Nanasato Yoshihiko, Akashi Kinya, Yokota Akiho
Graduate School of Biological Sciences, Nara Institute of Science and Technology, Ikoma, Nara, 630-0192 Japan.
Plant Cell Physiol. 2005 Sep;46(9):1515-24. doi: 10.1093/pcp/pci164. Epub 2005 Jul 14.
Despite carrying out C3 photosynthesis, wild watermelon (Citrullus lanatus sp.) exhibits exceedingly good tolerance to severe drought at high light intensities. However, the mechanism(s) by which this plant protects itself from photodamage has yet to be elucidated. In this study, we characterized wild watermelon cytochrome b561 (cyt b561), which potentially mediates regeneration of apoplastic ascorbate by transferring electrons from cytosolic ascorbate across the plasma membrane. Two cDNA species for wild watermelon cyt b561, designated CLb561A and CLb561B, were isolated. Levels of both CLb561A mRNA and protein were significantly elevated in the leaves during drought at a light intensity of 700 micromol photons m(-2) s(-1). The transcript of CLb561B was detected to a much lesser extent, but no CLb561B protein was produced under any condition used in this study. A transient expression assay with the CLb561A::green fluorescent protein fusion construct showed clear fluorescence on the plasma membrane of onion epidermal cells. The CLb561A protein was enriched in the plasma membrane fraction in leaves of transgenic tobacco expressing CLb561A. Moreover, the high activity of apoplastic ascorbate oxidase (AO), which was able to dispose of cyt b561-transferred reducing equivalents, increased in leaves of wild watermelon grown at high light intensity, but not lower light intensities. Taken together, these observations suggest the occurrence of a novel pathway for excess light energy dissipation in wild watermelon leaves, where excessive energy absorbed by chloroplasts can be transported to and dissipated safely in the apoplasts through the cooperative action of cyt b561 and AO.
尽管野生西瓜(西瓜属)进行C3光合作用,但它在高光强度下对严重干旱表现出极强的耐受性。然而,这种植物保护自身免受光损伤的机制尚未阐明。在本研究中,我们对野生西瓜细胞色素b561(细胞色素b561)进行了表征,它可能通过将胞质抗坏血酸的电子跨质膜转移来介导质外体抗坏血酸的再生。分离出了野生西瓜细胞色素b561的两个cDNA种类,分别命名为CLb561A和CLb561B。在700微摩尔光子·米⁻²·秒⁻¹的光强下干旱期间,叶片中CLb561A mRNA和蛋白质水平均显著升高。CLb561B的转录本检测到的程度要小得多,但在本研究使用的任何条件下都未产生CLb561B蛋白质。用CLb561A::绿色荧光蛋白融合构建体进行的瞬时表达分析显示洋葱表皮细胞质膜上有清晰的荧光。在表达CLb561A的转基因烟草叶片中,CLb561A蛋白富集在质膜部分。此外,能够处理细胞色素b561转移的还原当量的质外体抗坏血酸氧化酶(AO)的高活性,在高光强下生长的野生西瓜叶片中增加,而在低光强下则没有。综上所述,这些观察结果表明野生西瓜叶片中存在一种新的过剩光能耗散途径,其中叶绿体吸收的过多能量可以通过细胞色素b561和AO的协同作用运输到质外体并安全耗散。