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首页> 外文期刊>Trees. Structure and Function >Photosynthetic capacity of Eucalyptus globulus is higher when grown in mixture with Acacia mearnsii.
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Photosynthetic capacity of Eucalyptus globulus is higher when grown in mixture with Acacia mearnsii.

机译:当与小金合欢混合种植时,桉树的光合能力较高。

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Mixed species plantations of Eucalyptus and N2-fixing species can be significantly more productive than monocultures. The aim of this study was to determine whether the improved growth resulted from increases in photosynthesis, light absorption and light-use efficiency, in addition to previously measured increases in leaf area, water-use efficiency and higher ratios of annual above-ground net primary production per unit of total annual below-ground carbon allocation in 1:1 mixtures near Cann River, Victoria, Australia. Light-saturated photosynthetic rate (Amax), electron transport (J), stomatal conductance (gs) and foliar nitrogen concentrations were higher for Eucalyptus globulus trees growing in mixtures than those in monocultures. Similar increases in maximum rates of carboxylation (Vcmax), Rubisco, chlorophyll, and phosphorus concentrations were not significant. In contrast, Amax, Vcmax and J did not vary between mixtures and monocultures for A. mearnsii, whose growth was negligible by age 15 years. Mixtures also absorbed 24 and 41% more light than E. globulus and A. mearnsii., respectively, and were 38 and 154% more light-use efficient in the mixtures compared to monocultures. The increased nutrient availability in mixtures appeared to increase productivity of E. globulus by increasing the photosynthetic capacity of the foliage, as well as the leaf area, light absorption and light-use efficiency of the canopy.
机译:桉树和固定N 2 的混合物种人工林的生产力要比单一栽培高得多。这项研究的目的是确定生长的改善是否是由于光合作用,光吸收和光利用效率的提高,以及先前测得的叶面积,水利用效率的提高和年度地上净初级生比例的增加所致。在澳大利亚维多利亚州坎恩河附近以1:1混合气的单位地下总碳年度总产量。光饱和光合速率( A max ),电子传输( J ),气孔电导( g s )和混合种植的 Eucalyptus globulus 树木的叶面氮浓度高于单一栽培。最大羧化速率( V cmax ),Rubisco,叶绿素和磷浓度的相似增加并不显着。相反, A max , V cmax 和 J 在混合物之间没有变化和 A的单一文化。 mearnsii ,到15岁时其增长可忽略不计。混合物还吸收了比E多24和41%的光。球和 A。与单一培养相比,混合物中的光利用效率分别提高了38%和154%。混合物中养分利用率的增加似乎提高了E的生产率。通过增加树叶的光合作用能力以及冠层的叶面积,光吸收和光利用效率来提高球茎的光度。

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