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不同海拔下滇重楼叶片与花萼光合特性

高成杰,刘方炎,杨文云,周静,唐国勇,李昆**   

  1. (中国林业科学研究院资源昆虫研究所, 昆明 650224)
  • 出版日期:2015-01-10 发布日期:2015-01-10

Photosynthetic characteristics of leaf and calyx of Pairs polyphylla var. yunnanensis at different attitudes.

GAO Cheng-jie, LIU Fang-yan, YANG Wen-yun, ZHOU Jing, TANG Guo-yong,  LI Kun**   

  1. (Research Institute of Resource Insects, Chinese Academy of Forestry, Kunming 650224, China)
  • Online:2015-01-10 Published:2015-01-10

摘要:

2013年7月对云南省昆明(海拔2100 m)和者竜(海拔985 m)2个不同海拔地区人工荫棚种植下滇重楼叶片和花萼的光合特性进行了比较研究。结果表明:不同海拔下滇重楼叶片与花萼净光合速率(Pn)日变化曲线均呈不明显的“双峰”曲线,光合午休出现在14:00左右,叶片与花萼Pn最高峰值分别出现在10:00和12:00,空气温度(Ta)偏高和相对湿度(RH)偏低分别是导致者竜和昆明地区滇重楼“午降”的主要因素;昆明地区滇重楼叶片和花萼日均PnPnmaxLSP和初始量子效率较高,LCP、Rd较低,光合能力更高;昆明地区滇重楼花萼具有同叶片相似的光合特性,对光强的适应范围较大;但者竜地区滇重楼花萼Pnmax和LSP显著低于叶片,初始量子效率显著高于叶片(P<0.05),对光强的适应范围较小,对弱光的利用能力更高;去除花萼后,滇重楼果实干重显著降低,且者竜地区果实干重减少量显著低于昆明地区(P<0.05)。
 

关键词: 辽宁中部城市群, 碳足迹, 高分遥感影像

Abstract:

Photosynthetic characteristics of leaf and calyx of Pairs polyphylla var. yunnanensis in Kunming (2100 m a.s.l.) and Zelong (985 m a.s.l.) of Yunnan Province, Southwest China were investigated in July, 2013. The results showed that the diurnal variations of the net photosynthetic rates (Pn) of leaf and calyx at the two sites exhibited a doublepeak curve with a midday depression of photosynthesis at 14:00. The maximum Pn values of leaf and calyx were observed at 10:00 and 12:00, respectively. The relatively high temperature and low relative humidity attributed to the midday depression of photosynthesis of P. polyphylla var. yunnanensis in Kunming and Zelong, respectively. The daily average Pn, maximum Pn, light saturation point and initial quantum yield of either leaf or calyx in Kunming were higher than in Zelong, whereas the lower light compensation point and dark respiratory rates of leaf and calyx were found in Kunming, which implied a higher photosynthetic capacity of Pairs polyphylla var. yunnanensis in Kunming. The photosynthetic characteristics of calyx and leaf were similar in Kunming, which showed a wide adaptability of P. polyphylla var. yunnanensis to light. The maximum Pn and light saturation point of calyx were significantly lower (P<0.05) than those of leaf in Zelong, while the significantly higher initial quantum yield was observed for calyx, which revealed a narrow adaptability to light and a high utilization efficiency to weak light for calyx of P. polyphylla var. Yunnanensis at the low altitude site. Calyx removal resulted in the decrease of fruit dry mass, and the extent of decrease in Zhelong was significantly smaller than that in Kunming.
 

Key words: carbon footprint, central Liaoning agglomeration, high resolution remote sensing