Zheng C C, Porat R, Lu P, O'Neill S D
Division of Biological Sciences, University of California, Davis 95616, USA.
Plant Physiol. 1998 Jan;116(1):27-35. doi: 10.1104/pp.116.1.27.
We isolated and characterized a novel light-regulated cDNA from the short-day plant Pharbitis nil that encodes a protein with a leucine (Leu) zipper motif, designated PNZIP (Pharbitis nil Leu zipper). The PNZIP cDNA is not similar to any other gene with a known function in the database, but it shares high sequence homology with an Arabidopsis expressed sequence tag and to two other sequences of unknown function from the cyanobacterium Synechocystis spp. and the red alga Porphyra purpurea, which together define a new family of evolutionarily conserved Leu zipper proteins. PNZIP is a single-copy gene that is expressed specifically in leaf photosynthetically active mesophyll cells but not in other nonphotosynthetic tissues such as the epidermis, trichomes, and vascular tissues. When plants were exposed to continuous darkness, PNZIP exhibited a rhythmic pattern of mRNA accumulation with a circadian periodicity of approximately 24 h, suggesting that its expression is under the control of an endogenous clock. However, the expression of PNZIP was unusual in that darkness rather than light promoted its mRNA accumulation. Accumulation of PNZIP mRNA during the dark is also regulated by phytochrome, since a brief exposure to red light in the middle of the night reduced its mRNA levels. Moreover, a far-red-light treatment at the end of day also reduced PNZIP mRNA accumulation during the dark, and that effect could be inhibited by a subsequent exposure to red light, showing the photoreversible response attributable to control through the phytochrome system.
我们从短日植物茑萝中分离并鉴定了一个新的光调控cDNA,它编码一种具有亮氨酸拉链基序的蛋白质,命名为PNZIP(茑萝亮氨酸拉链)。PNZIP cDNA与数据库中任何已知功能的基因均不相似,但它与拟南芥的一个表达序列标签以及来自蓝藻集胞藻属和红藻紫菜的另外两个功能未知的序列具有高度的序列同源性,它们共同定义了一个进化上保守的亮氨酸拉链蛋白新家族。PNZIP是一个单拷贝基因,特异性地在叶片光合活性叶肉细胞中表达,而不在其他非光合组织如表皮、毛状体和维管组织中表达。当植物处于持续黑暗中时,PNZIP呈现出mRNA积累的节律模式,昼夜周期约为24小时,这表明其表达受内源生物钟控制。然而,PNZIP的表达不同寻常之处在于,促进其mRNA积累的是黑暗而非光照。黑暗期间PNZIP mRNA的积累也受光敏色素调控,因为在午夜短暂暴露于红光会降低其mRNA水平。此外,在一天结束时进行远红光处理也会降低黑暗期间PNZIP mRNA的积累,且该效应可被随后的红光照射抑制,显示出通过光敏色素系统控制的光可逆反应。