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Beckman, N. G.

Publications and source records attributed to Beckman, N. G..

2 recordsLinked to original sources

Compartmentalization of specialized metabolites across vegetative and reproductive tissues in two sympatric Psychotria (Rubiaceae)

Premise of the studyThe specialized metabolites of plants are recognized as key chemical traits in mediating the ecology and evolution of sundry plant-biotic interactions, from pollination to seed predation. Intra- and interspecific patterns of specialized metabolite diversity have been studied extensively in leaves, but the diverse biotic interactions which contribute to specialized metabolite diversity encompass all plant organs. Focusing on two species of Psychotria shrubs, we investigate and compare patterns of specialized metabolite diversity in leaves and fruit with respect to each organs diversity of biotic interactions. MethodsTo evaluate associations between biotic interaction diversity and specialized metabolite diversity, we combine UPLC-MS metabolomic analysis of foliar and fruit specialized metabolites with existing surveys of leaf- and fruit-centered biotic interactions. We compare patterns of specialized metabolite richness and variance among vegetative and reproductive tissues, among plants, and between species. Key resultsIn our study system, leaves are involved in a greater number of host-specific biotic interactions than fruit, while fruit-centric interactions are more ecologically diverse. This was reflected in specialized metabolite richness - leaves contained more than fruit, while each contained over 200 organ-specific specialized metabolites. Within each species, leaf- and fruit specialized metabolite composition varied independently of one another across plants. Specialized metabolite composition exhibited stronger contrasts between organs than between species. ConclusionsAs ecologically disparate plant organs with organ-specific specialized metabolite traits, leaves and fruit can each contribute to the tremendous overall diversity of plant specialized metabolites.

plant biology↗

Individual variation in dispersal and fecundity increases rates of spatial spread

AO_SCPLOWBSTRACTC_SCPLOWDispersal and fecundity are two fundamental traits underlying the spread of populations. Using integral difference equation models, we examine how individual variation in these fundamental traits and the heritability of these traits influence rates of spatial spread of populations along a one-dimensional transect. Using a mixture of analytic and numerical methods, we show that individual variation in dispersal rates increases spread rates and the more heritable this variation, the greater the increase. In contrast, individual variation in lifetime fecundity only increases spread rates when some of this variation is heritable. The highest increases in spread rates occurs when variation in dispersal positively covaries with fecundity. Our results highlight the importance of estimating individual variation in dispersal rates, dispersal syndromes in which fecundity and dispersal co-vary positively, and heritability of these traits to predict population rates of spatial spread.

ecology↗