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Titlebook: Ecology and Evolutionary Biology of Clonal Plants; Proceedings of Clone J. F. Stuefer,B. Erschbamer,J.-I. Suzuki Conference proceedings 200

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Age- and stage-based bud demography of , under contrasting muskox grazing pressure in the High Arctale and vegetative plants, on central Ellesmere Island, Canada. We developed age- and stage-based transition matrix models in order to investigate the contribution of annual shoot generations, and the significance of different bud types (dormant, vegetative, catkin. eaten) to bud population growth.
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The influence of position on genet growth: a simulation of a population of bracken (, (L.) Kuhn) gee genet or clone. The physical environment was homogeneous and all genets shared the same phenotype. The aim was to discover whether and how the success of each genet was affected by its initial position relative to other genets and a competing grass species. In a scenario in which grazing generated
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Developmental processes and the evolution of plant clonality,nality: the differentiation of specialized plagiotropic stems which act as spacers, the localized formation of adventitious roots, and a limitation of vertical development which is coupled with repeated rejuvenation. Intermediate forms, in which one of these processes occurs without the others, are
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Clonal architecture in marine macroalgae: ecological and evolutionary perspectives,hich are interesting modular organisms that combine ‘simple’ morphologies and complex life cycles, have been almost ignored. This paper presents a review and analysis of the ecological and evolutionary consequences of clonality in marine macroalgae, including three main subjects: (1) modular constru
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Investigating the community consequences of competition among clonal plants,ng of the effects of clonal attributes on community patterns and processes is weak. Here we present the conceptual basis for experiments focused on manipulating clonal attributes in a community context to determine how clonal characteristics affect interactions among plants at both the individual an
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On the evolution of clonal plant life histories,be realised with short or long spacers, (3) and it may allow to plastically place vegetative offspring in benign patches. (4) Moreover, ramets of clonal plants may remain physically and physiologically integrated. Because of the apparent utility of such traits and because ecological patterns of dist
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https://doi.org/10.1007/978-3-0348-6297-4comparative analyses of rates of geitonogamy in species with clumped and intermingled distribution may allow for the evaluation of evolutionary interaction between clonal growth and floral traits that regulate mating patterns.
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