首页 | 本学科首页   官方微博 | 高级检索  
   检索      


Functional traits and trait coordination change over the life of a leaf in a tropical fern species
Authors:Christopher P Krieg  Kate Seeger  Courtney Campany  James E Watkins Jr  Deedra McClearn  Katherine A McCulloh  Emily B Sessa
Institution:1. Department of Botany, University of Wisconsin, Madison, WI, 53706 USA;2. Department of Biology, Macalester College, Saint Paul, MN, 55105 USA

Contribution: Data curation, Formal analysis, Visualization, Writing - original draft;3. Department of Biology, Shepherd University, Shepherdstown, WV, 25443 USA;4. Department of Biology, Colgate University, Hamilton, NY, 13346 USA;5. Organización para Estudios Tropicales, San José, 11501 CR;6. New York Botanical Garden, Bronx, NY, 10458 USA

Abstract:

Premise

Plant ecological strategies are often defined by the integration of underlying traits related to resource acquisition, allocation, and growth. Correlations between key traits across diverse plants suggest that variation in plant ecological strategies is largely driven by a fast–slow continuum of plant economics. However, trait correlations may not be constant through the life of a leaf, and it is still poorly understood how trait function varies over time in long-lived leaves.

Methods

Here, we compared trait correlations related to resource acquisition and allocation across three different mature frond age cohorts in a tropical fern species, Saccoloma inaequale.

Results

Fronds exhibited high initial investments of nitrogen and carbon, but with declining return in photosynthetic capacity after the first year. In the youngest fronds, we found water-use efficiency to be significantly lower than in the oldest mature fronds due to increased transpiration rates. Our data suggest that middle-aged fronds are more efficient relative to younger, less water-use efficient fronds and that older fronds exhibit greater nitrogen investments without higher photosynthetic return. In addition, several trait correlations expected under the leaf economics spectrum (LES) do not hold within this species, and some trait correlations only appear in fronds of a specific developmental age.

Conclusions

These findings contextualize the relationship between traits and leaf developmental age with those predicted to underlie plant ecological strategy and the LES and are among the first pieces of evidence for when relative physiological trait efficiency is maximized in a tropical fern species.
Keywords:development  investment  leaf age  photosynthesis  physiology  resource allocation
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号