桃李叶片叶绿素a荧光对温度胁迫的指示作用

E. G. Martinazzo, Aline Ramm, M. A. Bacarin
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引用次数: 46

摘要

生长在温带地区的植物经常受到高温造成的胁迫。光合作用是对高温胁迫最敏感的代谢过程之一,往往先于其他细胞功能受到抑制。以桃叶片为材料,研究了在25(对照)30、35、40和45℃的黑暗条件下,30分钟的瞬时叶绿素a荧光与气体交换的关系。温度高于35℃时,叶绿素a的瞬态荧光发生了显著变化,包括初始荧光(F0)增加,最大荧光值(FM)降低,K和L波段出现。净同化率随温度升高而减小,在45℃时达到负值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The chlorophyll a fluorescence as an indicator of the temperature stress in the leaves of Prunus persica
Plants growing in temperate regions are often exposed to stress conditions caused by high temperatures. Photosynthesis is one of the metabolic processes most sensitive to high temperature stress, and it is often inhibited before other cellular functions. Using peach leaf disks, we studied the transient chlorophyll a fluorescence along with the gas exchanges at temperatures of 25 (control) 30, 35, 40 and 45°C in the dark for a period of 30 minutes. Temperatures above 35°C caused significant changes in the transient fluorescence of chlorophyll a, including an increase in the initial fluorescence (F0), a decrease in maximum fluorescence values (FM) and the appearance of K and L bands. The values of the net assimilation rate decreased as the temperature increased and reached negative values at 45°C.
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