Shrub leaf area and leaf vein trait trade-offs in response to the light environment in a vegetation transitional zone

IF 2.6 4区 生物学 Q2 PLANT SCIENCES Functional Plant Biology Pub Date : 2024-04-15 DOI:10.1071/fp24011
Dingyue Liu, Chengzhang Zhao, Geyang Li, Zhini Chen, Suhong Wang, Chenglu Huang, Peixian Zhang
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Abstract

The leaf is an important site for energy acquisition and material transformation in plants. Leaf functional traits and their trade-off mechanisms reflect the resource utilisation efficiency and habitat adaptation strategies of plants, and contribute to our understanding of the mechanism by which the distribution pattern of plant populations in arid and semi-arid areas influences the evolution of vegetation structure and function. We selected two natural environments, the tree–shrub community canopy area and the shrub–grass community open area in the transition zone between the Qinghai–Tibet Plateau and the Loess Plateau. We studied the trade-off relationships of leaf area with leaf midvein diameter and leaf vein density in Cotoneaster multiflorus using the standardised major axis (SMA) method. The results show that the growth pattern of C. multiflorus, which has small leaves of high density and extremely small vein diameters, in the open area. The water use efficiency and net photosynthetic rate of plants in the open area were significantly greater than those of plants growing in the canopy area. The adaptability of C. multiflorus to environments with high light and low soil water content reflects its spatial colonisation potential in arid and semiarid mountains.

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灌木叶面积和叶脉性状对植被过渡带光环境的权衡反应
叶片是植物获取能量和进行物质转化的重要场所。叶片的功能性状及其权衡机制反映了植物的资源利用效率和生境适应策略,有助于我们理解干旱和半干旱地区植物种群分布格局对植被结构和功能演化的影响机制。我们选择了青藏高原与黄土高原过渡带的乔灌木群落冠层区和灌木-禾本科群落开阔区这两种自然环境。我们采用标准化主轴(SMA)方法研究了多花栒子叶面积与叶中脉直径和叶脉密度的权衡关系。结果表明,多花栒子在开阔地带的生长模式是叶片小而密度大,叶脉直径极小。露地植物的水分利用效率和净光合速率明显高于冠层植物。多花甘蓝对高光照和低土壤含水量环境的适应性反映了其在干旱和半干旱山区的空间定殖潜力。
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来源期刊
Functional Plant Biology
Functional Plant Biology 生物-植物科学
CiteScore
5.50
自引率
3.30%
发文量
156
审稿时长
1 months
期刊介绍: Functional Plant Biology (formerly known as Australian Journal of Plant Physiology) publishes papers of a broad interest that advance our knowledge on mechanisms by which plants operate and interact with environment. Of specific interest are mechanisms and signal transduction pathways by which plants adapt to extreme environmental conditions such as high and low temperatures, drought, flooding, salinity, pathogens, and other major abiotic and biotic stress factors. FPB also encourages papers on emerging concepts and new tools in plant biology, and studies on the following functional areas encompassing work from the molecular through whole plant to community scale. FPB does not publish merely phenomenological observations or findings of merely applied significance. Functional Plant Biology is published with the endorsement of the Commonwealth Scientific and Industrial Research Organisation (CSIRO) and the Australian Academy of Science. Functional Plant Biology is published in affiliation with the Federation of European Societies of Plant Biology and in Australia, is associated with the Australian Society of Plant Scientists and the New Zealand Society of Plant Biologists.
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