Gaga, a new fern genus segregated from cheilanthes (pteridaceae)

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2012-10-01

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Ongoing molecular phylogenetic studies of cheilanthoid ferns confirm that the genus Cheilanthes (Pteridaceae) is polyphyletic. A monophyletic group of species within the hemionitid clade informally called the "C. marginata group" is here shown to be distinct from its closest relatives (the genus Aspidotis) and phylogenetically distant from the type species of Cheilanthes. This group is here segregated from Cheilanthes as the newly described genus, Gaga . In this study, we use molecular data from four DNA regions (plastid: matK, rbcL, trnG-R; and nuclear: gapCp) together with spore data to circumscribe the morphological and geographical boundaries of the new genus and investigate reticulate evolution within the group. Gaga is distinguished from Aspidotis by its rounded to attenuate (vs. mucronate) segment apices, minutely bullate margins of mature leaves (vs. smooth at 40 ×), and less prominently lustrous and striate adaxial blade surfaces. The new genus is distinguished from Cheilanthes s. s. by its strongly differentiated, inframarginal pseudoindusia, the production of 64 small or 32 large spores (vs. 32 small or 16 large) per sporangium, and usually glabrous leaf blades. A total of nineteen species are recognized within Gaga; seventeen new combinations are made, and two new species, Gaga germanotta and Gaga monstraparva , are described. © Copyright 2012 by the American Society of Plant Taxonomists.

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10.1600/036364412X656626

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Li, F, KM Pryer and MD Windham (2012). Gaga, a new fern genus segregated from cheilanthes (pteridaceae). Systematic Botany, 37(4). pp. 845–860. 10.1600/036364412X656626 Retrieved from https://hdl.handle.net/10161/5988.

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Scholars@Duke

Li

Fay-Wei Li

Associate Professor of Biology

We seek to explore the fascinating but obscure biology of seed-free plants (i.e., ferns, lycophytes, and bryophytes). Our scope is broad, ranging from biodiversity research, plant-microbe interaction, comparative genomics, molecular genetics, to protein biochemistry. The current thrust of our research activities centers on cyanobacteria symbiosis, CO2-concentrating mechanism, and sex chromosomes in hornworts, and the evolution of giant genomes in ferns and lycophytes. 

Pryer

Kathleen M. Pryer

Professor Emeritus of Biology

Unless otherwise indicated, scholarly articles published by Duke faculty members are made available here with a CC-BY-NC (Creative Commons Attribution Non-Commercial) license, as enabled by the Duke Open Access Policy. If you wish to use the materials in ways not already permitted under CC-BY-NC, please consult the copyright owner. Other materials are made available here through the author’s grant of a non-exclusive license to make their work openly accessible.