Linkage between seasonal photosynthesis and hydraulic acclimation of different paper birch populations in Canada
Linkage between seasonal photosynthesis and hydraulic acclimation of different paper birch populations in Canada
批准号:
238891-2006
负责人:
Wang, Jian
金额:
$1.41万
依托单位:
依托单位国家:
加拿大
项目类别:
Discovery Grants Program - Individual
财政年份:
2006
资助国家:
加拿大
项目状态:
已结题
起止时间:
2006-01-01 至 2007-12-31
中文摘要
纸桦(Betula papyrifera Marsh.)是加拿大北方森林中商业上最重要的硬木树种之一。它的经济重要性在未来可能会增加,因为它被用于生产增值木材产品,如胶合板和家具。它也是北方阔叶树-针叶树混合物的重要生态组成部分。白桦种群在生长、形态和耐旱性等方面存在较大的遗传变异。然而,很少有研究集中在一个单一的物种在广泛的环境条件下的变异性。例如,水分运输机制的遗传可塑性可能是物种适应干旱生境的一个因素。正如世界各地的专家预测,我们的北方气候将变得更加温暖和干燥。这种气候变化肯定会影响我们的森林生态系统,例如落叶和万年青针叶树之间的关系。了解纸桦树对气温升高、生长季节延长和干燥环境的反应,可以加强我们预测纸桦树如何应对气候变化的能力。水力特性,或植物将水从土壤输送到叶子的能力,在确定植物如何响应水的可用性和设定最大气体交换速率方面都很重要。在建议的项目中,我将使用一个共同的花园实验种植纸桦树从不同的栖息地,主要是沿着水分梯度,以检查不同的桦树种群的水分关系。同时,我将通过控制土壤水分和大气CO2浓度的温室实验来研究不同白桦种群对水分胁迫和CO2增加的反应。在田间和温室实验中,我将测量整个生长季节桦树茎的导水率和叶片的光合速率。在造林实践中,知识将提供指导,更好地管理纸桦/针叶树混合物种的森林在加拿大北部和落叶地区。
英文摘要
Paper birch (Betula papyrifera Marsh.) is one of the commercially most important hardwood species in Canada's boreal forests. Its economic importance may increase in the future as it is used to produce value-added wood products such as veneer and furniture. It is also an ecologically important component of boreal broadleaf-conifer mixture. There are considerable genetic variations among birch populations for growth, morphology and drought tolerance. However, few studies have focused on the variability within a single species over a broad range of environmental conditions. For example, genetic plasticity of water transporting mechanism would be a factor that permits the species adaptation to drier habitats. As predicted by experts around the world, our boreal climate will become warmer and drier. This climatic change will definitely affect our forest ecosystem, such as the relationship between deciduous and evergreen conifers. Understanding the responses of paper birch trees to increased air temperature, prolonged growing season and a drier environment can strengthen our ability to predict how paper birch will respond to climate change. Hydraulic properties, or the capabilities of plants to transport water from soil to leaves, are important both in determining how plants respond to water availability and in setting maximum rate of gas exchange. In the proposed project I will use a common garden experiment planting paper birch trees from different habitats mainly along a moisture gradient to examine water relationships of different birch populations. At the same time I will use a greenhouse experiment by controlling soil moisture and atmospheric CO2 concentration to examine how different birch populations respond to water stress and increased CO2. In both field and greenhouse experiments I will measure birch stem hydraulic conductivity, leaf photosynthetic rate throughout the growing season. In silvicultural practice, the knowledge will provide a guide for the better management of paper birch/conifer mixed-species forests in the Canadian boreal and deciduous regions.
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资助金额:$1.41万
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