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番茄中同源光敏色素基因的过表达:探索光感知的极限

Overexpression of homologous phytochrome genes in tomato: exploring the limits in photoperception.

作者信息

Husaineid Said S H, Kok Rosan A, Schreuder Marielle E L, Hanumappa Mamatha, Cordonnier-Pratt Marie-Michèle, Pratt Lee H, van der Plas Linus H W, van der Krol Alexander R

机构信息

Laboratory of Plant Physiology, Graduate School of Experimental Plant Sciences, Wageningen University, Arboretumlaan 4, NL 6703 BD Wageningen, The Netherlands.

出版信息

J Exp Bot. 2007;58(3):615-26. doi: 10.1093/jxb/erl253. Epub 2007 Jan 23.

Abstract

Transgenic tomato [Lycopersicon esculentum (=Solanum lycopersicum)] lines overexpressing tomato PHYA, PHYB1, or PHYB2, under control of the constitutive double-35S promoter from cauliflower mosaic virus (CaMV) have been generated to test the level of saturation in individual phytochrome-signalling pathways in tomato. Western blot analysis confirmed the elevated phytochrome protein levels in dark-grown seedlings of the respective PHY overexpressing (PHYOE) lines. Exposure to 4 h of red light resulted in a decrease in phytochrome A protein level in the PHYAOE lines, indicating that the chromophore availability is not limiting for assembly into holoprotein and that the excess of phytochrome A protein is also targeted for light-regulated destruction. The elongation and anthocyanin accumulation responses of plants grown under white light, red light, far-red light, and end-of-day far-red light were used for characterization of selected PHYOE lines. In addition, the anthocyanin accumulation response to different fluence rates of red light of 4-d-old dark-grown seedlings was studied. The elevated levels of phyA in the PHYAOE lines had little effect on seedling and adult plant phenotype. Both PHYAOE in the phyA mutant background and PHYB2OE in the double-mutant background rescued the mutant phenotype, proving that expression of the transgene results in biologically active phytochrome. The PHYB1OE lines showed mild effects on the inhibition of stem elongation and anthocyanin accumulation and little or no effect on the red light high irradiance response. By contrast, the PHYB2OE lines showed a strong inhibition of elongation, enhancement of anthocyanin accumulation, and a strong amplification of the red light high irradiance response.

摘要

利用花椰菜花叶病毒(CaMV)组成型双35S启动子,构建了过表达番茄PHYA、PHYB1或PHYB2的转基因番茄[番茄(=茄属番茄)]株系,以检测番茄中单个光敏色素信号通路的饱和水平。蛋白质免疫印迹分析证实,在各自过表达光敏色素(PHYOE)株系的黑暗生长幼苗中,光敏色素蛋白水平升高。暴露于4小时红光后,PHYAOE株系中光敏色素A蛋白水平降低,这表明生色团的可用性并不限制其组装成全蛋白,并且过量的光敏色素A蛋白也会被光调节降解。利用在白光、红光、远红光和日末远红光下生长的植物的伸长和花青素积累反应,对选定的PHYOE株系进行了表征。此外,还研究了4日龄黑暗生长幼苗对不同红光通量率的花青素积累反应。PHYAOE株系中phyA水平的升高对幼苗和成年植株的表型影响较小。phyA突变背景下的PHYAOE和双突变背景下的PHYB2OE都挽救了突变表型,证明转基因的表达产生了具有生物活性的光敏色素。PHYB1OE株系对茎伸长的抑制和花青素积累有轻微影响,对红光高辐照反应几乎没有影响。相比之下,PHYB2OE株系对伸长有强烈抑制作用,花青素积累增强,对红光高辐照反应有强烈放大作用。

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