Zeiger Eduardo, Talbott Lawrence D, Frechilla Silvia, Srivastava Alaka, Zhu Jianxin
Department of Organismic Biology, Ecology and Evolution, University of California, Los Angeles, 900 Veteran Ave., Los Angeles, CA 90024-1786, USA.
Departamento de Ciencias del Medio Natural, Universidad Publica de Navarra, ES-31006 Pamplona, Spain.
New Phytol. 2002 Mar;153(3):415-424. doi: 10.1046/j.0028-646X.2001.NPH328.doc.x.
The guard cell chloroplast is the site of perception of blue light and of photosynthetically active radiation, and of at least one of the mechanisms sensing CO in the guard cell. The guard cell chloroplast has been the focus of intense controversy over its capacity for light sensing and photosynthetic carbon fixation, and the osmoregulatory mechanisms mediating stomatal movements. It is argued here that a primary reason behind these long-lived controversies is the remarkable plasticity of the guard cell, which has resulted in responses being generalized as basic properties when opposite responses appear to be the norm under different environmental or experimental conditions. Examples of guard cell plasticity are described, including variation of chlorophyll fluorescence transients over a daily course, acclimation of the guard cell responses to blue light and CO , the shift from potassium to sucrose in daily courses of osmoregulation and the transduction of red light into different osmoregulatory pathways. Recent findings on the properties of the guard cell chloroplast are also presented, including the role of the chloroplastic carotenoid, zeaxanthin, in blue light photoreception, the blue-green reversibility of stomatal movements, and the involvement of phytochrome in the stomatal response to light in the orchid, Paphiopedilum.
保卫细胞叶绿体是蓝光和光合有效辐射的感知位点,也是保卫细胞中至少一种感知二氧化碳机制的位点。保卫细胞叶绿体在其光感知能力、光合碳固定以及介导气孔运动的渗透调节机制方面一直是激烈争论的焦点。本文认为,这些长期存在的争议背后的一个主要原因是保卫细胞具有显著的可塑性,这导致在不同环境或实验条件下,当相反的反应似乎是常态时,反应被概括为基本特性。文中描述了保卫细胞可塑性的例子,包括叶绿素荧光瞬变在一天中的变化、保卫细胞对蓝光和二氧化碳反应的适应性、渗透调节日常过程中从钾向蔗糖的转变以及红光转化为不同渗透调节途径。还介绍了保卫细胞叶绿体特性的最新发现,包括叶绿体类胡萝卜素玉米黄质在蓝光光接收中的作用、气孔运动的蓝绿可逆性以及光敏色素在兰花兜兰气孔对光反应中的作用。