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Journal articles on the topic 'Cryptogamae'

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1

Wahyuda, Agus, Aldi Suhendra, Ari Hayati Purba, Pooja Hujaibah, and Miftahul Khairani. "Online Learning Analysis of Botany Cryptogamae During the Covid-19 Pandemic." Bioedukasi: Jurnal Pendidikan Biologi 16, no. 1 (2023): 43. http://dx.doi.org/10.20961/bioedukasi-uns.v16i1.60150.

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<p align="center">During the Covid-19 pandemic, online learning is a solution in the world of education, including learning carried out by Tadris Biology students at UIN Sumatera Utara. The purpose of this study was to determine the level of success in online learning Botany Cryptogamae. This research focuses on the Botany Cryptogamae course which is conducted online. Qualitative research model with data collection techniques carried out through a google form questionnaire and continued with qualitative descriptive analysis. The research subjects are Biology Tadris students who are in th
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2

Mursali, Saidil, Erwin Saputra, and Safnowandi Safnowandi. "Pengembangan Modul Sistematika Cryptogamae: Keanekaragaman Jenis Rumput Laut Di Dusun Labuhan Terata." Bioscientist : Jurnal Ilmiah Biologi 12, no. 2 (2024): 2802. https://doi.org/10.33394/bioscientist.v12i2.13978.

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This study aims to develop a Sistematika Cryptogamae module based on research findings on the diversity of seaweed species in the waters of Dusun Labuhan Terata, Sumbawa Regency, West Nusa Tenggara. The research was conducted using a development method that refers to the ADDIE Model by Reiser and Mollenda, which includes Analysis, Design, Development, Implementation, and Evaluation. This study is limited to the Development stage. The research instruments are validation sheets and readability questionnaires. Data analysis is conducted using a descriptive quantitative approach. The validity test
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3

Lellinger, David B. "Correct Publication Date of Sodiro's "Cryptogamae Vasculares Quitenses"." American Fern Journal 82, no. 2 (1992): 86. http://dx.doi.org/10.2307/1547389.

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4

SETYAWAN, AHMAD DWI. "Plants Biodiversity of Jobolarangan Forest Mount Lawu: 1. Cryptogamae." Biodiversitas, Journal of Biological Diversity 2, no. 1 (2001): 115–22. http://dx.doi.org/10.13057/biodiv/d020106.

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5

Maya Rahayu, Gigin Ginanjar, and Fahmie Firmansyah. "Identification of Phanerogamae and Cryptogamae in the Campus Environment and Their Utilization as Learning Resources in the Plant Diversity Course." Edukasi 18, no. 2 (2024): 143–50. https://doi.org/10.15294/edukasi.v18i2.16957.

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Identification is the basis for grouping living things. Identification can be done by observing the morphological characteristics of a specimen. This research was conducted to identify the diversity of Phanerogamae and Cryptogamae plant species in the Bina Bangsa University Campus environment and their use as a learning resource for students in plant diversity courses. The research methodology used is an exploratory, descriptive survey method, which collects plant data and observes the morphology of the plants. The research results show two types of plants, namely higher plants (phanerogamae)
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Kinnell, PIA, CJ Chartres, and CL Watson. "The effects of fire on the soil in a degraded semiarid woodland .II. Susceptibility of the soil to erosion by shallow rain impacted flow." Soil Research 28, no. 5 (1990): 779. http://dx.doi.org/10.1071/sr9900779.

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Small (500 by 250 by 100 mm) soil monoliths collected from experimental plots subjected to various fire frequencies in a semi-arid woodland near Coolabah, N.S.W., were tested for their susceptibility to erosion by rain-impacted flows under laboratory conditions. In the tests, the erosive stress applied to the soil surfaces was controlled by using drops of uniform size (2.7 mm) falling 11.2 m onto flows whose depths were controlled between 1 and 2.7 drop diameters. Experimental data and thin-section observations showed that cryptogams provide a high degree of protection against erosion. Sedimen
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Aszalósné Balogh, Rebeka, Edit Farkas, Júlia Tüdősné Budai, László Lőkös, and Gábor Matus. "Cryptogamic Biomass in Pannonic Acidic Sand Steppes Subject to Changing Land-Use." Plants 12, no. 16 (2023): 2972. http://dx.doi.org/10.3390/plants12162972.

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Cryptogams, often neglected in vegetation dynamics studies, compose a large part of biomass and contribute to the biodiversity of sandy grasslands. Since the work of Verseghy (1970s), their productivity has not been analyzed in Hungary. We studied the lichen and bryophyte dynamics (hereinafter called cryptogams) at two Eastern Hungarian dry sandy grassland sites. The sites of Corynephorus canescens and of Festuca vaginata dominance, respectively, belonging to the community Festuco vaginatae–Corynephoretum have been monitored. We aimed at (1) quantifying the diversity and biomass of the cryptog
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Greene, RSB, CJ Chartres, and KC Hodgkinson. "The effects of fire on the soil in a degraded semiarid woodland .I. Cryptogam cover and physical and micromorphological properties." Soil Research 28, no. 5 (1990): 755. http://dx.doi.org/10.1071/sr9900755.

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The effects of fire on the cryptogam cover and physical and micromorphological properties of a massive red earth soil were studied in a semi-arid eucalypt woodland, heavily invaded by shrubs, near Coolabah, N.S.W. Fire reduced the cryptogam cover and concomitantly increased the depositional material produced by erosion and the area of bare surface. Annual fires for 7 years completely destroyed the cryptogamic crusts, but they recovered slowly in the absence of fire to reach the same cover as unburnt areas after about 4 years. A single fire also caused a major decline in aggregate stability of
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Mulyadi, Mulyadi, Adlim Adlim, and Djufri Djufri. "MEMBERDAYAKAN KEMAMPUAN BERPIKIR MAHASISWA MELALUI MODEL PEMBELAJARAN READING QUESTIONING AND ANSWERING (RQA)." BIOTIK: Jurnal Ilmiah Biologi Teknologi dan Kependidikan 2, no. 1 (2018): 33. http://dx.doi.org/10.22373/biotik.v2i1.2511.

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This study aimed at figuring out the increase of student thinking skills through the preparation of questions. The population of the research was all of four-semester students of Biology Department of Teacher Training and Education (Tarbiyah) Faculty of IAIN Ar-Raniry in academic year 2012/2013. The sample then selected 29 students. The method used was experimental research. The researcher taught by using Questioning Reading and Answering learning model. Students are asked to read the course topic and then prepare substantial questions from the reading. The assigned materials were Bryophyta an
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Nurbaya, Tresia Siti. "Struktur Komunitas Diatom di Perairan Pantai Cemara Kabupaten Lombok Barat sebagai Dasar Penyusunan Modul Sistematika Cryptogamae." Panthera : Jurnal Ilmiah Pendidikan Sains dan Terapan 3, no. 2 (2023): 94–121. http://dx.doi.org/10.36312/panthera.v3i2.168.

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The waters of Cemara Beach, Lembar District, West Lombok Regency, have extraordinary marine potential. One of Indonesia's marine biodiversity is Diatom microalgae. The aims of this study were: 1) to find out the types of Diatoms in Cemara Beach, West Lombok Regency; 2) to determine the level of Diatom abundance in Cemara Beach, West Lombok Regency; 3) to determine the diversity index of Diatoms in Cemara Beach, West Lombok Regency; 4) to determine the evenness of Diatoms in Cemara Beach, West Lombok Regency; 5) to determine the species population that dominates the Diatom community in Cemara B
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Qu, Meixue, Wenbiao Duan, and Lixin Chen. "The Role of Cryptogams in Soil Property Regulation and Vascular Plant Regeneration: A Review." Applied Sciences 14, no. 1 (2023): 2. http://dx.doi.org/10.3390/app14010002.

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Despite their small size, cryptogams (lichen, liverwort, and moss) are important for ecosystem stability. Due to their strong stress resistance, cryptogams often cover extreme environments uninhabitable for vascular plants, which has an important impact on the material cycle and energy flow of various terrestrial ecosystems. In this article, we review and discuss the effects of cryptogams on soil properties (moisture and fertility) and vascular plant regeneration over the past two decades. Cryptogams strongly affect soil water content by influencing precipitation infiltration, non-rainfall wat
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Newmaster, Steven G., and F. Wayne Bell. "The effects of silvicultural disturbances on cryptogam diversity in the boreal-mixedwood forest." Canadian Journal of Forest Research 32, no. 1 (2002): 38–51. http://dx.doi.org/10.1139/x01-163.

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In northern forests, cryptogams (spore producing plants) occupy a key position in forest ecosystem diversity and function. Forest harvesting and silvicultural practices have the potential to reduce cryptogam diversity. This project uses four blocks that were mechanically site prepared, planted with a single conifer species, and subsequently subjected to five conifer release treatments: (1) motor-manual cleaning, (2) mechanical brush cutting, (3) aerial application of triclopyr, (4) aerial application of glyphosate, and (5) control (untreated clearcut). Five 10 × 10 m subplots were installed in
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Siti Wahidah, Sri Amintarti, and Amalia Rezeki. "Pengembangan E-Booklet Lumut Kerak (Lichen) Di Taman Buah Lokal Kawasan Mangrove Rambai Center Sebagai Materi Penunjang Mata Kuliah Cryptogamae." JUPEIS : Jurnal Pendidikan dan Ilmu Sosial 1, no. 3 (2022): 109–18. http://dx.doi.org/10.55784/jupeis.vol1.iss3.148.

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Lichen banyak ditemukan menempel pada kulit batang pohon. Taman Buah Lokal di kawasan Rambai Mangrove Center merupakan kawasan yang terdiri dari dataran rendah dan sebagian kawasan mangrove rambai yang berlumpur dan mengalami pasang surut. Dilakukannya penelitian ini memiliki tujuan yaitu agar diketahui apa saja jenis-jenis lumut kerak (lichen) di Taman Buah Lokal Kawasan Mangrove Rambai Center. Serta untuk mendeskripsikan kesesuaian, kelayakan, keterbacaan dan respon terhadap E-Booklet yang dikembangkan sebagai materi penunjang mata kuliah Cryptogamae (Botani Tumbuhan Rendah). Penelitian meng
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14

Bokhorst, Stef, and Peter Convey. "Impact of marine vertebrates on Antarctic terrestrial micro-arthropods." Antarctic Science 28, no. 3 (2016): 175–86. http://dx.doi.org/10.1017/s0954102015000607.

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AbstractTraits of primary producers associated with tissue quality are commonly assumed to have strong control over higher trophic levels. However, this view is largely based on studies of vascular plants, and cryptogamic vegetation has received far less attention. In this study natural gradients in nutrient concentrations in cryptogams associated with the proximity of penguin colonies on a Maritime Antarctic island were utilized to quantify the impact of nitrogen content on micro-arthropod communities. Proximity to penguin colonies increased the nitrogen concentration of cryptogams, and the p
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15

Ferguson, Anneka V., Emma J. Pharo, Jamie B. Kirkpatrick, and Jon B. Marsden-Smedley. "The early effects of fire and grazing on bryophytes and lichens in tussock grassland and hummock sedgeland in north-eastern Tasmania." Australian Journal of Botany 57, no. 7 (2009): 556. http://dx.doi.org/10.1071/bt09131.

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Little is known of the interactive effects of fire and grazing on cryptogam species and assemblages. These effects were observed for bryophyte and lichen species in Tasmanian tussock grassland and hummock sedgeland several months after experimental burning and fencing. A factorial design was used on 40 randomly located and treated pairs of 1 m × 1 m quadrats in each of the vegetation types. In total, 24 cryptogam taxa were found, with grassland having a greater taxon richness, as well as higher total cryptogam cover and a different species composition, to the hummock sedgeland. There was great
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16

Chown, S. L. "Habitat use and diet as biogeographic indicators for subantarctic Ectemnorhinini (Coleoptera: Curculionidae)." Antarctic Science 1, no. 1 (1989): 23–30. http://dx.doi.org/10.1017/s0954102089000052.

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Most of the species in the Ectemnorhinin are cryptogam feeders, angiosperm feeders representing a minority. It is hypothesized that this dearth of angiosperm feeders is due to previous climatic conditions, which precluded angiosperm herbivory, but allowed for the exploitation of a diverse cryptogamic flora, and that only with the post-glacial warm-up of the Subantarctic has angiosperm herbivory become possible. When examined in the light of the Quaternary history of the South Indian Ocean Province islands, evidence obtained from a study of the habitat use, diet and morphology of species within
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17

Melekhin, Alexey V., Denis A. Davydov, Eugene A. Borovichev, Sergei S. Shalygin, and Nadezhda A. Konstantinova. "CRIS – service for input, storage and analysis of the biodiversity data of the cryptogams." Folia Cryptogamica Estonica 56 (September 6, 2019): 99–108. http://dx.doi.org/10.12697/fce.2019.56.10.

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 Here we describe Cryptogamic Russian Information System (CRIS), a web service cataloguing the biodiversity of cryptogams: cyanobacteria, fungi (including lichens), and bryophytes. CRIS incorporates a wide spectrum of data types, allowing for greater ease of use. It is possible to print the labels for herbarium collections, to input literature references, media files, etc., using CRIS which has a flexible interface and specific technical abilities. Currently, CRIS contains ~ 90,000 herbarium records, including 67,861 records of bryophytes, 12,486 records of lichens and 3,80
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18

Ellis, Christopher J. "A Role for Lichens in Botanic Gardens?" Sibbaldia: the International Journal of Botanic Garden Horticulture, no. 6 (October 31, 2008): 155–62. http://dx.doi.org/10.24823/sibbaldia.2008.40.

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Lichens are biologically diverse and ecologically important. They infuse a botanic garden with character, and are sensitive indicators for the health of our environment. Their continued recolonization of botanic gardens should be celebrated, yet is frequently greeted with trepidation. Acknowledging the under-played significance of lichens and other cryptogams, PlantNetwork organized a conference on Mosses, Ferns and Lichens in Gardens (September 2007). This article summarizes a talk presented at the PlantNetwork conference. It discusses the role of lichens in botanic gardens, and also includes
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19

Dash, Swarna Kumar, Bishnupriya Hansdah, Jyoti Ranjan Rout, Bhagyajyoti Baral, and Santi Lata Sahoo. "Christella parasitica (l.) Lev.: a potent pharmacological and pesticidal pteridophyte." Journal of Plant Biota 3, no. 2 (2024): 1–4. http://dx.doi.org/10.51470/jpb.2024.3.2.01.

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Pteridophytes are the foremost vascular cryptogam on earth, and hold a unique position in plant evolution. Ferns are one of the prominent representatives of pteridophytes. This group of vascular cryptogams are distributed into 35 families with 568 genera having 13,000 species. The family Thelypteridaceae encompasses around 37 genera and has a diversity comprising 1190 species. Among these Christella parasitica (L.) Lev. (Thelypteridaceae) is one of the fern, which is an invasive vascular cryptogam with potent secondary metabolites, distinct anatomical features, pharmacological attributes along
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Kinnell, P. I. A. "Influence of surface zones with zero detachment on erosion by rain-impacted flow." Soil Research 36, no. 2 (1998): 327. http://dx.doi.org/10.1071/s97047.

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Zones of zero detachment occur on the soil surface when cryptogamic cover protects the soil surface from erosion by rain-impacted flow. The effect of spatial variation in the distribution of these zones was examined through a computer simulation of erosion by rain-impacted flow on small (0·5-m-long) surfaces. The results from the simulations indicate that the effect of spatial variations in cryptogam cover decreases as the susceptibility of the exposed surfaces to detachment by rain-impacted flow increases. They also indicate that when the sediment being transported is dominated by fine partic
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Bassey, M. E., E. D. Anwana, E. O. Mbong, and O. T. Umoh. "Diversity and distribution of vascular cryptogams in relation to elevation gradient in Osomba range of the Cross River National Park, Cross River State, Nigeria." World Journal of Applied Science & Technology 15, no. 1 (2023): 26–32. http://dx.doi.org/10.4314/wojast.v15i1.26.

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Vascular cryptogams also known as Pteridophytes have been found to colonize the lower altitudes of world’s tropical forest regions. Hence, a study to establish the relationship existing between elevation gradient and Pteridophytes heterogeneity and distribution within Osomba Range, Cross River State, Nigeria was carried out. In this study, we delineated four elevation classes and enumerated the vascular cryptogam communities found at each level within the range using standard scientific protocol. Shannon-Wiener's (3.434 and 2.833) and Simpson’s indices of diversity (0.968 and 0.941) as well as
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Bruggeman-Nannenga, Maria A. "Fissidens ezukanmae Brugg.-Nann., sp. nov. (Fissidentaceae, Bryopsida), a new species from termite mounds in Nigeria." Cryptogamie, Bryologie 20, no. 3 (2019): 15–18. https://doi.org/10.5252/cryptogamie-bryologie2019v40a3.

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Bruggeman-Nannenga, Maria A. (2019): Fissidens ezukanmae Brugg.-Nann., sp. nov. (Fissidentaceae, Bryopsida), a new species from termite mounds in Nigeria. Cryptogamie, Bryologie 20 (3): 15-18, DOI: 10.5252/cryptogamie-bryologie2019v40a3, URL: https://bioone.org/journals/cryptogamie-bryologie/volume-40/issue-1/cryptogamie-bryologie2019v40a3/Fissidens-ezukanmae-Brugg-Nann-sp-nov-Fissidentaceae-Bryopsida-a-New/10.5252/cryptogamie-bryologie2019v40a3.full
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Garcia, Eline T., Sylvia M. Oliveira, Ana C. C., Tavares-Martins, and Kátia C. Pôrto. "Vertical Gradient of Epiphytic Bryophytes in the Amazon: the Rule and its Exception." Cryptogamie, Bryologie 20, no. 5 (2020): 55–67. https://doi.org/10.5252/cryptogamie-bryologie2020v41a5.

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Garcia, Eline T., Oliveira, Sylvia M., C., Ana C., Tavares-Martins, Pôrto, Kátia C. (2020): Vertical Gradient of Epiphytic Bryophytes in the Amazon: the Rule and its Exception. Cryptogamie, Bryologie 20 (5): 55-67, DOI: 10.5252/cryptogamie-bryologie2020v41a5, URL: https://bioone.org/journals/cryptogamie-bryologie/volume-41/issue-5/cryptogamie-bryologie2020v41a5/Vertical-Gradient-of-Epiphytic-Bryophytes-in-the-Amazon--the/10.5252/cryptogamie-bryologie2020v41a5.full
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Wang, Xiang-Hua, Kanad Das, Ishika Bera, et al. "Fungal Biodiversity Profiles 81-90." Cryptogamie, Mycologie 20, no. 5 (2019): 57–95. https://doi.org/10.5252/cryptogamie-mycologie2019v40a5.

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Wang, Xiang-Hua, Das, Kanad, Bera, Ishika, Chen, Yu-Hui, Bhatt, Rajendra Prasad, Ghosh, Aniket, Hembrom, Manoj Emanuel, Hofstetter, Valérie, Parihar, Arvind, Vizzini, Alfredo, Xu, Tai-Min, Zhao, Chang-Lin (2019): Fungal Biodiversity Profiles 81-90. Cryptogamie, Mycologie 20 (5): 57-95, DOI: 10.5252/cryptogamie-mycologie2019v40a5, URL: https://bioone.org/journals/cryptogamie-mycologie/volume-40/issue-5/cryptogamie-mycologie2019v40a5/Fungal-Biodiversity-Profiles-81-90/10.5252/cryptogamie-mycologie2019v40a5.full
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Vega, Marcel, Lukáš Janošík, Jan Eckstein, Rubén Martínez-Gil, and Enrique Rubio. "Warts galore - on three new Lamprospora De Not. species (Pezizales) from Southern Europe and Macaronesia and a type revision of three species described from the US by F. J. Seaver in the 1910s." Cryptogamie, Mycologie 20, no. 6 (2021): 91–119. https://doi.org/10.5252/cryptogamie-mycologie2021v42a6.

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Vega, Marcel, Janošík, Lukáš, Eckstein, Jan, Martínez-Gil, Rubén, Rubio, Enrique (2021): Warts galore - on three new Lamprospora De Not. species (Pezizales) from Southern Europe and Macaronesia and a type revision of three species described from the US by F. J. Seaver in the 1910s. Cryptogamie, Mycologie 20 (6): 91-119, DOI: 10.5252/cryptogamie-mycologie2021v42a6, URL: https://bioone.org/journals/cryptogamie-mycologie/volume-42/issue-6/cryptogamie-mycologie2021v42a6/Warts-Galore--on-Three-New-Lamprospora-De-Not-Species/10.5252/cryptogamie-mycologie2021v42a6.full
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Rossi, Walter, and Marco Leonardi. "New Laboulbeniales from China (Ascomycota)." Cryptogamie, Mycologie 20, no. 1 (2020): 1–7. https://doi.org/10.5252/cryptogamie-mycologie2020v41a1.

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Rossi, Walter, Leonardi, Marco (2020): New Laboulbeniales from China (Ascomycota). Cryptogamie, Mycologie 20 (1): 1-7, DOI: 10.5252/cryptogamie-mycologie2020v41a1, URL: http://dx.doi.org/10.5252/cryptogamie-mycologie2020v41a1
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Delgadillo-Moya, Claudio. "Two disjunct moss species new to Mexico." Cryptogamie, Bryologie 20, no. 7 (2020): 83–87. https://doi.org/10.5252/cryptogamie-bryologie2020v41a7.

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Delgadillo-Moya, Claudio (2020): Two disjunct moss species new to Mexico. Cryptogamie, Bryologie 20 (7): 83-87, DOI: 10.5252/cryptogamie-bryologie2020v41a7, URL: http://dx.doi.org/10.5252/cryptogamie-bryologie2020v41a7
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Hugonnot, Vincent. "New records for the bryophyte flora of Corsica." Cryptogamie, Bryologie 20, no. 14 (2019): 153–58. https://doi.org/10.5252/cryptogamie-bryologie2019v40a14.

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Hugonnot, Vincent (2019): New records for the bryophyte flora of Corsica. Cryptogamie, Bryologie 20 (14): 153-158, DOI: 10.5252/cryptogamie-bryologie2019v40a14, URL: http://dx.doi.org/10.5252/cryptogamie-bryologie2019v40a14
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Gradstein, S. Robbert, and Catherine Reeb. "The genus Plagiochila (Dumort.) Dumort. (Marchantiophyta) in Madagascar." Cryptogamie, Bryologie 20, no. 5 (2022): 65–106. https://doi.org/10.5252/cryptogamie-bryologie2022v43a5.

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Gradstein, S. Robbert, Reeb, Catherine (2022): The genus Plagiochila (Dumort.) Dumort. (Marchantiophyta) in Madagascar. Cryptogamie, Bryologie 20 (5): 65-106, DOI: 10.5252/cryptogamie-bryologie2022v43a5, URL: http://dx.doi.org/10.5252/cryptogamie-bryologie2022v43a5
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Pócs, Tamás. "Notes on the bryophytes of Madagascar 3. Six new Lejeuneaceae species." Cryptogamie, Bryologie 20, no. 8 (2021): 129–41. https://doi.org/10.5252/cryptogamie-bryologie2021v42a8.

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Pócs, Tamás (2021): Notes on the bryophytes of Madagascar 3. Six new Lejeuneaceae species. Cryptogamie, Bryologie 20 (8): 129-141, DOI: 10.5252/cryptogamie-bryologie2021v42a8, URL: http://dx.doi.org/10.5252/cryptogamie-bryologie2021v42a8
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Thouvenot, Louis. "A new species of Nowellia Mitt. (Marchantiophyta, Cephaloziaceae) discovered in New Caledonia." Cryptogamie, Bryologie 20, no. 10 (2021): 149–53. https://doi.org/10.5252/cryptogamie-bryologie2021v42a10.

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Thouvenot, Louis (2021): A new species of Nowellia Mitt. (Marchantiophyta, Cephaloziaceae) discovered in New Caledonia. Cryptogamie, Bryologie 20 (10): 149-153, DOI: 10.5252/cryptogamie-bryologie2021v42a10, URL: http://dx.doi.org/10.5252/cryptogamie-bryologie2021v42a10
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Thouvenot, Louis. "A review of the genus Macromitrium Brid. (Orthotrichaceae, Bryophyta) in New Caledonia." Cryptogamie, Bryologie 20, no. 16 (2019): 167–217. https://doi.org/10.5252/cryptogamie-bryologie2019v40a16.

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Thouvenot, Louis (2019): A review of the genus Macromitrium Brid. (Orthotrichaceae, Bryophyta) in New Caledonia. Cryptogamie, Bryologie 20 (16): 167-217, DOI: 10.5252/cryptogamie-bryologie2019v40a16, URL: http://dx.doi.org/10.5252/cryptogamie-bryologie2019v40a16
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Huisman, John M., and Heroen Verbruggen. "Pseudoderbesia eckloniae, sp. nov. (Bryopsidaceae, Ulvophyceae) from Western Australia." Cryptogamie, Algologie 20, no. 3 (2020): 19–23. https://doi.org/10.5252/cryptogamie-algologie2020v41a3.

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Huisman, John M., Verbruggen, Heroen (2020): Pseudoderbesia eckloniae, sp. nov. (Bryopsidaceae, Ulvophyceae) from Western Australia. Cryptogamie, Algologie 20 (3): 19-23, DOI: 10.5252/cryptogamie-algologie2020v41a3, URL: http://dx.doi.org/10.5252/cryptogamie-algologie2020v41a3
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Huisman, John M., and Gary W. Saunders. "Resurrection of Plocamium pusillum Sonder (Plocamiaceae, Rhodophyta) from Australia." Cryptogamie, Algologie 20, no. 14 (2021): 231–39. https://doi.org/10.5252/cryptogamie-algologie2021v42a14.

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Huisman, John M., Saunders, Gary W. (2021): Resurrection of Plocamium pusillum Sonder (Plocamiaceae, Rhodophyta) from Australia. Cryptogamie, Algologie 20 (14): 231-239, DOI: 10.5252/cryptogamie-algologie2021v42a14, URL: http://dx.doi.org/10.5252/cryptogamie-algologie2021v42a14
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35

Fudali, Ewa, and Mariusz Szymanowski. "Epiphytic bryophytes on alien host-tree species in Wrocław (SW Poland)." Cryptogamie, Bryologie 20, no. 11 (2019): 119–29. https://doi.org/10.5252/cryptogamie-bryologie2019v40a11.

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Fudali, Ewa, Szymanowski, Mariusz (2019): Epiphytic bryophytes on alien host-tree species in Wrocław (SW Poland). Cryptogamie, Bryologie 20 (11): 119-129, DOI: 10.5252/cryptogamie-bryologie2019v40a11, URL: http://dx.doi.org/10.5252/cryptogamie-bryologie2019v40a11
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36

Naziazeno, Leticia Muxfeldt, and André Aptroot. "New species and records of mostly lignicolous dothideomycetous ascomycetes from Brazil." Cryptogamie, Mycologie 20, no. 1 (2023): 1–9. https://doi.org/10.5252/cryptogamie-mycologie2023v44a1.

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Naziazeno, Leticia Muxfeldt, Aptroot, André (2023): New species and records of mostly lignicolous dothideomycetous ascomycetes from Brazil. Cryptogamie, Mycologie 20 (1): 1-9, DOI: 10.5252/cryptogamie-mycologie2023v44a1, URL: http://dx.doi.org/10.5252/cryptogamie-mycologie2023v44a1
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Gupta, Pratibha. "First report of diversity of Cyanobacteria of Broknes Peninsula of Larsemann Hills, East Antarctica." Cryptogamie, Algologie 20, no. 15 (2021): 241–51. https://doi.org/10.5252/cryptogamie-algologie2021v42a15.

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Gupta, Pratibha (2021): First report of diversity of Cyanobacteria of Broknes Peninsula of Larsemann Hills, East Antarctica. Cryptogamie, Algologie 20 (15): 241-251, DOI: 10.5252/cryptogamie-algologie2021v42a15, URL: http://dx.doi.org/10.5252/cryptogamie-algologie2021v42a15
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Dauphin, Gregorio, S. Robbert Gradstein, and Noris Salazar Allen. "Liverworts and hornworts of Barro Colorado Island, Panama." Cryptogamie, Bryologie 20, no. 9 (2022): 153–65. https://doi.org/10.5252/cryptogamie-bryologie2022v43a9.

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Dauphin, Gregorio, Gradstein, S. Robbert, Allen, Noris Salazar (2022): Liverworts and hornworts of Barro Colorado Island, Panama. Cryptogamie, Bryologie 20 (9): 153-165, DOI: 10.5252/cryptogamie-bryologie2022v43a9, URL: http://dx.doi.org/10.5252/cryptogamie-bryologie2022v43a9
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Jimenez, Soledad, Guillermo M. Suárez, and Richard H. Zander. "Novelties on Tortella (Pottiaceae, Bryophyta) from South America." Cryptogamie, Bryologie 20, no. 8 (2019): 87–96. https://doi.org/10.5252/cryptogamie-bryologie2019v40a8.

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Jimenez, Soledad, Suárez, Guillermo M., Zander, Richard H. (2019): Novelties on Tortella (Pottiaceae, Bryophyta) from South America. Cryptogamie, Bryologie 20 (8): 87-96, DOI: 10.5252/cryptogamie-bryologie2019v40a8, URL: http://dx.doi.org/10.5252/cryptogamie-bryologie2019v40a8
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Bruggeman-Nannenga, Maria Alida. "On the peristomes of the corticolous African species of Fissidens Hedw. (Fissidentaceae, Bryophyta)." Cryptogamie, Bryologie 20, no. 2 (2022): 9–36. https://doi.org/10.5252/cryptogamie-bryologie2022v43a2.

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Bruggeman-Nannenga, Maria Alida (2022): On the peristomes of the corticolous African species of Fissidens Hedw. (Fissidentaceae, Bryophyta). Cryptogamie, Bryologie 20 (2): 9-36, DOI: 10.5252/cryptogamie-bryologie2022v43a2, URL: http://dx.doi.org/10.5252/cryptogamie-bryologie2022v43a2
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Larraín, Juan, María J. Cano, and Juan A. Jiménez. "New bryophyte records from the Mediterranean region of Chile." Cryptogamie, Bryologie 20, no. 11 (2020): 131–40. https://doi.org/10.5252/cryptogamie-bryologie2020v41a11.

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Larraín, Juan, Cano, María J., Jiménez, Juan A. (2020): New bryophyte records from the Mediterranean region of Chile. Cryptogamie, Bryologie 20 (11): 131-140, DOI: 10.5252/cryptogamie-bryologie2020v41a11, URL: http://dx.doi.org/10.5252/cryptogamie-bryologie2020v41a11
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Gradstein, S. Robbert. "Epiphyllous bryophyte diversity in lowland rain forest and lowland cloud forest of French Guiana." Cryptogamie, Bryologie 20, no. 12 (2022): 187–93. https://doi.org/10.5252/cryptogamie-bryologie2022v43a12.

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Gradstein, S. Robbert (2022): Epiphyllous bryophyte diversity in lowland rain forest and lowland cloud forest of French Guiana. Cryptogamie, Bryologie 20 (12): 187-193, DOI: 10.5252/cryptogamie-bryologie2022v43a12, URL: http://dx.doi.org/10.5252/cryptogamie-bryologie2022v43a12
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Aptroot, André, and Maria Fernanda Souza. "New lichen species and records from the Chapada dos Guimarães, Mato Grosso, Brazil." Cryptogamie, Mycologie 20, no. 10 (2021): 171–80. https://doi.org/10.5252/cryptogamie-mycologie2021v42a10.

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Aptroot, André, Souza, Maria Fernanda (2021): New lichen species and records from the Chapada dos Guimarães, Mato Grosso, Brazil. Cryptogamie, Mycologie 20 (10): 171-180, DOI: 10.5252/cryptogamie-mycologie2021v42a10, URL: http://dx.doi.org/10.5252/cryptogamie-mycologie2021v42a10
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Nemcova, Yvonne, and Dmitry Kapustin. "Mallomonas teres, sp. nov. (Chrysophyceae), simultaneously revealed in two distant European peat-bog regions." Cryptogamie, Algologie 20, no. 4 (2019): 35–39. https://doi.org/10.5252/cryptogamie-algologie2019v40a4.

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Nemcova, Yvonne, Kapustin, Dmitry (2019): Mallomonas teres, sp. nov. (Chrysophyceae), simultaneously revealed in two distant European peat-bog regions. Cryptogamie, Algologie 20 (4): 35-39, DOI: 10.5252/cryptogamie-algologie2019v40a4, URL: http://dx.doi.org/10.5252/cryptogamie-algologie2019v40a4
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Reeb, Catherine, and Robbert Gradstein. "A taxonomic revision of Aneuraceae (Marchantiophyta) from eastern Africa with an interactive identification key." Cryptogamie, Bryologie 20, no. 2 (2020): 11–34. https://doi.org/10.5252/cryptogamie-bryologie2020v41a2.

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Reeb, Catherine, Gradstein, Robbert (2020): A taxonomic revision of Aneuraceae (Marchantiophyta) from eastern Africa with an interactive identification key. Cryptogamie, Bryologie 20 (2): 11-34, DOI: 10.5252/cryptogamie-bryologie2020v41a2, URL: http://dx.doi.org/10.5252/cryptogamie-bryologie2020v41a2
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Papp, Beáta, Jovana Pantović, and Marko S. Sabovljević. "Additions to the bryophyte flora of the Republic of Northern Macedonia." Cryptogamie, Bryologie 20, no. 15 (2019): 159–66. https://doi.org/10.5252/cryptogamie-bryologie2019v40a15.

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Papp, Beáta, Pantović, Jovana, Sabovljević, Marko S. (2019): Additions to the bryophyte flora of the Republic of Northern Macedonia. Cryptogamie, Bryologie 20 (15): 159-166, DOI: 10.5252/cryptogamie-bryologie2019v40a15, URL: http://dx.doi.org/10.5252/cryptogamie-bryologie2019v40a15
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Ezukanma, Izuchukwu O., Oluwatoyin T. Ogundipe, and Janice Glime. "Bryophytes associated with termite mounds on the northeastern Nigerian highlands." Cryptogamie, Bryologie 20, no. 5 (2019): 31–39. https://doi.org/10.5252/cryptogamie-bryologie2019v40a5.

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Ezukanma, Izuchukwu O., Ogundipe, Oluwatoyin T., Glime, Janice (2019): Bryophytes associated with termite mounds on the northeastern Nigerian highlands. Cryptogamie, Bryologie 20 (5): 31-39, DOI: 10.5252/cryptogamie-bryologie2019v40a5, URL: http://dx.doi.org/10.5252/cryptogamie-bryologie2019v40a5
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Cohu, René Le, Julien Marquié, and Loïc Tudesque. "Adlafia diahotensis, sp. nov. (Bacillariophyceae), a new species from New Caledonia." Cryptogamie, Algologie 20, no. 1 (2020): 1–6. https://doi.org/10.5252/cryptogamie-algologie2020v41a1.

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Cohu, René Le, Marquié, Julien, Tudesque, Loïc (2020): Adlafia diahotensis, sp. nov. (Bacillariophyceae), a new species from New Caledonia. Cryptogamie, Algologie 20 (1): 1-6, DOI: 10.5252/cryptogamie-algologie2020v41a1, URL: http://dx.doi.org/10.5252/cryptogamie-algologie2020v41a1
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Li, Dandan, Shuiliang Guo, Hua Zhu, and Jing Yu. "Quantifying and interpreting nestedness of bryophytes in the Zhoushan Archipelago, China." Cryptogamie, Bryologie 20, no. 6 (2022): 107–21. https://doi.org/10.5252/cryptogamie-bryologie2022v43a6.

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Li, Dandan, Guo, Shuiliang, Zhu, Hua, Yu, Jing (2022): Quantifying and interpreting nestedness of bryophytes in the Zhoushan Archipelago, China. Cryptogamie, Bryologie 20 (6): 107-121, DOI: 10.5252/cryptogamie-bryologie2022v43a6, URL: http://dx.doi.org/10.5252/cryptogamie-bryologie2022v43a6
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Unan, Ayşe Dilek, and Muhammet Ören. "New and noteworthy records of deadwood dwelling bryophyte species for Turkey and Southwest Asia." Cryptogamie, Bryologie 20, no. 4 (2021): 33–44. https://doi.org/10.5252/cryptogamie-bryologie2021v42a4.

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Unan, Ayşe Dilek, Ören, Muhammet (2021): New and noteworthy records of deadwood dwelling bryophyte species for Turkey and Southwest Asia. Cryptogamie, Bryologie 20 (4): 33-44, DOI: 10.5252/cryptogamie-bryologie2021v42a4, URL: http://dx.doi.org/10.5252/cryptogamie-bryologie2021v42a4
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