Li Fay-Wei, Melkonian Michael, Rothfels Carl J, Villarreal Juan Carlos, Stevenson Dennis W, Graham Sean W, Wong Gane Ka-Shu, Pryer Kathleen M, Mathews Sarah
Department of Biology, Duke University, Durham, North Carolina 27708, USA.
Botany Department, Cologne Biocenter, University of Cologne, 50674 Cologne, Germany.
Nat Commun. 2015 Jul 28;6:7852. doi: 10.1038/ncomms8852.
Phytochromes are red/far-red photoreceptors that play essential roles in diverse plant morphogenetic and physiological responses to light. Despite their functional significance, phytochrome diversity and evolution across photosynthetic eukaryotes remain poorly understood. Using newly available transcriptomic and genomic data we show that canonical plant phytochromes originated in a common ancestor of streptophytes (charophyte algae and land plants). Phytochromes in charophyte algae are structurally diverse, including canonical and non-canonical forms, whereas in land plants, phytochrome structure is highly conserved. Liverworts, hornworts and Selaginella apparently possess a single phytochrome, whereas independent gene duplications occurred within mosses, lycopods, ferns and seed plants, leading to diverse phytochrome families in these clades. Surprisingly, the phytochrome portions of algal and land plant neochromes, a chimera of phytochrome and phototropin, appear to share a common origin. Our results reveal novel phytochrome clades and establish the basis for understanding phytochrome functional evolution in land plants and their algal relatives.
光敏色素是红光/远红光光感受器,在植物对光的多种形态发生和生理反应中发挥着重要作用。尽管它们具有功能重要性,但光合真核生物中光敏色素的多样性和进化仍知之甚少。利用新获得的转录组和基因组数据,我们表明典型的植物光敏色素起源于链形植物(轮藻和陆地植物)的共同祖先。轮藻中的光敏色素结构多样,包括典型和非典型形式,而在陆地植物中,光敏色素结构高度保守。地钱、角苔和卷柏显然只拥有一种光敏色素,而在苔藓、石松、蕨类植物和种子植物中发生了独立的基因复制,导致这些类群中出现了多样的光敏色素家族。令人惊讶的是,藻类和陆地植物新色素(一种光敏色素和向光素的嵌合体)中的光敏色素部分似乎有共同的起源。我们的结果揭示了新的光敏色素进化枝,并为理解陆地植物及其藻类亲属中光敏色素的功能进化奠定了基础。