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水分胁迫和温度对夏蜡梅叶片气体交换及叶绿素荧光的影响

[Effects of water stress and temperature on gas exchange and chlorophyll fluorescence of Sinocalycanthus chinensis leaves].

作者信息

Ke Shi-sheng, Jin Ze-xin

机构信息

Ecology Institute of Taizhou University, Linhai, Zhejiang, China.

出版信息

Ying Yong Sheng Tai Xue Bao. 2008 Jan;19(1):43-9.

Abstract

Sinocalycanthus chinensis is an endangered species in Sinocalycanthus, and only distributed in Zhejiang Province of China. This paper studied the photosynthetic responses of 2-year-old pot-cultured S. chinensis to different levels of water stress and temperature. The results indicated that under mild and moderate water stress, the net photosynthetic rate (Pn) of S. chinensis leaves was decreased to 92.3% and 74.3% of the control, respectively, which was mainly attributed to stomatal limitation; and under severe water stress, the Pn was decreased to 44.4% of the control, which might be mainly linked to non-stomatal limitation. The appropriate temperature for S. chinensis photosynthesis was from 20 degrees C to 28 degrees C. At 39 degrees C, the Pn, water use efficiency (WUE), and maximal photochemistry efficiency (Fv/Fm) were decreased significantly, while the dark respiration rate (Rd) and transpiration rate (Tr) were enhanced significantly. With increasing water stress and temperature, some photosynthetic parameters including light saturation point (LSP), apparent quantum yield (AQY) and maximal CO2 assimilation rate (Pmax) decreased to certain extents, while light compensation point (LCP) increased, suggesting that both severe water stress and higher temperature were the important environmental factors affecting the survival of S. chinensis.

摘要

夏蜡梅是蜡梅科夏蜡梅属的濒危植物,仅分布于中国浙江省。本文研究了两年生盆栽夏蜡梅对不同程度水分胁迫和温度的光合响应。结果表明,在轻度和中度水分胁迫下,夏蜡梅叶片的净光合速率(Pn)分别降至对照的92.3%和74.3%,这主要归因于气孔限制;在重度水分胁迫下,Pn降至对照的44.4%,这可能主要与非气孔限制有关。夏蜡梅光合作用的适宜温度为20℃至28℃。在39℃时,Pn、水分利用效率(WUE)和最大光化学效率(Fv/Fm)显著降低,而暗呼吸速率(Rd)和蒸腾速率(Tr)显著增强。随着水分胁迫和温度的增加,包括光饱和点(LSP)、表观量子产率(AQY)和最大CO2同化速率(Pmax)在内的一些光合参数在一定程度上降低,而光补偿点(LCP)升高,这表明重度水分胁迫和较高温度都是影响夏蜡梅生存的重要环境因素。

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