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机构地区:[1]国家开放大学农林医药学院北京100039 [2]北京林业大学省部共建森林培育与保护教育部重点实验室,北京100083 [3]国家林业局林产工业规划设计院,北京100010
出 处:《西北林学院学报》2014年第4期54-58,共5页Journal of Northwest Forestry University
基 金:国家林业公益性行业科研专项经费重大项目(201004004);北京市自然科学基金(6052016)”;北京林业大学“985”优势学科创新平台开放基金(000-1108003)
摘 要:为探明银杏(Ginkgo biloba)枝叶水势、水容特征及其对树干边材液流的调节和影响。利用热扩散式边材液流检测技术、压力室技术等对其树干边材液流、枝叶水势、水容等进行测定。结果表明,春、夏、秋三季银杏树干边材平均液流速率分别为(1.11±0.76)×10-3、(0.82±0.58)×10-3、(0.94±0.21)×10-3 cm·s-1,三者之间无显著差异。银杏枝条与叶片水势、水容具有相似的"V"型日变化。整个生长季,银杏枝条和叶片平均水势分别为(-1.74±0.24)MPa和(-1.80±0.20)MPa;枝条和叶片水容分别为(0.38±0.02)×10-3 g·cm-3·MPa-1和(5.83±1.9)×10-3 g·cm-3·MPa-1。银杏枝叶水势、水容与树干边材液流速率呈负相关,共同作用和调节其蒸腾耗水,但不同时段其主导因子不同。In order to clarify the twig and leaf water potential and capacitance of Ginkgo biloba and its regu- lating and impacting on sap flow, sap flow velocity (Vsf) , twig and leaf water potential φ and water capacitance(C) were measured by using thermal dissipation sap flow velocity probe (TDP) and pressure chamber. The results showed that the average values of daily Vsf were (1.11±0.76)×10^-3, ( 0.82± 0.58)×10^-3 and (0.94±0.21)×10^-3 cm · s^-1 in spring, summer and autumn, respectively. But the difference of V4 in three seasons was not significant. It was a "V" curve for diurnal variation of G. biloba twig and leaf φ, and C. Through the entire growth season, the average values of twig and leaf φ were (-1.74±0.24) and (--1.80±0.20) MPa, and the C were (0.38±0.02) and (5.83± 1.9) ×10^-3g · cm^-3 · MPa^-1 , respectively. And the relationships between Vsf and φ and C were opposite. In conclusion, water transpiration and use of G. biloba was regulated and controlled together by twig and leaf water capacitance, water potential, but in different times the dominant factors were different.
分 类 号:S792.95[农业科学—林木遗传育种]
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