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孑遗植物银杏(Ginkgo biloba L.)伴性光合生理特征与进化生态
引用本文:金静,江洪,余树全,周国模. 孑遗植物银杏(Ginkgo biloba L.)伴性光合生理特征与进化生态[J]. 生态学报, 2008, 28(3): 1128-1136
作者姓名:金静  江洪  余树全  周国模
作者单位:1. 南京大学国际地球系统科学研究所,南京210093; 2.浙江林学院国际空间生态与生态系统生态研究中心,杭州311300
摘    要:银杏类是一类古老的雌雄异株植物,目前仅存单科单属。由于银杏在系统发育等方面的独特地位,吸引了科学家从不同方面进行了广泛的研究。在适宜的条件下,测定了生长在野外环境下的成年银杏的雌雄个体的光合特性。 研究结果表明,银杏的雌雄植株对光具有相同的表现趋势,光饱和点,光补偿点,光下呼吸速率等均没有明显差异。但是雌性银杏的净光合速率明显大于雄性银杏的净光合速率。这种差异可能与雌性个体在繁衍后代时需要投入更多的能量有关。研究也表明,在与其它的裸子植物和被子植物比较时,银杏的光合能力并没有明显的弱势,因此光合能力可能并不是银杏在第三纪分布受限的直接原因.

关 键 词:银杏(Ginkgo biloba L.);光合;进化
收稿时间:2007-09-06
修稿时间:2008-01-20

Sex-linked photosynthetic physiologic research and the evolutionary ecological analysis in relict plant, Ginkgo biloba L.
JIN Jing,JIANG Hong,YU Shuquan and ZHOU Guomo. Sex-linked photosynthetic physiologic research and the evolutionary ecological analysis in relict plant, Ginkgo biloba L.[J]. Acta Ecologica Sinica, 2008, 28(3): 1128-1136
Authors:JIN Jing  JIANG Hong  YU Shuquan  ZHOU Guomo
Affiliation:International Institute for Earth Syterm Science, Nanjing University, Nanjing 210093, China
nternational Research Center of Spatial Ecology and Ecosystem Ecology, Zhejiang Forestry University, Hangzhou 311300, China
Abstract:Ginkgoes are ancient dioecious plants. Present, only Ginkgo biloba L., is exist as a living fossil plant. Botanists had studied it from different aspects in the world,due to the unique characteristics of gingko. Plant (sex physiological ecology is still a knowledge gap in plant ecology. This article measured the photosynthetic traits of the adult male and female ginkgo which grown in the suitable environment condition. The result indicated that the male and female ginkgo had similar response to light. The light saturate points (LSP), light compensate point (LCP) and dark respiration rate (Rd) between male and female were also no significant differences, however the net photosynthesis rate (Pn) of female ginkgo is significantly higher than male. From the vision of evolution, through comparison with other gymnosperms and angiosperms, the photosynthetic capacity of ginkgo is not obviously lower than other plants. It gave us a clue that the photosynthetic capacity is not the direct reason which restrict the distribution of ginkgo in tertiary.
Keywords:Ginkgo biloba   photosynthesis   evolution
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