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应用生态学报 ›› 2003, Vol. ›› Issue (3): 331-335.

• 研究论文 • 上一篇    下一篇

空气CO2增高条件下荔枝叶片光合作用和超氧自由基产率

孙谷畴, 曾小平, 赵平, 彭少麟   

  1. 中国科学院华南植物研究所, 广州 510650
  • 收稿日期:2001-05-10 修回日期:2001-07-16
  • 通讯作者: 曾小平
  • 基金资助:
    国家自然科学基金项目(30270239);中国科学院知识创新工程领域前沿项目;广东省自然科学基金团队项目(030031);中国科学院华南植物研究所所长基金资助项目

Photosynthesis and free radical yield of Litchi chinensis leaves under increased CO2 partial pressure in atmosphere

SUN Guchou, ZENG Xiaoping, ZHAO Ping, PENG Shaolin   

  1. South China Institute of Botany, Chinese Academy of Sciences, Guangzhou 510650, China
  • Received:2001-05-10 Revised:2001-07-16

摘要: 研究结果表明,生长在77±5PaCO2分压下30d的荔枝幼树,其光合速率较大气CO2分压(39.3Pa)下的低23%,光下线粒体呼吸速率和不包含光下呼吸的CO2补偿点亦略有降低.空气CO2增高使叶片最大羧化速率(Vcmax)和最大电子传递速率(Jmax)降低,表明大气增高CO2分压下叶片的光系统I(PSI)能量水平较低,叶片超氧自由基产率亦降低39%,叶片感染荔枝霜疫霉病率则从生长在大气CO2分压下的1.8%增至9.5%.可能较低光合和呼吸代谢诱致较低的超氧自由基产率,而使叶片易受病害侵染.叶片受病害侵染后表现为超氧自由基的激增.在全球大气CO2分压增高趋势下须加强对荔枝霜疫霉病的控制.

关键词: 空气CO2分压, 荔枝, 光合作用, 氧自由基产率, 神经毒性, 药品和个人护理产品, 氧化胁迫, 消化毒性, 复合暴露

Abstract: .The maximum photosynthetic rate of litchi saplings leaves grown under a CO2 partial pressure of 77?5 Pa was 23% lower than that of 39.3 Pa, and slight decreases in respiration rate in light and CO2 compensation point excluding of respiration in light were observed. The maximum rates of carboxylation (Vcmax) and photosynthetic electron transport (Jmax) were decreased in saplings grown under 77?5 Pa CO2 partial pressure. It may suggest that there was a lower energy level of photosystem I(PSI) in the saplings leaves under 77?5 Pa CO2 partial pressure, and free radical yield decreased by 39% in the saplings under 77?5 Pa CO2, as comparied with that under atmospheric CO2. The percentage of infection by Peronophythora litchi increased from 1.8% under atmospheric CO2 to 9.5% under enriched CO2. It may mean that the decreasing photosynthetic and respiration metabolism would make it lower the production of O2-., and leaves were infected by P.litchi more easily. The controlling of the popularization of P.litchi for litchi plantation must be paid wide attention,as air CO2 partial pressure will increase continuously.

Key words: Increasing air CO2 pressure, Litchi chinensis, Photosynthesis Free redical yield, combined exposure, oxidative stress, PPCPs, neurotoxicity, digestive toxicity.

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