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Root distribution of Eucalyptus nitens and E-globulus in irrigated and droughted soil

机译:灌溉和干旱土壤中桉树和电子小球的根系分布

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Root development of Eucalyptus globulus Labill. and E. nitens (Deane and Maiden) Maiden grown in Tasmania was compared between treatments that had been continually irrigated since establishment or subjected to cycles of drought stress. Roots in diameter classes 1-2, >2-5, >5-10 and >10 mm were sampled and their frequency recorded in trench walls excavated to bedrock. Length and mass of roots from each diameter class were measured from cores taken from depths 0-10, 10-20 and 20-30 cm. Root length density (RLD) and root frequency (RF) in trench walls were greater in droughted than irrigated soil of both species, in smaller diameter than larger diameter roots and in shallower than deeper soil. E. nitens had greater RLD, root mass density (RMD) and RF than E. globulus. E. nitens had a larger and deeper root system than E. globulus with a greater proportion of RLD, RMD and RF below 10 cm. Reducing the irrigation load during the growth cycle will stimulate additional root development in irrigated or effluent-irrigated plantations, reducing windthrow.
机译:桉树Labill的根发育。和塔斯马尼亚州的E. nitens(Deane和Maiden)将自塔斯马尼亚州建立以来一直灌溉或遭受干旱胁迫的处理方法进行比较。采样直径为1-2,> 2-5,> 5-10和> 10 mm的根,并将其频率记录在开挖至基岩的沟渠壁中。从取自深度0-10、10-20和20-30厘米的岩心测量每个直径类别的根的长度和质量。干旱的沟槽壁的根长密度(RLD)和根频率(RF)均高于两种土壤的灌溉土壤,其直径小于直径较大的根,而深度则小于较深的土壤。与球形小球藻相比,大肠球菌具有更大的RLD,根质量密度(RMD)和RF。与10厘米以下的小球藻相比,大肠埃希氏菌的根系更大,更深,RLD,RMD和RF的比例更大。在生长周期中减少灌溉负荷将刺激灌溉或污水灌溉的人工林中更多的根系发育,从而减少风吹。

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