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温度和光照对皱果苋叶盘和叶片中C(4)磷酸烯醇式丙酮酸羧化酶的相互刺激作用。

Mutual stimulation of temperature and light effects on C(4) phosphoenolpyruvate carboxylase in leaf discs and leaves of Amaranthus hypochondriacus.

作者信息

Avasthi Uday K, Raghavendra Agepati S

机构信息

Department of Plant Sciences, University of Hyderabad, India.

出版信息

J Plant Physiol. 2008 Jul 7;165(10):1023-32. doi: 10.1016/j.jplph.2007.09.003. Epub 2007 Nov 19.

Abstract

This article reports marked modulation of the activity and regulatory properties of phosphoenolpyruvate carboxylase (PEPC) by temperature and light in leaf discs as well as leaves of Amaranthus hypochondriacus. The activity of PEPC increased by 1.7-fold at 45 degrees C over 25 degrees C. Warm temperature also stimulated the photoactivation of PEPC. The activation by light of PEPC was 1.9-fold at 25 degrees C and increased to 2.2-fold at 45 degrees C. The sensitivity of PEPC to its inhibitor malate was less and the activation by glucose-6-phosphate (G-6-P) or inorganic phosphate (Pi) was more at 45 degrees C than that at 25 degrees C. These effects of temperature were quite pronounced in light. Similar responses were observed when detached leaves were exposed to varying ambient temperature (dry heat). The activity of PEPC increased by 1.6-fold at 45 degrees C over 25 degrees C in the dark. The activation of PEPC by light was 2.1-fold at 25 degrees C and increased to 2.6-fold at 45 degrees C. Inhibition by malate was less and activation by G-6-P or Pi was more at 45 degrees C than that at 25 degrees C. Thus, there was a marked modulation of not only the activity but also the regulatory properties of the enzyme by temperature and light, independently as well as cooperatively with each other. Further experiments suggested that PEPC was able to memorize to a significant extent the changes induced by warm temperature and that these changes were complemented by subsequent illumination. These effects were not due to changes in PEPC protein levels. We conclude that temperature and light can modulate PEPC activity and regulatory properties not only individually but also in a significantly cooperative manner with each other. As significant increases in temperature are common during daytime in tropical or subtropical conditions, we suggest that the synergistic effects of temperature and light are quite relevant in optimizing the activity of PEPC in leaves of C(4) plants.

摘要

本文报道了温度和光照对皱果苋叶盘及叶片中磷酸烯醇式丙酮酸羧化酶(PEPC)活性和调节特性的显著调节作用。在45℃时,PEPC的活性比25℃时增加了1.7倍。温暖的温度也刺激了PEPC的光激活。在25℃时,光照对PEPC的激活作用为1.9倍,在45℃时增加到2.2倍。与25℃相比,45℃时PEPC对其抑制剂苹果酸的敏感性降低,而对6-磷酸葡萄糖(G-6-P)或无机磷酸(Pi)的激活作用增强。在光照条件下,温度的这些影响非常明显。当离体叶片暴露于不同的环境温度(干热)时,观察到了类似的反应。在黑暗中,45℃时PEPC的活性比25℃时增加了1.6倍。在25℃时,光照对PEPC的激活作用为2.1倍,在45℃时增加到2.6倍。与25℃相比,45℃时苹果酸的抑制作用减弱,G-6-P或Pi的激活作用增强。因此,温度和光照不仅对该酶的活性,而且对其调节特性都有显著的调节作用,它们既可以独立起作用,也可以相互协同作用。进一步的实验表明,PEPC能够在很大程度上“记住”温暖温度引起的变化,并且这些变化会被随后的光照所补充。这些影响并非由于PEPC蛋白水平的变化。我们得出结论,温度和光照不仅可以单独调节PEPC的活性和调节特性,而且还可以以显著的协同方式相互调节。由于在热带或亚热带条件下,白天温度通常会显著升高,我们认为温度和光照的协同效应对于优化C4植物叶片中PEPC的活性非常重要。

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