光敏色素
藻蓝蛋白
光敏色素A
四吡咯
铁氧还蛋白
生物
胆绿素
黄化
互补
生物化学
远红色
拟南芥
突变体
植物
藻蓝蛋白
蓝藻
血红素加氧酶
血红素
遗传学
基因
酶
细菌
红灯
作者
Chitose Kami,Keiko Mukougawa,Takuya Muramoto,Akiho Yokota,Tomoko Shinomura,J. Clark Lagarias,Takayuki Kohchi
标识
DOI:10.1073/pnas.0307615100
摘要
The covalently bound phytochromobilin (PϕB) prosthetic group is required for the diverse photoregulatory activities of all members of the phytochrome family in vascular plants, whereas by contrast, green algal and cyanobacterial phytochromes use the more reduced linear tetrapyrrole pigment phycocyanobilin (PCB). To assess the functional consequence of the substitution of PϕB with PCB in plants, the phytochrome chromophore-deficient hy2 mutant of Arabidopsis was transformed with a constitutively expressed pcyA gene that encodes the cyanobacterial enzyme, PCB:ferredoxin oxidoreductase. Spectroscopic analyses of extracts from etiolated seedlings revealed that PcyA expression restored photoactive phytochrome to WT levels, albeit with blue-shifted absorption maxima, while also restoring light lability to phytochrome A. Photobiological measurements indicated that PcyA expression rescued phytochrome-mediated red high-irradiance responses, low-fluence red/far-red (FR) photoreversible responses, and very-low-fluence responses, thus confirming that PCB can functionally substitute for PϕB for these photoregulatory activities. Although PcyA expression failed to rescue phytochrome A-mediated FR high-irradiance responsivity to that of WT, our studies indicate that the FR high-irradiance response is fully functional in pcyA -expressing plants but shifted to shorter wavelengths, indicating that PCB can functionally complement this phytochrome-mediated response in vascular plants.
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