The role of ontogenetic allometry and nonallometric flower shape variation in species-level adaptive diversification - Calceolaria polyrhiza (Calceolariaceae) as a case study

被引:8
作者
Strelin, Marina M. [1 ]
Cosacov, Andrea [2 ]
Chalcoff, Vanina R. [1 ]
Maubecin, Constanza C. [2 ]
Sersic, Alicia N. [2 ]
Benitez-Vieyra, Santiago M. [2 ]
机构
[1] Univ Nacl Comahue, Lab Ecotono, Grp Invest Ecol Polinizac, INIBIOMA,CONICET, RA-8400 San Carlos De Bariloche, Rio Negro, Argentina
[2] Univ Nacl Cordoba, Lab Ecol Evolut & Biol Floral, IMBIV, CONICET, Cordoba, Argentina
关键词
developmental bias; heterochrony; intraspecific variation; pollination; POLLINATION SYNDROMES; CAIOPHORA LOASACEAE; FLORAL PHENOTYPE; EVOLUTION; INTEGRATION; SELECTION; SIZE; HETEROCHRONY; DIVERSITY; SEQUENCES;
D O I
10.1111/ede.12363
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Organism shape changes predictably during ontogeny, resulting in specific patterns of ontogenetic allometry. In several plant and animal lineages, among-species variation in the shape of mature organisms mirrors variation along their growth trajectories. Hence, ontogenetic allometry is an important bias in evolution. This bias should be stronger at reduced evolutionary time scales, in which among-trait correlations had less time to evolve. Nevertheless, it was shown that adaptation of organism shape frequently involved departures from the ancestral ontogenetic allometry. Moreover, only a moderate fraction of shape variation is correlated with size during ontogeny. Hence, nonallometric variation in shape (NAVSh) is likely to contribute to adaptation, even at reduced evolutionary time scales. We explored the contributions of allometric variation in shape (AVSh), NAVSh, and size variation to adaptive evolution in the angiosperm species Calceolaria polyrhiza. This strongly relies on oil-collecting bees for pollination and experienced transitions in the size of pollinators during the last 2 Ma. Using geometric morphometrics, we described corolla morphology in several populations across its distribution range. Variation in corolla shape was decomposed into an allometric and a nonallometric component, and corolla size was estimated. We then looked for the correlation between these aspects of morphology and the pollinator. Our results suggest that adaptation to pollinators with different sizes relied on NAVSh, which resulted from shifts in the allometric slope and from shape changes that occurred early in flower development. We conclude that NAVSh can contribute to adaptation in flowering plants, even at the species-level.
引用
收藏
页码:231 / 243
页数:13
相关论文
共 54 条
[51]   Comparative quantitative genetics: evolution of the G matrix [J].
Steppan, SJ ;
Phillips, PC ;
Houle, D .
TRENDS IN ECOLOGY & EVOLUTION, 2002, 17 (07) :320-327
[52]   Exploring the ontogenetic scaling hypothesis during the diversification of pollination syndromes in Caiophora (Loasaceae, subfam. Loasoideae) [J].
Strelin, Marina M. ;
Benitez-Vieyra, Santiago ;
Fornoni, Juan ;
Klingenberg, Christian Peter ;
Cocucci, Andrea A. .
ANNALS OF BOTANY, 2016, 117 (05) :937-947
[53]   Study of the polymorphism of the Patagonian Calceolaria polyrhiza (Calceolariaceae) using decision tree and sequential covering rule induction [J].
Strelin, Marina M. ;
Cosacov, Andrea ;
Diller, Martin ;
Sersic, Alicia N. .
BOTANICAL JOURNAL OF THE LINNEAN SOCIETY, 2013, 173 (03) :487-500
[54]   Contrasting lengths of Pelargonium floral nectar tubes result from late differences in rate and duration of growth [J].
Tsai, Timothy ;
Diggle, Pamela K. ;
Frye, Henry A. ;
Jones, Cynthia S. .
ANNALS OF BOTANY, 2018, 121 (03) :549-560