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Leaf hydraulics coordinated with leaf economics and leaf size in mangrove species along a salinity gradient

作     者:Jing-Jing Cao Jing Chen Qing-Pei Yang Yan-Mei Xiong Wei-Zheng Ren De-Liang Kong Jing-Jing Cao;Jing Chen;Qing-Pei Yang;Yan-Mei Xiong;Wei-Zheng Ren;De-Liang Kong

作者机构:College of ForestryHenan Agricultural UniversityZhengzhou450002China Research Institute of Tropical ForestryChinese Academy of ForestryGuangzhou510520China 

出 版 物:《Plant Diversity》 (植物多样性(英文版))

年 卷 期:2023年第45卷第3期

页      面:309-314页

核心收录:

学科分类:0710[理学-生物学] 07[理学] 0713[理学-生态学] 

基  金:This study was funded by the National Natural Science Foundation of China(32171746,31870522 and 31670550) Special Foundation for National Science and Technology Basic Research Program of China(2019FY101300) the Scientific Research Foundation of Henan Agricultural University(30500854). 

主  题:Leaf hydraulics Leaf economics Plant size Salty stress Ecophysiology Mangrove Intraspecific 

摘      要:Independence among leaf economics,leaf hydraulics and leaf size confers plants great capability in adapting to heterogeneous environments.However,it remains unclear whether the independence of the leaf traits revealed across species still holds within species,especially under stressed conditions.Here,a suite of traits in these dimensions were measured in leaves and roots of a typical mangrove species,Ceriops tagal,which grows in habitats with a similar sunny and hot environment but different soil salinity in southern China.Compared with C.tagal under low soil salinity,C.tagal under high soil salinity had lower photosynthetic capacity,as indicated directly by a lower leaf nitrogen concentration and higher water use efficiency,and indirectly by a higher investment in defense function and thinner palisade tissue;had lower water transport capacity,as evidenced by thinner leaf minor veins and thinner root vessels;and also had much smaller single leaf area.Leaf economics,hydraulics and leaf size of the mangrove species appear to be coordinated as one trait dimension,which likely stemmed from covariation of soil water and nutrient availability along the salinity gradient.The intraspecific leaf trait relationship under a stressful environment is insightful for our understanding of plant adaption to the multifarious environments.

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