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生态学杂志 ›› 2011, Vol. 30 ›› Issue (11): 2427-2431.

• 研究报告 • 上一篇    下一篇

不同光照水平下白酒草(Conyza japonica)对氮、镁的差异性吸收

叶小齐1, 2,孟金柳1, 2,曾波2**,吴明1   

  1. 1中国林业科学研究院亚热带林业研究所, 浙江富阳 311400;2西南大学生命科学学院, 三峡库区生态环境教育部重点实验室, 重庆 400715
  • 出版日期:2011-11-08 发布日期:2011-11-08

Differential absorption of nitrogen and magnesium by Conyza japonica plants under different illumination levels.

YE Xiao-qi1,2, MENG Jin-liu1,2, ZENG-Bo2**, WU Ming1   

  1. 1 Institute of Subtropical Forestry, Chinese Academy of Forestry, Fuyang 311400, Zhejiang, China; 2Key Laboratory of the Ecology and Environments in the Three Gorges Reservoir Region, Ministry of Education, School of Life Sciences, Southwest China University, Chongqing 400715, China
  • Online:2011-11-08 Published:2011-11-08

摘要: 为了揭示氮和镁在不同光照水平下对植物的重要性,研究了一年生草本植物白酒草(Conyza japonica)在不同光照水平下对氮和镁的吸收策略,测定了水培白酒草植株在高(168 ± 3) μmol·m-2·s-1、中(66 ± 1) μmol·m-2·s-1、低(23 ± 2) μmol·m-2·s-1 3个光照水平下对培养液中的氮和镁的吸收。结果表明:光照水平显著影响了白酒草对氮、镁的吸收。氮和镁的吸收随光照水平的变化呈相反的趋势:随光照水平升高,白酒草每单位生物量对氮的吸收增加,对镁的吸收减少,差异显著(P <0.05)。培养结束时,叶片单位叶鲜重叶绿素含量随光照水平降低而增加,单位叶面积叶绿素含量则以中度光照水平下的叶片最高(P<0.05)。这表明,白酒草适应高光照水平,将会增加对氮的吸收和光合相关酶的合成,以提高光合电子传递效率和羧化效率;低光照水平下植物增加镁的吸收和叶绿素的合成,以加强对光能的捕获。不同光照水平下植物对氮、镁的差异性吸收, 可能是光合作用适应于不同光照水平对氮、镁需求产生差异的结果。

关键词: 山地森林景观, 景观格局, 景观指数, 祁连山, 西水自然保护站

Abstract: Nitrogen and magnesium are two essential elements for plant photosynthesis. In this paper, annual Conyza japonica plants were hydroponically cultured in three climate chambers to study the nitrogen and magnesium absorption by the plants under three illumination levels (high, (168 ± 3) μmol·m-2·s-1; medium, (66 ± 1) μmol·m-2·s-1; and low, (23 ± 2) μmol·m-2·s-1), aimed to explore the nitrogen and magnesium absorption strategies of the plants under different illumination conditions. Illumination level had significant effects on the nitrogen and magnesium absorption by the plants. With the increasing level of illumination, the mass-based nitrogen absorption increased significantly, while the mass-based magnesium absorption was in adverse (P<0.05). The leaf area-based chlorophyll content increased with the decrease of illumination level,but the leaf mass-based chlorophyll content was the highest under medium illumination level and the lowest under low illumination level (P<0.05). These results suggested that under high illumination level, the plants increased their nitrogen absorption to synthesize more photosynthetic enzymes to improve electron transfer and carboxylation efficiency, whereas under low illumination level, they increased their magnesium absorption to synthesize more chlorophyll to capture more light energy. The differential absorption of nitrogen and magnesium by the C. japonica plants under different illumination levels could be explained by  their different requirements of nitrogen and magnesium for the photosynthesis under different illumination conditions.

Key words: Mountain forest landscape, Landscape pattern, Landscape indices, Qilian Mountains, Xishui Natural Reserve