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The Smaller the Leaf Is, the Faster the Leaf Water Loses in a Temperate Forest

Leaf size (i.e., leaf surface area and leaf dry mass) profoundly affects a variety of biological carbon, water and energy processes. Therefore, the remarkable variability in individual leaf size and its trade-off with total leaf number in a plant have particularly important implications for understa...

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Autores principales: Wang, Cunguo, He, Junming, Zhao, Tian-Hong, Cao, Ying, Wang, Guojiao, Sun, Bei, Yan, Xuefei, Guo, Wei, Li, Mai-He
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6369174/
https://www.ncbi.nlm.nih.gov/pubmed/30778364
http://dx.doi.org/10.3389/fpls.2019.00058
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author Wang, Cunguo
He, Junming
Zhao, Tian-Hong
Cao, Ying
Wang, Guojiao
Sun, Bei
Yan, Xuefei
Guo, Wei
Li, Mai-He
author_facet Wang, Cunguo
He, Junming
Zhao, Tian-Hong
Cao, Ying
Wang, Guojiao
Sun, Bei
Yan, Xuefei
Guo, Wei
Li, Mai-He
author_sort Wang, Cunguo
collection PubMed
description Leaf size (i.e., leaf surface area and leaf dry mass) profoundly affects a variety of biological carbon, water and energy processes. Therefore, the remarkable variability in individual leaf size and its trade-off with total leaf number in a plant have particularly important implications for understanding the adaption strategy of plants to environmental changes. The various leaf sizes of plants growing in the same habitat are expected to have distinct abilities of thermal regulation influencing leaf water loss and shedding heat. Here, we sampled 16 tree species co-occurring in a temperate forest in northeastern China to quantify the variation of leaf, stomata and twigs traits, and to determine the relationships of leaf size with leaf number and leaf water loss. We examined the right-skewed distributions of leaf size, leafing intensity, stomatal size and stomatal density across species. Leafing intensity was significantly negatively correlated with leaf size, accounting for 4 and 12% of variation in leaf area and leaf mass, respectively. Species was the most important factor in explaining the variation in leaf size (conditional R(2) of 0.92 for leaf area and 0.82 for leaf mass). Leaf area and mass significantly increased with increasing diameter of twigs. Leaf water loss was strongly negatively correlated with leaf area and leaf mass during the first four hours of the measurement. Leaf area and leaf mass accounted for 38 and 30% of variation in total leaf water loss, respectively. Leaf water loss rate (k) was significantly different among tree species and markedly linearly decreased with increasing leaf area and leaf mass for simple-leaved tree species. In conclusion, the existence of a cross-species trade-off between the size of individual leaves and the number of leaves per yearly twig unit was confirmed in that temperate forest. There was strongly negative correlation between leaf water loss and leaf size across tree species, which provides evidences for leaf size in leaf temperature regulation in dry environment with strong radiation. The size-dependent leaf water relation is of central importance to recognize the functional role of leaf size in a changing climate including rapid changes in air temperature and rainfall.
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spelling pubmed-63691742019-02-18 The Smaller the Leaf Is, the Faster the Leaf Water Loses in a Temperate Forest Wang, Cunguo He, Junming Zhao, Tian-Hong Cao, Ying Wang, Guojiao Sun, Bei Yan, Xuefei Guo, Wei Li, Mai-He Front Plant Sci Plant Science Leaf size (i.e., leaf surface area and leaf dry mass) profoundly affects a variety of biological carbon, water and energy processes. Therefore, the remarkable variability in individual leaf size and its trade-off with total leaf number in a plant have particularly important implications for understanding the adaption strategy of plants to environmental changes. The various leaf sizes of plants growing in the same habitat are expected to have distinct abilities of thermal regulation influencing leaf water loss and shedding heat. Here, we sampled 16 tree species co-occurring in a temperate forest in northeastern China to quantify the variation of leaf, stomata and twigs traits, and to determine the relationships of leaf size with leaf number and leaf water loss. We examined the right-skewed distributions of leaf size, leafing intensity, stomatal size and stomatal density across species. Leafing intensity was significantly negatively correlated with leaf size, accounting for 4 and 12% of variation in leaf area and leaf mass, respectively. Species was the most important factor in explaining the variation in leaf size (conditional R(2) of 0.92 for leaf area and 0.82 for leaf mass). Leaf area and mass significantly increased with increasing diameter of twigs. Leaf water loss was strongly negatively correlated with leaf area and leaf mass during the first four hours of the measurement. Leaf area and leaf mass accounted for 38 and 30% of variation in total leaf water loss, respectively. Leaf water loss rate (k) was significantly different among tree species and markedly linearly decreased with increasing leaf area and leaf mass for simple-leaved tree species. In conclusion, the existence of a cross-species trade-off between the size of individual leaves and the number of leaves per yearly twig unit was confirmed in that temperate forest. There was strongly negative correlation between leaf water loss and leaf size across tree species, which provides evidences for leaf size in leaf temperature regulation in dry environment with strong radiation. The size-dependent leaf water relation is of central importance to recognize the functional role of leaf size in a changing climate including rapid changes in air temperature and rainfall. Frontiers Media S.A. 2019-02-04 /pmc/articles/PMC6369174/ /pubmed/30778364 http://dx.doi.org/10.3389/fpls.2019.00058 Text en Copyright © 2019 Wang, He, Zhao, Cao, Wang, Sun, Yan, Guo and Li. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Wang, Cunguo
He, Junming
Zhao, Tian-Hong
Cao, Ying
Wang, Guojiao
Sun, Bei
Yan, Xuefei
Guo, Wei
Li, Mai-He
The Smaller the Leaf Is, the Faster the Leaf Water Loses in a Temperate Forest
title The Smaller the Leaf Is, the Faster the Leaf Water Loses in a Temperate Forest
title_full The Smaller the Leaf Is, the Faster the Leaf Water Loses in a Temperate Forest
title_fullStr The Smaller the Leaf Is, the Faster the Leaf Water Loses in a Temperate Forest
title_full_unstemmed The Smaller the Leaf Is, the Faster the Leaf Water Loses in a Temperate Forest
title_short The Smaller the Leaf Is, the Faster the Leaf Water Loses in a Temperate Forest
title_sort smaller the leaf is, the faster the leaf water loses in a temperate forest
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6369174/
https://www.ncbi.nlm.nih.gov/pubmed/30778364
http://dx.doi.org/10.3389/fpls.2019.00058
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