A phytochrome from the fern Adiantum with features of the putative photoreceptor NPH1
Kazunari Nozue, Takeshi Kanegae, Takato Imaizumi, Shunsuke Fukuda, Haruko Okamoto, Kuo‐Chen Yeh, J. Clark Lagarias, Masamitsu Wada
Abstract
Kazunari Nozue, Takeshi Kanegae, Takato Imaizumi, Shunsuke Fukuda, Haruko Okamoto, Kuo‐Chen Yeh, J. Clark Lagarias, Masamitsu Wada
Abstract
In plant photomorphogenesis, it is well accepted that the perception of red/far-red and blue light is mediated by distinct photoreceptor families, i.e., the phytochromes and blue-light photoreceptors, respectively. Here we describe the discovery of a photoreceptor gene from the fern Adiantum that encodes a protein with features of both phytochrome and NPH1, the putative blue-light receptor for second-positive phototropism in seed plants. The fusion of a functional photosensory domain of phytochrome with a nearly full-length NPH1 homolog suggests that this polypeptide could mediate both red/far-red and blue-light responses in Adiantum normally ascribed to distinct photoreceptors.
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In plant photomorphogenesis, it is well accepted that the perception of red/far-red and blue light is mediated by distinct photoreceptor families, i.e., the phytochromes and blue-light photoreceptors, respectively. Here we describe the discovery of a photoreceptor gene from the fern Adiantum that encodes a protein with features of both phytochrome and NPH1, the putative blue-light receptor for second-positive phototropism in seed plants. The fusion of a functional photosensory domain of phytochrome with a nearly full-length NPH1 homolog suggests that this polypeptide could mediate both red/far-red and blue-light responses in Adiantum normally ascribed to distinct photoreceptors.
Key concepts: Phytochrome, Fern, Photomorphogenesis, Phototropism, Biology, Blue light, Botany, Phytochrome A