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[光照强度对入侵物种三叶鬼针草表型可塑性的影响]

[Effects of light intensity on the phenotypic plasticity of invasive species Ambrosia trifida].

作者信息

Wang Rui, Sun Bei, Li Jian-Dong, Wang Guo-Jiao, Sun Jia-Nan, Wang Xin-Ruo, Zhong Ri-Ting

机构信息

College of Agronomy, Shenyang Agricultural University, Shenyang 110866, China.

出版信息

Ying Yong Sheng Tai Xue Bao. 2012 Jul;23(7):1797-802.

Abstract

Through artificial shading, this paper studied the phenotypic plasticity of invasive species Ambrosia trifida in its morphology, biomass allocation, and photosynthesis characteristics in response to different light intensities. As compared with the control, shading increased the stem height, crown width, leaf area, specific leaf area, and the proportion of leaf biomass in total biomass of A. trifida significantly, but decreased the total biomass, biomass per unit leaf area, and root to shoot ratio. Under natural light condition, the crown width and leaf area were smaller and the root to shoot ratio was larger, which benefited the decrease of water loss under high temperature and high light intensity and manifested the stronger phenotypic plasticity of A. trifida in its morphology and biomass allocation in response to different light intensities. Under shading, the mean daily net photosynthetic rate, transpiration rate, and stomatal conductance decreased, while the stomatal CO2 concentration increased. At noon when the light intensity was the highest, the photosynthetic rate, transpiration rate, and stomatal conductance under low shading reached the maximum. Under moderate shading and high shading, the chlorophyll content increased significantly, and the chlorophyll a/b had a significant decrease, which could improve the utilization of light energy by A. trifida under shading environment.

摘要

通过人工遮荫,本文研究了入侵物种三叶鬼针草在形态、生物量分配和光合特性方面对不同光照强度的表型可塑性。与对照相比,遮荫显著增加了三叶鬼针草的茎高、冠幅、叶面积、比叶面积以及叶生物量在总生物量中的比例,但降低了总生物量、单位叶面积生物量和根冠比。在自然光条件下,冠幅和叶面积较小,根冠比更大,这有利于在高温高光强下减少水分损失,表明三叶鬼针草在形态和生物量分配方面对不同光照强度具有较强的表型可塑性。在遮荫条件下,日均净光合速率、蒸腾速率和气孔导度降低,而气孔CO₂浓度升高。在光照强度最高的中午,低遮荫下的光合速率、蒸腾速率和气孔导度达到最大值。在中度遮荫和高度遮荫下,叶绿素含量显著增加,叶绿素a/b显著降低,这可以提高三叶鬼针草在遮荫环境下对光能的利用。

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