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三个耐旱树种木质部栓塞化的脆弱性及其恢复能力

Studies on the Xylem Draught-Tolerant Characteristics of Three Draught-Tolerant Tree Species.

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【作者】 申卫军彭少麟张硕新

【Author】 Shen Weijun, Peng Shaolin( Southern China institute of Botany, CAS, Guangzhou 510650), Zhang Shuoxin (Faculty of Resources, Northwestern Forestry University, Yangling, Shaanxi 712100).

【机构】 中国科学院华南植物研究所!广州510650西北林学院!陕西杨凌712100

【Abstract】 The xylem embolism vulnerability and refilling ability were measured in one-year-old twigs of three draught-tolerant tree species, which were Ulmus pumila L., Hippophae rhamnoides L., and Corylus heterophylla Fisch., and three types of vulnerability curves for them were also established. The results showed that the water potential threshold for inducing embolism in three species was -0 1-0 3MPa, and the embolism reached its maximum value at the water potential of -2 5-3 5MPa. The xylem embolism vulnerability of three species was in the order of Hippophae> Ulmus> Corylus. The refilling of embolized xylem could occur while the water potential is below zero in all the species. In Hippophae, fully restoring occurred after thirty minutes under the water potential of -0 5MPa and -1 0MPa, but for Ulmus and Corylus, the restoration could reach about 90% in thirty minutes under the water potential of -0 60MPa and -0 34MPa, respectively. Ulmus could restore fully through one night (12hours) under the water potential of -0 59MPa. The refilling capacity of three species was Hippophae> Ulmus> Corylus . The xylem of the three draught-tolerant species is not only very vulnerable to embolization or very sensible to water stress but also capable of refilling its embolized xylem in a short period of time. Vulnerable and drought-tolerant species had significant xylem embolism in higher water potential, which decreased the hydraulic conductivity so that limited water loss. Drought-tolerant species had more ability to refill its embolized xylem in a short period of time. These were the ways through which trees resist and tolerate drought or water stress.

【基金】 国家自然科学基金青年基金项目!( 394 0 0 1 0 3);国家自然科学基金重大项目!( 39899370 )
  • 【文献出处】 生态学杂志 ,Chinese Journal of Ecology , 编辑部邮箱 ,2000年06期
  • 【分类号】S718
  • 【被引频次】44
  • 【下载频次】393
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