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Journal articles on the topic 'Lycophene'

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1

Benedit BaI, U. Josephin, G. Uma, and G. Immanue. "GC-MS ANALYSIS OF AQUEOUS EXTRACT OF SCOPARIA DULCIS L. LEAVES." Journal of Advanced Scientific Research 13, no. 02 (2022): 194–97. http://dx.doi.org/10.55218/jasr.202213227.

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Scoparia dulcis L. is a plant with various medicinal roles. The present study deals to analyse the phytochemical components in the aqueous extract of S.dulcis leaves through GC-MS. This plant is reported to have medicinal activities such as anti-diabetic, anti-bacterial, anti-fungal and anti-oxidants etc. The aqueous extract of the leaves was subjected to column chromatography and eluted with chloroform and methanol. The eluted fractions were tested with thin layer chromatography. The GC-MS analysis of fractions indicated the presence of some important compounds like 3-Buten-2-one-4 (2,5,6,6,
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2

Gensel, Patricia G., and Christopher M. Berry. "Early Lycophyte Evolution." American Fern Journal 91, no. 3 (2001): 74–98. http://dx.doi.org/10.1640/0002-8444(2001)091[0074:ele]2.0.co;2.

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3

Gong, Lei, Xu-Dong Liu, Yuan-Yuan Zeng, et al. "Stomatal morphology and physiology explain varied sensitivity to abscisic acid across vascular plant lineages." Plant Physiology 186, no. 1 (2021): 782–97. http://dx.doi.org/10.1093/plphys/kiab090.

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Abstract Abscisic acid (ABA) can induce rapid stomatal closure in seed plants, but the action of this hormone on the stomata of fern and lycophyte species remains equivocal. Here, ABA-induced stomatal closure, signaling components, guard cell K+ and Ca2+ fluxes, vacuolar and actin cytoskeleton dynamics, and the permeability coefficient of guard cell protoplasts (Pf) were analyzed in species spanning the diversity of vascular land plants including 11 seed plants, 6 ferns, and 1 lycophyte. We found that all 11 seed plants exhibited ABA-induced stomatal closure, but the fern and lycophyte species
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4

Chen, Sisi, Ting Wang, Jiangping Shu, et al. "Plastid Phylogenomics and Plastomic Diversity of the Extant Lycophytes." Genes 13, no. 7 (2022): 1280. http://dx.doi.org/10.3390/genes13071280.

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Although extant lycophytes represent the most ancient surviving lineage of early vascular plants, their plastomic diversity has long been neglected. The ancient evolutionary history and distinct genetic diversity patterns of the three lycophyte families, each with its own characteristics, provide an ideal opportunity to investigate the interfamilial relationships of lycophytes and their associated patterns of evolution. To compensate for the lack of data on Lycopodiaceae, we sequenced and assembled 14 new plastid genomes (plastomes). Combined with other lycophyte plastomes available online, we
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5

Staniforth, Richard, and Daniel Brunton. "A synopsis of lycophytes in Manitoba, Canada: their status, distribution, abundance, and habitats." Canadian Field-Naturalist 136, no. 2 (2022): 107–21. http://dx.doi.org/10.22621/cfn.v136i2.2669.

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A steady increase in the number of lycophyte taxa discovered in Manitoba over the last 20 years prompted a determination of which species should be included in an updated provincial list. Collections made throughout the province since 2008 and a critical examination of over 1000 herbarium specimens enabled a substantive review and update of Manitoba’s lycophyte flora. It now comprises 22 taxa: 14 species and two hybrid clubmosses (Lycopodiaceae), three spikemosses (Selaginellaceae), and two species and one hybrid quillwort (Isoetaceae). Thirteen of the 21 species are designated to be of conser
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Salino, Alexandre, André Jardim Arruda, and Thaís Elias Almeida. "Ferns and lycophytes from Serra dos Carajás, an Eastern Amazonian mountain range." Rodriguésia 69, no. 3 (2018): 1417–34. http://dx.doi.org/10.1590/2175-7860201869335.

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Abstract In the state of Pará (Brazil), until the beginning of last decade little was known about the composition of the fern and lycophyte flora. The ferruginous mountains of Carajás are located in Southeastern Pará, mostly inserted in the Floresta Nacional de Carajás. The objective of this work is to present a complete and updated list of fern and lycophyte species occurring in all vegetation types from Carajás ferruginous mountains as a contribution to the knowledge of these plant groups from the Brazilian Amazon. The species list was based on specimens collected between 2007 and 2013. Abou
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7

THOMAS, BARRY A. "Phytogeography of Asturian (Westphalian D) lycophytes throughout the Euramerican belt of coalfields." Geological Magazine 144, no. 3 (2007): 457–63. http://dx.doi.org/10.1017/s001675680700338x.

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A summary is given of the lycophyte species as distributed in fifteen Euramerican coalfields during Asturian (Westphalian D) times. The datasets from the coalfields are analysed using unweighted pair group cluster analyses of Jaccard's Coefficients. Separate analyses were done on the full dataset (the full list of morphospecies) and on a more restricted dataset (only the morphospecies of vegetative organs). Three groupings of coalfields were resolved in the analyses. The two most clearly defined groupings represented the intramontane basin coalfields, and the coalfields of the lowland basins o
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8

KESSLER, MICHAEL, and ALAN R. SMITH. "Prodromus of a fern flora for Bolivia. I. General introduction and key to families." Phytotaxa 327, no. 1 (2017): 57. http://dx.doi.org/10.11646/phytotaxa.327.1.3.

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We introduce the concept of a prodromus for a flora to the ferns and lycophytes of Bolivia, describe the natural setting of Bolivia (topography, climate, vegetation), briefly review the history of pteridological knowledge in the country, present a taxonomic synopsis as well as a key to the fern and lycophyte families of Bolivia, and provide a list of all fern and lycophyte names with Bolivian type material. A new combination is proposed for Polyphlebium herzogii (Rosenst.) A.R.Sm. & Kessler.
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9

Matsunaga, Kelly K. S., and Alexandru M. F. Tomescu. "Root evolution at the base of the lycophyte clade: insights from an Early Devonian lycophyte." Annals of Botany 117, no. 4 (2016): 585–98. http://dx.doi.org/10.1093/aob/mcw006.

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10

Morris, Sarah, and Robbin C. Moran. "The Andes of Colombia and Ecuador as a Barrier to Fern and Lycophyte Species from Mesoamerica." Annals of the Missouri Botanical Garden 110 (February 12, 2025): 88–110. https://doi.org/10.3417/2025932.

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We compiled a list of the fern and lycophyte species that occur in Mesoamerica and extend into Colombia and Ecuador, where they are restricted to the western side of the Andes; that is, they occur only west of the crest of the easternmost cordillera and are absent from that cordillera’s eastern slope and in adjacent Amazonia. We found 131 species with this Mesoamerican and west-of-the-eastern-cordillera distribution. Those 131 species constitute 7% of the total 1805 fern and lycophyte species that have been recorded west of the crest of the easternmost cordillera in Colombia and Ecuador. All 1
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11

Klopper, A. W., and R. R. Klopper. "Lycopodiophyta: Selaginellaceae." Bothalia 41, no. 2 (2011): 321–23. http://dx.doi.org/10.4102/abc.v41i2.73.

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12

KESSLER, MICHAEL, and ALAN R. SMITH. "Prodromus of a fern flora for Bolivia. IV. Isoëtaceae." Phytotaxa 344, no. 1 (2018): 83. http://dx.doi.org/10.11646/phytotaxa.344.1.12.

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ZHOU, XIN-MAO, and LI-BING ZHANG. "Dendrolycopodium verticale comb. nov. (Lycopodiopsida: Lycopodiaceae) from China." Phytotaxa 295, no. 2 (2017): 199. http://dx.doi.org/10.11646/phytotaxa.295.2.8.

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Cudal, Maricris, Liberty Calimbo, Diosdado Jr, et al. "Diversity of Pteridophytes in Mount Timolan Protected Landscape, Zamboanga del Sur, Philippines." Journal of Tropical Life Science 11, no. 2 (2021): 161–70. http://dx.doi.org/10.11594/jtls.11.02.05.

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This study serves as the first generation research on the rich yet not poorly known ferns and lycophyte species of the Mount Timolan Protected Landscape (MTPL). A total of 151 species from 62 genera and 24 families were recorded from December 2019-May 2019. Overall, the species of MTPL respectively holds 14%, 40% and 71% of the recorded total species, genera and families of ferns and lycophytes in the Philippines. The most represented families in terms of the number of genera is Polypodiaceae (10 spp.), whereas, the most represented genera in terms of the number of species were Selaginella (11
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15

Thomas, Introduction Yanaki Georgiev Tenchov Barry A. "Lycophyte Distribution In The Pennsylvannian Of The Dobrudzha Coalfield, Bulgaria And Their Value In Climatic Interpretation." Acta Palaeontologica Romaniae 11, no. 2 (2015): 3–8. https://doi.org/10.5281/zenodo.13190207.

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Thomas Introduction Yanaki Georgiev Tenchov, Barry A. (2015): Lycophyte Distribution In The Pennsylvannian Of The Dobrudzha Coalfield, Bulgaria And Their Value In Climatic Interpretation. Acta Palaeontologica Romaniae 11 (2): 3-8, DOI: 10.5281/zenodo.13190207
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Zhang, Li-Bing, Qing-Wen Sun, and Hai He. "Selaginella wangpeishanii (Selaginellaceae), a new lycophyte from a limestone cave in Guizhou, China." Phytotaxa 164, no. 3 (2014): 195–99. https://doi.org/10.11646/phytotaxa.164.3.5.

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Zhang, Li-Bing, Sun, Qing-Wen, He, Hai (2014): Selaginella wangpeishanii (Selaginellaceae), a new lycophyte from a limestone cave in Guizhou, China. Phytotaxa 164 (3): 195-199, DOI: 10.11646/phytotaxa.164.3.5, URL: http://dx.doi.org/10.11646/phytotaxa.164.3.5
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Sun, Qing-Wen, Jun-Hua Zhao, and Li-Bing Zhang. "Selaginella daozhenensis (Selaginellaceae), a new lycophyte from a limestone cave in northern Guizhou, China." Phytotaxa 207, no. 2 (2015): 187–92. https://doi.org/10.11646/phytotaxa.207.2.5.

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Sun, Qing-Wen, Zhao, Jun-Hua, Zhang, Li-Bing (2015): Selaginella daozhenensis (Selaginellaceae), a new lycophyte from a limestone cave in northern Guizhou, China. Phytotaxa 207 (2): 187-192, DOI: 10.11646/phytotaxa.207.2.5, URL: http://dx.doi.org/10.11646/phytotaxa.207.2.5
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18

Rouhan, Germinal, Vincent Boullet, Ashley Field, and Eric Schuettpelz. "Three new combinations and one lectotypification of fern and lycophyte taxa from the French overseas territories." Phytotaxa 497, no. 1 (2021): 54–56. https://doi.org/10.11646/phytotaxa.497.1.6.

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Rouhan, Germinal, Boullet, Vincent, Field, Ashley, Schuettpelz, Eric (2021): Three new combinations and one lectotypification of fern and lycophyte taxa from the French overseas territories. Phytotaxa 497 (1): 54-56, DOI: 10.11646/phytotaxa.497.1.6, URL: http://dx.doi.org/10.11646/phytotaxa.497.1.6
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19

Friedman, William E. "Plant Genomics: Homoplasy Heaven in a Lycophyte Genome." Current Biology 21, no. 14 (2011): R554—R556. http://dx.doi.org/10.1016/j.cub.2011.05.055.

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20

ZHANG, LI-BING, XIN-MAO ZHOU, and YU-PING HU. "Five new combinations in the lycophyte family Selaginellaceae." Phytotaxa 646, no. 1 (2024): 87–89. http://dx.doi.org/10.11646/phytotaxa.646.1.8.

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Five new combinations in the lycophyte family Selaginellaceae are made and transferred from Selaginella sensu lato. These five names include Boreoselaginella baodongii, B. sajanensis, Chuselaginella neei, C. negrosensis, and Hypopterygiopsis odishana. We also designated the lectotypes of S. neei and S. negrosensis.
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21

XU, XIAO-GANG, XIN-MAO ZHOU, and LI-BING ZHANG. "Huperzia wusugongii nom. nov. (Lycopodiopsida: Huperziaceae) from West China." Phytotaxa 296, no. 1 (2017): 98. http://dx.doi.org/10.11646/phytotaxa.296.1.9.

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A new name of the lycophyte genus Huperzia (Huperziaceae), H. wusugongii Li Bing Zhang, X.G. Xu & X.M. Zhou, from west China is proposed to replace the later homonym, H. rubricaulis S.K. Wu & X. Cheng [‘rubicaulis’], of H. rubricaulis (Alderwerelt van Rosenburgh) Holub.
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22

HU, YU-PING, LI-BING ZHANG, ORAWANYA SUWANMALA, SAHUT CHANTANAORRAPINT, and XIN-MAO ZHOU. "Didiclis chiangdaoensis (Selaginellaceae), a new species of the Bisulcata group from northern Thailand." Phytotaxa 705, no. 2 (2025): 219–26. https://doi.org/10.11646/phytotaxa.705.2.9.

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A new lycophyte species, Didiclis chiangdaoensis (Selaginellaceae), is described and illustrated from Chiang Mai Province, Thailand. The new species belongs to the Bisulcata group and can be easily distinguished by its extremely small plants (less than10 cm) and the entire margins of sterile leaves.
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Schmitt, JL, and MNB Goetz. "Species richness of fern and lycophyte in an urban park in the Rio dos Sinos basin, Southern Brazil." Brazilian Journal of Biology 70, no. 4 suppl (2010): 1161–67. http://dx.doi.org/10.1590/s1519-69842010000600005.

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In the northeastern region of the State of Rio Grande do Sul in Southern Brazil, specifically in the Rio dos Sinos basin, urban parks are an important alternative for the conservation of the remaining natural habitats, as well as for the maintenance and perpetuation of biodiversity. A floristic survey of fern and lycophyte species in the Parque Municipal Henrique Luís Roessler (PMHLR) (29º 41' S and 51º 06' W; alt. 16.4 m) in Novo Hamburgo, (State of Rio Grande do Sul, RS) described their life-forms, as well as substrates and preferential environments. Forty-three species, 30 genera and 15 fam
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Field, Ashley Raymond. "Classification and typification of Australian lycophytes and ferns based on Pteridophyte Phylogeny Group classification PPG I." Australian Systematic Botany 33, no. 1 (2020): 1. http://dx.doi.org/10.1071/sb18011.

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The classification and typification of all Australian ferns and lycophytes is updated to reflect the Pteridophyte Phylogeny Group I classification and the International Code of Nomenclature for algae, fungi, and plants, presenting 8 new nomenclatural combinations as well as 85 lectotypifications. The Australian fern and lycophyte flora comprises 2 classes, 14 orders, 32 families, 134 genera and 528 species and subspecies with the addition of 8 newly recorded and 6 newly recognised species since the publication of the Flora of Australia fern volume in 1998. Overall, 208 species are endemic to A
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Vasco, Alejandra, Fernando B. Matos, and Michael A. Sundue. "Robbin C. Moran, Fern and Lycophyte Curator- an Appreciation." Botanical Review 87, no. 2 (2021): 151–66. http://dx.doi.org/10.1007/s12229-021-09254-2.

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Thomas, Barry A., and Jiří Bek. "A reassessment of the Pennsylvanian lycophyte cone Triplosporite Brown." Acta Geologica Polonica 64, no. 2 (2014): 139–45. http://dx.doi.org/10.2478/agp-2014-0008.

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Abstract The type collection of the lycopsid cone species Triplosporite brownii Unger was re-examined to assess its in situ spores. The cones are monosporangiate with only microspores that possess both cingulum and zona. They equate to the dispersed miospore genus Lycospora and would be identified as Lycospora cf. pseudoannulata. Therefore, the genus Triplosporite Brown is shown to be a junior synonym to Lepidostrobus and a species emendation is given. A comparison is given with the other Lepidostrobus cones which yielded similar in situ microspores of the Lycospora pellucida Group.
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Zheng, Tao, Xuanze He, Honghuan Ye, Wei Fu, Maimai Peng, and Guangqian Gou. "Phylogeography of the rare and endangered lycophyte Isoetes yunguiensis." PeerJ 8 (January 3, 2020): e8270. http://dx.doi.org/10.7717/peerj.8270.

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Background Isoetes yunguiensis Q. F. Wang & W. C. Taylor is a lycophyte of an ancient genus, and it is endemic to China. It is a first-class protected plant in China. This living fossil is used in paleoecology and studies on the evolution of Lycophytes in the Yunnan-Guizhou Plateau. In recent years, human activities have caused the disappearance of several wild populations, and the number of plants in the existing populations is low. Study of the genetic structure, distribution pattern, and historical dynamics of I. yunguiensis in all areas of its distribution is of guiding significance fo
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Thomas, Barry A., and Christopher J. Cleal. "Arborescent lycophyte growth in the late Carboniferous coal swamps." New Phytologist 218, no. 3 (2017): 885–90. http://dx.doi.org/10.1111/nph.14903.

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Jiang, Ri-Hong, and Xian-Chun Zhang. "Two new species of Phlegmariurus (Lycopodiaceae) from China." Turczaninowia 25, no. 1 (2022): 129–34. http://dx.doi.org/10.14258/turczaninowia.25.1.11.

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Based on morphological study, two new species of the lycophyte genus Phlegmariurus Holub, P. yunfengii R.-H. Jiang et X.-C. Zhang and P. shingianus R.-H. Jiang et X.-C. Zhang from China are described and illustrated. Detailed description, ecology, distribution, conservation status as well as a comparison with morphologically similar species are provided.
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Berry, Christopher M. "First record of the Devonian lycophyte Leclercqia from South America." Geological Magazine 131, no. 2 (1994): 269–72. http://dx.doi.org/10.1017/s0016756800010785.

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AbstractA single leafy stem from the Middle or lowermost Upper Devonian Campo Chico Formation, Sierra de Perijá, western Venezuela, is the first record of the important Devonian herbaceous lycophyte Leclercqia from South America, usually considered as part of western Gondwana. The seemingly cosmopolitan distribution of this genus is discussed in relation to coeval assemblages and palaeo-continental reconstructions.
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Zumajo-Cardona, Cecilia, Alejandra Vasco, and Barbara A. Ambrose. "The Evolution of the KANADI Gene Family and Leaf Development in Lycophytes and Ferns." Plants 8, no. 9 (2019): 313. http://dx.doi.org/10.3390/plants8090313.

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Leaves constitute the main photosynthetic plant organ and even though their importance is not debated, the origin and development of leaves still is. The leaf developmental network has been elucidated for angiosperms, from genes controlling leaf initiation, to leaf polarity and shape. There are four KANADI (KAN) paralogs in Arabidopsis thaliana needed for organ polarity with KAN1 and KAN2 specifying abaxial leaf identity. Yet, studies of this gene lineage outside angiosperms are required to better understand the evolutionary patterns of leaf development and the role of KAN homologs. We studied
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SMITH, ALAN R., and MICHAEL KESSLER. "Prodromus of a fern flora for Bolivia. III. Selaginellaceae." Phytotaxa 344, no. 3 (2018): 248. http://dx.doi.org/10.11646/phytotaxa.344.3.5.

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We provide a synopsis to the lycophyte family Selaginellaceae in Bolivia. The single genus in the family, Selaginella, comprises 36 known species in Bolivia, of perhaps 200+ in the Neotropics. Five species are known only from Bolivia (S. alampeta, S. angustifolia, S. bryophila, S. glossophylla, and S. solomonii), and several others are poorly represented in collections, indicating a need for further studies and additional collections.
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Raine, J. Ian. "Zonate lycophyte spores from New Zealand Cretaceous to Paleogene strata." Alcheringa: An Australasian Journal of Palaeontology 32, no. 2 (2008): 99–127. http://dx.doi.org/10.1080/03115510801916440.

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Zhang, Li-Bing, Gerry Moore, and Anthony E. Orchard. "The nomenclature of the lycophyte species Phlegmariurus mingcheensis Ching (Huperziaceae )." TAXON 61, no. 3 (2012): 665–66. http://dx.doi.org/10.1002/tax.613014.

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FANG, SHAO-LI, YU-XIN LI, LI-BING ZHANG, ZHAO-RONG HE, and XIN-MAO ZHOU. "Selaginella subchaetoloma (Sect. Heterostachys; Selaginellaceae), a new species from Southwest China." Phytotaxa 603, no. 3 (2023): 224–34. http://dx.doi.org/10.11646/phytotaxa.603.3.2.

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A new lycophyte species, Selaginella subchaetoloma, is described. This species is relatively abundant in Southwest China. Materials of this species were previously identified as S. chaetoloma, but a detailed morphological study shows that the new species differs by plants with creeping sterile part and ascending fertile part and dorsal leaves with abruptly short-acuminate apex. Molecular phylogenetic results indicate that S. subchaetoloma and S. chaetoloma are not closely related.
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DIMITROVA, TATIANA KH, and CHRISTOPHER J. CLEAL. "Palynological evidence for late Westphalian–early Stephanian vegetation change in the Dobrudzha Coalfield, NE Bulgaria." Geological Magazine 144, no. 3 (2007): 513–24. http://dx.doi.org/10.1017/s0016756807003378.

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The Dobrudzha Coalfield in northeast Bulgaria has coal-bearing deposits ranging from latest Namurian to early Stephanian age (late Bashkirian to Moscovian age). Palynology of the coals in the upper Makedonka, Krupen and Gurkovo formations has been used to identify major changes in the vegetation during late Westphalian and early Stephanian times. The palynomorphs were grouped in two different ways (according to general morphotype and according to parent plant group) and stratigraphical trends in the two sets of groups used to identify vegetation change through the succession. Detrended Corresp
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37

Schafran, Peter W., Steven W. Leonard, Rebecca D. Bray, W. Carl Taylor, and Lytton J. Musselman. "Isoetes mississippiensis: A new quillwort from Mississippi, USA." PhytoKeys 74 (November 8, 2016): 97–106. https://doi.org/10.3897/phytokeys.74.10380.

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Isoetes mississippiensis S.W. Leonard, W.C. Taylor, L.J. Musselman and R.D. Bray (Isoetaceae, Lycopodiophyta) is a new species known from two sites along tributaries of the Pearl River in southern Mississippi. This species is distinguished from other species in the southeastern United States by a combination of character states including a basic diploid (2n=22) chromosome count, laevigate megaspores, and a narrow velum covering less than one-third of the adaxial sporangium wall.
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Zambrano-Cevallos, Ricardo, Ariatna Villarreal, Susana León Yánez, and Benjamin Øllgaard. "Unusual feeding record for a Neotropical rodent: a common Andean lycophyte." Notas sobre Mamíferos Sudamericanos 02, no. 1 (2020): 001–7. http://dx.doi.org/10.31687/saremnms.20.0.40.

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Hashemi-Yazdi, Firoozeh, Freshteh Sajjadi, and Afsaneh Dehbozorgi. "A new lycophyte miospore species from the Middle Jurassic of Iran." REVISTA BRASILEIRA DE PALEONTOLOGIA 18, no. 2 (2015): 251–60. http://dx.doi.org/10.4072/rbp.2015.2.06.

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Link-Pérez, Melanie A., and Shawn W. Laffan. "Fern and lycophyte diversity in the Pacific Northwest: Patterns and predictors." Journal of Systematics and Evolution 56, no. 5 (2018): 498–522. http://dx.doi.org/10.1111/jse.12430.

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Popper, Zoë A., Ian H. Sadler, and Stephen C. Fry. "3-O-Methyl-d-galactose residues in lycophyte primary cell walls." Phytochemistry 57, no. 5 (2001): 711–19. http://dx.doi.org/10.1016/s0031-9422(01)00140-6.

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42

Lindström, Sofie, Morten Bjerager, Peter Alsen, Hamed Sanei, and Jørgen Bojesen-Koefoed. "The Smithian–Spathian boundary in North Greenland: implications for extreme global climate changes." Geological Magazine 157, no. 10 (2019): 1547–67. http://dx.doi.org/10.1017/s0016756819000669.

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AbstractSmithian–lower Anisian strata in Peary Land, North Greenland, were deposited at ∼45° N on the northern margin of Pangaea in offshore to upper shoreface settings. The well-constrained succession (palynology and ammonite biostratigraphy) documents a remarkable shift from lycophyte spore-dominated assemblages in the upper Smithian to gymnosperm pollen-dominated ones in the lower Spathian in concert with a marked shift of +6 ‰ in δ13Corg. Correlation with other Smithian–Spathian boundary sections that record terrestrial floral changes indicates that the recovery of gymnosperms began earlie
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43

Bogonovich, Marc, Scott Robeson, and Maxine Watson. "Patterns of North American Fern and Lycophyte Richness at Three Taxonomic Levels." American Fern Journal 103, no. 4 (2013): 193–214. http://dx.doi.org/10.1640/0002-8444-103.4.193.

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44

Zier, Jacqlynn, Bryce Belanger, Genevieve Trahan, and James E. Watkins. "Ecophysiology of four co-occurring lycophyte species: an investigation of functional convergence." AoB Plants 7 (2015): plv137. http://dx.doi.org/10.1093/aobpla/plv137.

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45

Almeida, Thaís Elias, and Alexandre Salino. "State of the art and perspectives on neotropical fern and lycophyte systematics." Journal of Systematics and Evolution 54, no. 6 (2016): 679–90. http://dx.doi.org/10.1111/jse.12223.

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McAdam, Scott A. M., and Timothy J. Brodribb. "Fern and Lycophyte Guard Cells Do Not Respond to Endogenous Abscisic Acid." Plant Cell 24, no. 4 (2012): 1510–21. http://dx.doi.org/10.1105/tpc.112.096404.

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Gutierrez, Pedro R., Silvia N. Cesari, and Carlos O. Limarino. "Bumbudendron versiforme, a new lycophyte species from the late paleozoic of Argentina." Review of Palaeobotany and Palynology 46, no. 3-4 (1986): 377–86. http://dx.doi.org/10.1016/0034-6667(86)90023-0.

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48

Wolf, Paul G., Kenneth G. Karol, Dina F. Mandoli, et al. "The first complete chloroplast genome sequence of a lycophyte, Huperzia lucidula (Lycopodiaceae)." Gene 350, no. 2 (2005): 117–28. http://dx.doi.org/10.1016/j.gene.2005.01.018.

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Kaneko, Shutaro, Sam David Cook, Yuki Aoi, Akie Watanabe, Ken-Ichiro Hayashi, and Hiroyuki Kasahara. "An Evolutionarily Primitive and Distinct Auxin Metabolism in the Lycophyte Selaginella moellendorffii." Plant and Cell Physiology 61, no. 10 (2020): 1724–32. http://dx.doi.org/10.1093/pcp/pcaa098.

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Abstract Auxin is a key regulator of plant growth and development. Indole-3-acetic acid (IAA), a plant auxin, is mainly produced from tryptophan via indole-3-pyruvate (IPA) in both bryophytes and angiosperms. Angiosperms have multiple, well-documented IAA inactivation pathways, involving conjugation to IAA-aspartate (IAA-Asp)/glutamate by the GH3 auxin-amido synthetases, and oxidation to 2-oxindole-3-acetic acid (oxIAA) by the DAO proteins. However, IAA biosynthesis and inactivation processes remain elusive in lycophytes, an early lineage of spore-producing vascular plants. In this article, we
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TESTO, WESTON L. "Phlegmariurus lehnertii, a new name for Phlegmariurus lancifolius (Lycopodiaceae)." Phytotaxa 297, no. 3 (2017): 289. http://dx.doi.org/10.11646/phytotaxa.297.3.10.

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The pantropical lycophyte genus Phlegmariurus Holub (1964: 21) (Lycopodiaceae) comprises approximately 250 species (PPG I, 2016) and despite extensive study, its taxonomy remains poorly understood (Øllgaard 1992, Field & Bostock 2013). In recent years, many species have been transferred to Phlegmariurus from the closely related temperate genus Huperzia Bernhardi (1801: 126) (Øllgaard 2012a,b, Field & Bostock 2013, Arana 2016, Duy et al. 2016, Field et al. 2016) and new species continue to be described from both the New World (Øllgaard 2015, 2016a,b) and Old World tropics (Hsieh et al.
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