. The consequences of direct versus indirect species interactions to selection on traits: Pollination and nectar robbing in Ipomopsis aggregata. American Naturalist, 2006, 167(3): 315-328.
|
32 |
Martin B. Bateman’s principle and plant reproduction: The role of pollen limitation in fruit and seed set. Botanical Review, 1994, 60(1): 83-139.
|
33 |
Van D N T, Peakall R, Johnson S D. Pollinator-driven ecological speciation in plants: New evidence and future perspectives. Annals of Botany, 2014, 113(2): 199-211.
|
34 |
Ma Y, Lu N N, Lu G M, et al. Phenotypic selection for floral traits of two sympatric Pedicularis specie. Acta Prataculturae Sinica, 2020, 29(2): 186-192.
|
|
马妍, 路宁娜, 路广梅, 等. 两种同域分布马先蒿植物花特征的表型选择研究. 草业学报, 2020, 29(2): 186-192.
|
35 |
Claßen-Bockhoff R, Crone M, Baikova E. Stamen development in Salvia: Homology reinvestigated. International Journal of Plant Sciences, 2004, 165(4): 475-498.
|
36 |
Wang X Y, Zhu X X, Yang J, et al. Variation in style length and the effect on reproductive success in Chinese plums (Armeniaca mume). Biodiversity Science, 2019, 27(2): 159-167.
|
|
王晓月, 朱鑫鑫, 杨娟, 等. 梅花个体内花柱长度的变异及其对繁殖成功的影响. 生物多样性, 2019, 27(2): 159-167.
|
37 |
Ordano M, Fornoni J, Boege K, et al. The adaptive value of phenotypic floral integration. New Phytologist, 2008, 179(4): 1183-1192.
|