Horizontal transfer of an adaptive chimeric photoreceptor from bryophytes to ferns
Author(s) -
FayWei Li,
Juan Carlos Villarreal,
Steven Kelly,
Carl J. Rothfels,
Michael Melkonian,
Eftychios Frangedakis,
Markus Ruhsam,
Erin M. Sigel,
Joshua P. Der,
Jarmila Pittermann,
Dylan O. Bürge,
Lisa Pokorny,
Anders Larsson,
Tao Chen,
Stina Weststrand,
Philip Thomas,
Eric Carpenter,
Yong Zhang,
Zhijian Tian,
Li Chen,
Zhixiang Yan,
Ying Zhu,
Xiao Sun,
Jun Wang,
Dennis Wm. Stevenson,
Barbara CrandallStotler,
A. Jonathan Shaw,
Michael K. Deyholos,
Pamela S. Soltis,
Sean W. Graham,
Michael D. Windham,
Jane A. Langdale,
Gane KaShu Wong,
Sarah Mathews,
Kathleen M. Pryer
Publication year - 2014
Publication title -
proceedings of the national academy of sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.011
H-Index - 771
eISSN - 1091-6490
pISSN - 0027-8424
DOI - 10.1073/pnas.1319929111
Subject(s) - fern , lineage (genetic) , biology , bryophyte , horizontal gene transfer , plant evolution , adaptive evolution , botany , diversification (marketing strategy) , propagule , ecosystem , ecology , evolutionary biology , phylogenetics , gene , genome , marketing , biochemistry , business
Ferns are well known for their shade-dwelling habits. Their ability to thrive under low-light conditions has been linked to the evolution of a novel chimeric photoreceptor--neochrome--that fuses red-sensing phytochrome and blue-sensing phototropin modules into a single gene, thereby optimizing phototropic responses. Despite being implicated in facilitating the diversification of modern ferns, the origin of neochrome has remained a mystery. We present evidence for neochrome in hornworts (a bryophyte lineage) and demonstrate that ferns acquired neochrome from hornworts via horizontal gene transfer (HGT). Fern neochromes are nested within hornwort neochromes in our large-scale phylogenetic reconstructions of phototropin and phytochrome gene families. Divergence date estimates further support the HGT hypothesis, with fern and hornwort neochromes diverging 179 Mya, long after the split between the two plant lineages (at least 400 Mya). By analyzing the draft genome of the hornwort Anthoceros punctatus, we also discovered a previously unidentified phototropin gene that likely represents the ancestral lineage of the neochrome phototropin module. Thus, a neochrome originating in hornworts was transferred horizontally to ferns, where it may have played a significant role in the diversification of modern ferns.
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