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Altitudinal variations of hydraulic traits in Faxon fir(Abies fargesii var.faxoniana):Mechanistic controls and environmental adaptability
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作者 Shao-an Pan Guangyou Hao +3 位作者 Xuhua Li Qiuhong Feng Xingliang Liu Osbert J.Sun 《Forest Ecosystems》 SCIE CSCD 2022年第3期427-438,共12页
Global climate change has been seen to result in marked impacts on forest ecosystems such as accelerated tree mortality worldwide due to incidental hydraulic failure caused by intensified and more frequent occurrence ... Global climate change has been seen to result in marked impacts on forest ecosystems such as accelerated tree mortality worldwide due to incidental hydraulic failure caused by intensified and more frequent occurrence of extreme drought and heat-waves.However,it is well understood how the tree hydrological strategies would adjust to environmental variability brough about by climate changes.Here we investigated the hydraulic adjustment as a mechanism of acclimation to different climate conditions along an altitudinal gradient in Faxon fir(Abies fargesii var.faxoniana)–a tree species that plays a key role in conservation of wildlife and maintenance of ecosystem services in subalpine forests.The hydraulic traits and selective morphological and physiological variables were measured seasonally along an altitudinal gradient from 2,800 to 3,600 m a.s.l.We found that the native percentage loss of conductivity(PLC)increased with altitude across the seasonal measurements.Both the native sapwood-specific hydraulic conductivity(Ks)and native leaf-specific hydraulic conductivity(Kl)significantly decreased with altitude for measurements in July and October,coinciding with the timing for peak growth and pre-dormancy,respectively.The morphological traits varied toward more conservative tree hydrological strategies with increases in altitude,exhibiting trade-offs with hydraulic traits.The total non-structural carbohydrates in both needle(NSCNeedle)and branch(NSCBranch)as well as photosynthetic capacity of current-year leaves played variable roles in maintaining the integrity of the hydraulic functioning and shaping the hydraulic adjustment under prevailing environmental conditions.Our findings indicate that Faxon fir possesses some degree of hydraulic adaptability to water limitation imposed by climate fluctuations in subalpine region through morphological and physiological modifications. 展开更多
关键词 Climate change Eco-safety Environmental vulnerability faxon fir Hydraulic risk Habitat constraints Water stress SUBALPINE
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川西亚高山箭竹-岷江冷杉原始林优势树种的空间格局分析 被引量:3
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作者 刘文敬 徐雨 +1 位作者 王浪杰 缪宁 《林业资源管理》 北大核心 2014年第6期85-90,共6页
箭竹-岷江冷杉林是川西亚高山暗针叶林的重要类型,研究其优势树种的空间分布格局和空间关联性对其恢复和保育具有参考意义。采用林木定位调查法,分别用Ripley’s L(t)和L12(t)函数分析群落中优势树种的空间分布格局和空间关联。结... 箭竹-岷江冷杉林是川西亚高山暗针叶林的重要类型,研究其优势树种的空间分布格局和空间关联性对其恢复和保育具有参考意义。采用林木定位调查法,分别用Ripley’s L(t)和L12(t)函数分析群落中优势树种的空间分布格局和空间关联。结果表明:群落的优势树种为岷江冷杉(Abies faxoniana)、红桦(Betula albosinensis)和云杉(Picea asperata),群落层次结构分明。3个优势树种在小尺度上均为聚集分布,其分布格局随尺度增大而变化。岷江冷杉种群在0-11m的尺度上呈聚集分布,而在11-20m的尺度上呈随机分布;红桦种群在0-14m的尺度上呈聚集分布,而在14-20m的尺度上呈随机分布;云杉种群在0-20m尺度上均呈聚集分布。3个优势树种间的空间关联性在0-20m尺度上均呈显著的相互独立关系,表明它们相互之间作用微弱。 展开更多
关键词 箭竹-岷江冷杉林 空间分布格局 空间关联 优势树种 点格局分析 川西亚高山
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