Amanita Muscaria (“Fly Agaric”)
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Strážovské Vrchy Mts., Resort Podskalie; See P. 12)
a journal on biodiversity, taxonomy and conservation of fungi No. 7 March 2006 Tricholoma dulciolens (Strážovské vrchy Mts., resort Podskalie; see p. 12) ISSN 1335-7670 Catathelasma 7: 1-36 (2006) Lycoperdon rimulatum (Záhorská nížina Lowland, Mikulášov; see p. 5) Cotylidia pannosa (Javorníky Mts., Dolná Mariková – Kátlina; see p. 22) March 2006 Catathelasma 7 3 TABLE OF CONTENTS BIODIVERSITY OF FUNGI Lycoperdon rimulatum, a new Slovak gasteromycete Mikael Jeppson 5 Three rare tricholomoid agarics Vladimír Antonín and Jan Holec 11 Macrofungi collected during the 9th Mycological Foray in Slovakia Pavel Lizoň 17 Note on Tricholoma dulciolens Anton Hauskknecht 34 Instructions to authors 4 Editor's acknowledgements 4 Book notices Pavel Lizoň 10, 34 PHOTOGRAPHS Tricholoma dulciolens Vladimír Antonín [1] Lycoperdon rimulatum Mikael Jeppson [2] Cotylidia pannosa Ladislav Hagara [2] Microglossum viride Pavel Lizoň [35] Mycena diosma Vladimír Antonín [35] Boletopsis grisea Petr Vampola [36] Albatrellus subrubescens Petr Vampola [36] visit our web site at fungi.sav.sk Catathelasma is published annually/biannually by the Slovak Mycological Society with the financial support of the Slovak Academy of Sciences. Permit of the Ministry of Culture of the Slovak rep. no. 2470/2001, ISSN 1335-7670. 4 Catathelasma 7 March 2006 Instructions to Authors Catathelasma is a peer-reviewed journal devoted to the biodiversity, taxonomy and conservation of fungi. Papers are in English with Slovak/Czech summaries. Elements of an Article Submitted to Catathelasma: • title: informative and concise • author(s) name(s): full first and last name (addresses as footnote) • key words: max. 5 words, not repeating words in the title • main text: brief introduction, methods (if needed), presented data • illustrations: line drawings and color photographs • list of references • abstract in Slovak or Czech: max. -
Cultivation of the Oyster Mushroom (Pleurotus Sp.) on Wood Substrates in Hawaii
CULTIVATION OF THE OYSTER MUSHROOM (PLEUROTUS SP.) ON WOOD SUBSTRATES IN HAWAII A THESIS SUBMITTED TO THE GRADUATE DIVISION OF THE UNIVERSITY OF HAWAI'IIN PARTIAL FULFILLMENT OF THE REQUIREMENTS FOR THE DEGREE OF MASTER OF SCIENCE IN TROPICAL PLANT AND SOIL SCIENCE DECEMBER 2004 By Tracy E. Tisdale Thesis Committee: Susan C. Miyasaka, Chairperson Mitiku Habte Don Hemmes Acknowledgements I would first like to acknowledge Susan C. Miyasaka, my major advisor, for her generosity, thoughtfulness, patience and infinite support throughout this project. I'd like to thank Don Hemmes and Mitiku Habte for taking time out of their schedules to serve on my committee and offer valuable insight. Thanks to Jim Hollyer for the much needed advising he provided on the economic aspect of this project. Thanks also to J.B. Friday, Bernie Kratky and all the smiling faces at Beaumont, Komohana, Waiakea and Volcano Research Stations who provided constant encouragement and delight throughout my mushroom growing days in Hilo. 111 Table of Contents Acknowledgements , iii List of Tables ,,, , vi List of Figures vii Chapter 1: Introduction '" 1 Chapter 2: Literature Review , 3 Industry ,,.. ,,,,, , 3 Substrates 6 Oyster Mushroom " '" 19 Production Overview 24 Chapter 3: Research Objectives , '" 32 Chapter 4: Materials and Methods 33 Substrate Wood 33 Cultivation Methods 34 Crop Yield ,, 39 Nutrients 43 Taste 44 Fruiting Site Assessment. .46 Economic Analysis .46 Chapter 5: Results and Discussion ,, .48 Substrate Wood ,, 48 Preliminary Experiment. '" 52 IV Final Experiment. -
Appendix K. Survey and Manage Species Persistence Evaluation
Appendix K. Survey and Manage Species Persistence Evaluation Establishment of the 95-foot wide construction corridor and TEWAs would likely remove individuals of H. caeruleus and modify microclimate conditions around individuals that are not removed. The removal of forests and host trees and disturbance to soil could negatively affect H. caeruleus in adjacent areas by removing its habitat, disturbing the roots of host trees, and affecting its mycorrhizal association with the trees, potentially affecting site persistence. Restored portions of the corridor and TEWAs would be dominated by early seral vegetation for approximately 30 years, which would result in long-term changes to habitat conditions. A 30-foot wide portion of the corridor would be maintained in low-growing vegetation for pipeline maintenance and would not provide habitat for the species during the life of the project. Hygrophorus caeruleus is not likely to persist at one of the sites in the project area because of the extent of impacts and the proximity of the recorded observation to the corridor. Hygrophorus caeruleus is likely to persist at the remaining three sites in the project area (MP 168.8 and MP 172.4 (north), and MP 172.5-172.7) because the majority of observations within the sites are more than 90 feet from the corridor, where direct effects are not anticipated and indirect effects are unlikely. The site at MP 168.8 is in a forested area on an east-facing slope, and a paved road occurs through the southeast part of the site. Four out of five observations are more than 90 feet southwest of the corridor and are not likely to be directly or indirectly affected by the PCGP Project based on the distance from the corridor, extent of forests surrounding the observations, and proximity to an existing open corridor (the road), indicating the species is likely resilient to edge- related effects at the site. -
Bur¯Aq Depicted As Amanita Muscaria in a 15Th Century Timurid-Illuminated Manuscript?
ORIGINAL ARTICLE Journal of Psychedelic Studies 3(2), pp. 133–141 (2019) DOI: 10.1556/2054.2019.023 First published online September 24, 2019 Bur¯aq depicted as Amanita muscaria in a 15th century Timurid-illuminated manuscript? ALAN PIPER* Independent Scholar, Newham, London, UK (Received: May 8, 2019; accepted: August 2, 2019) A series of illustrations in a 15th century Timurid manuscript record the mi’raj, the ascent through the seven heavens by Mohammed, the Prophet of Islam. Several of the illustrations depict Bur¯aq, the fabulous creature by means of which Mohammed achieves his ascent, with distinctive features of the Amanita muscaria mushroom. A. muscaria or “fly agaric” is a psychoactive mushroom used by Siberian shamans to enter the spirit world for the purposes of conversing with spirits or diagnosing and curing disease. Using an interdisciplinary approach, the author explores the routes by which Bur¯aq could have come to be depicted in this manuscript with the characteristics of a psychoactive fungus, when any suggestion that the Prophet might have had recourse to a drug to accomplish his spirit journey would be anathema to orthodox Islam. There is no suggestion that Mohammad’s night journey (isra) or ascent (mi’raj) was accomplished under the influence of a psychoactive mushroom or plant. Keywords: Mi’raj, Timurid, Central Asia, shamanism, Siberia, Amanita muscaria CULTURAL CONTEXT Bur¯aq depicted as Amanita muscaria in the mi’raj manscript The mi’raj manuscript In the Muslim tradition, the mi’raj was preceded by the isra or “Night Journey” during which Mohammed traveled An illustrated manuscript depicting, in a series of miniatures, overnight from Mecca to Jerusalem by means of a fabulous thesuccessivestagesofthemi’raj, the miraculous ascent of beast called Bur¯aq. -
Topic 3. Diet Digestibilities
TOPIC 3. DIET DIGESTIBILITIES General trends in diet diges tibili ties follow the general trends in the cell structures of the plants. The stages and parts of plant growth that have thinner and less lignified cell walls are, for the most part, more digestible than those stages and parts with more lignified cell walls. Cell chemistry also affects digestibility, however. Tannins, for example, act as inhibitors of digestion. Changes in cell structure occur as plant phenology changes over the growing season. Emerging, growing tissue cannot have rigid cell walls, for new tissue is being added as cells increase in both number and size. When the numbers and sizes of cells in plant tissue have both reached maximum, cell maturation occurs and cell walls increase in thickness and rigidity. The cells in stems become very rigid and serve as supporting tissue. Cells in leaf tissue mature, become decadent, and the leaf falls to the ground. Flower petals mature, wither, and fall. Functional changes in different plant parts are accompanied by structural changes in the cells, and these changes affect nutritive relationships between animal and range. The concepts underlying relationships between cell structure and digestibility permit one to generalize on seasonal variations in diet digestibility. Consumption of decadent lignified dormant forage results in stable diet digestibilities. As the growing season progresses, diet digestibilities increase as new growth makes up an increasing proportion of the diet. As the growing season progresses and plants mature, diet digestibilities begin to drop until they reach the annual low when only de cadent lignified forage is available again. -
Field Guide to Common Macrofungi in Eastern Forests and Their Ecosystem Functions
United States Department of Field Guide to Agriculture Common Macrofungi Forest Service in Eastern Forests Northern Research Station and Their Ecosystem General Technical Report NRS-79 Functions Michael E. Ostry Neil A. Anderson Joseph G. O’Brien Cover Photos Front: Morel, Morchella esculenta. Photo by Neil A. Anderson, University of Minnesota. Back: Bear’s Head Tooth, Hericium coralloides. Photo by Michael E. Ostry, U.S. Forest Service. The Authors MICHAEL E. OSTRY, research plant pathologist, U.S. Forest Service, Northern Research Station, St. Paul, MN NEIL A. ANDERSON, professor emeritus, University of Minnesota, Department of Plant Pathology, St. Paul, MN JOSEPH G. O’BRIEN, plant pathologist, U.S. Forest Service, Forest Health Protection, St. Paul, MN Manuscript received for publication 23 April 2010 Published by: For additional copies: U.S. FOREST SERVICE U.S. Forest Service 11 CAMPUS BLVD SUITE 200 Publications Distribution NEWTOWN SQUARE PA 19073 359 Main Road Delaware, OH 43015-8640 April 2011 Fax: (740)368-0152 Visit our homepage at: http://www.nrs.fs.fed.us/ CONTENTS Introduction: About this Guide 1 Mushroom Basics 2 Aspen-Birch Ecosystem Mycorrhizal On the ground associated with tree roots Fly Agaric Amanita muscaria 8 Destroying Angel Amanita virosa, A. verna, A. bisporigera 9 The Omnipresent Laccaria Laccaria bicolor 10 Aspen Bolete Leccinum aurantiacum, L. insigne 11 Birch Bolete Leccinum scabrum 12 Saprophytic Litter and Wood Decay On wood Oyster Mushroom Pleurotus populinus (P. ostreatus) 13 Artist’s Conk Ganoderma applanatum -
The Mycological Society of San Francisco • Jan. 2016, Vol. 67:05
The Mycological Society of San Francisco • Jan. 2016, vol. 67:05 Table of Contents JANUARY 19 General Meeting Speaker Mushroom of the Month by K. Litchfield 1 President Post by B. Wenck-Reilly 2 Robert Dale Rogers Schizophyllum by D. Arora & W. So 4 Culinary Corner by H. Lunan 5 Hospitality by E. Multhaup 5 Holiday Dinner 2015 Report by E. Multhaup 6 Bizarre World of Fungi: 1965 by B. Sommer 7 Academic Quadrant by J. Shay 8 Announcements / Events 9 2015 Fungus Fair by J. Shay 10 David Arora’s talk by D. Tighe 11 Cultivation Quarters by K. Litchfield 12 Fungus Fair Species list by D. Nolan 13 Calendar 15 Mushroom of the Month: Chanterelle by Ken Litchfield Twenty-One Myths of Medicinal Mushrooms: Information on the use of medicinal mushrooms for This month’s profiled mushroom is the delectable Chan- preventive and therapeutic modalities has increased terelle, one of the most distinctive and easily recognized mush- on the internet in the past decade. Some is based on rooms in all its many colors and meaty forms. These golden, yellow, science and most on marketing. This talk will look white, rosy, scarlet, purple, blue, and black cornucopias of succu- at 21 common misconceptions, helping separate fact lent brawn belong to the genera Cantharellus, Craterellus, Gomphus, from fiction. Turbinellus, and Polyozellus. Rather than popping up quickly from quiescent primordial buttons that only need enough rain to expand About the speaker: the preformed babies, Robert Dale Rogers has been an herbalist for over forty these mushrooms re- years. He has a Bachelor of Science from the Univer- quire an extended period sity of Alberta, where he is an assistant clinical profes- of slower growth and sor in Family Medicine. -
AMATOXIN MUSHROOM POISONING in NORTH AMERICA 2015-2016 by Michael W
VOLUME 57: 4 JULY-AUGUST 2017 www.namyco.org AMATOXIN MUSHROOM POISONING IN NORTH AMERICA 2015-2016 By Michael W. Beug: Chair, NAMA Toxicology Committee Assessing the degree of amatoxin mushroom poisoning in North America is very challenging. Understanding the potential for various treatment practices is even more daunting. Although I have been studying mushroom poisoning for 45 years now, my own views on potential best treatment practices are still evolving. While my training in enzyme kinetics helps me understand the literature about amatoxin poisoning treatments, my lack of medical training limits me. Fortunately, critical comments from six different medical doctors have been incorporated in this article. All six, each concerned about different aspects in early drafts, returned me to the peer reviewed scientific literature for additional reading. There remains no known specific antidote for amatoxin poisoning. There have not been any gold standard double-blind placebo controlled studies. There never can be. When dealing with a potentially deadly poisoning (where in many non-western countries the amatoxin fatality rate exceeds 50%) treating of half of all poisoning patients with a placebo would be unethical. Using amatoxins on large animals to test new treatments (theoretically a great alternative) has ethical constraints on the experimental design that would most likely obscure the answers researchers sought. We must thus make our best judgement based on analysis of past cases. Although that number is now large enough that we can make some good assumptions, differences of interpretation will continue. Nonetheless, we may be on the cusp of reaching some agreement. Towards that end, I have contacted several Poison Centers and NAMA will be working with the Centers for Disease Control (CDC). -
Research Article Chemical, Bioactive, and Antioxidant Potential of Twenty Wild Culinary Mushroom Species
Hindawi Publishing Corporation BioMed Research International Volume 2015, Article ID 346508, 12 pages http://dx.doi.org/10.1155/2015/346508 Research Article Chemical, Bioactive, and Antioxidant Potential of Twenty Wild Culinary Mushroom Species S. K. Sharma1 and N. Gautam2 1 Department of Plant Pathology, CSK, Himachal Pradesh Agriculture University, Palampur 176 062, India 2Centre for Environmental Science and Technology, School of Environment and Earth Sciences, Central University of Punjab, Bathinda 151 001, India Correspondence should be addressed to N. Gautam; [email protected] Received 8 May 2015; Accepted 11 June 2015 Academic Editor: Miroslav Pohanka Copyright © 2015 S. K. Sharma and N. Gautam. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. The chemical, bioactive, and antioxidant potential of twenty wild culinary mushroom species being consumed by the peopleof northern Himalayan regions has been evaluated for the first time in the present study. Nutrients analyzed include protein, crude fat, fibres, carbohydrates, and monosaccharides. Besides, preliminary study on the detection of toxic compounds was done on these species. Bioactive compounds evaluated are fatty acids, amino acids, tocopherol content, carotenoids (-carotene, lycopene), flavonoids, ascorbic acid, and anthocyanidins. Fruitbodies extract of all the species was tested for different types of antioxidant assays. Although differences were observed in the net values of individual species all the species were found to be rich in protein, and carbohydrates and low in fat. Glucose was found to be the major monosaccharide. Predominance of UFA (65–70%) over SFA (30–35%) was observed in all the species with considerable amounts of other bioactive compounds. -
Mushroom Basics by Dan Gill, Ethno-Gastronomist
Mushroom Basics By Dan Gill, Ethno-Gastronomist Photos compliments of “Wildman” Steve Brill http://www.wildmanstevebrill.com The Good White Morel Morchella deliciosa I was working in the woods on a fine spring day several years ago, when I thought I smelled mushrooms. Looking around the mixed hardwood stand dominated by Tulip Poplars, I noticed a lot of Sweetgum balls. When I looked closer, I realized that many were actually morel mushrooms in camouflage. Once my eyes and brain adapted to the difference, I realized that I was surrounded by a stealthy delicacy, some six inches high. I ran for some brown paper bags and picked several pounds. Though I have found edible mushrooms in every month of the year, the season really begins, at least psychologically, in early spring with the emergence of morels, or “merkles” as they are known by many mushroomers. Start looking around apple blossom time when wild asparagus and May Apples are up and oak leaves are the size of squirrel’s ears, or about mid April. Morels are sometimes found in unusual places, such as mulch piles and lawns (especially near elm trees), but they often inhabit old apple orchards, Tulip Poplar stands and burned over woodlands. If you find more than you can use right away, call me – I will even help you pick them! Otherwise dry them. Morel flavor actually intensifies with drying. There are many excellent edibles, besides morels, that grow in abundance throughout Virginia and are easily identified, once you know what to look for. The differences and points of distinction are characteristic and quite obvious: Is the cap of a certain color, texture or feel? Does it have gills, pores or spikes underneath? What color are the gills and spore print? Does it grow on the ground or on trees, in the woods or on lawns? Once you have seen, touched, smelled and tasted a specific mushroom, it is like telling the difference between an apple and a tomato. -
Toxicological and Pharmacological Profile of Amanita Muscaria (L.) Lam
Pharmacia 67(4): 317–323 DOI 10.3897/pharmacia.67.e56112 Review Article Toxicological and pharmacological profile of Amanita muscaria (L.) Lam. – a new rising opportunity for biomedicine Maria Voynova1, Aleksandar Shkondrov2, Magdalena Kondeva-Burdina1, Ilina Krasteva2 1 Laboratory of Drug metabolism and drug toxicity, Department “Pharmacology, Pharmacotherapy and Toxicology”, Faculty of Pharmacy, Medical University of Sofia, Bulgaria 2 Department of Pharmacognosy, Faculty of Pharmacy, Medical University of Sofia, Bulgaria Corresponding author: Magdalena Kondeva-Burdina ([email protected]) Received 2 July 2020 ♦ Accepted 19 August 2020 ♦ Published 26 November 2020 Citation: Voynova M, Shkondrov A, Kondeva-Burdina M, Krasteva I (2020) Toxicological and pharmacological profile of Amanita muscaria (L.) Lam. – a new rising opportunity for biomedicine. Pharmacia 67(4): 317–323. https://doi.org/10.3897/pharmacia.67. e56112 Abstract Amanita muscaria, commonly known as fly agaric, is a basidiomycete. Its main psychoactive constituents are ibotenic acid and mus- cimol, both involved in ‘pantherina-muscaria’ poisoning syndrome. The rising pharmacological and toxicological interest based on lots of contradictive opinions concerning the use of Amanita muscaria extracts’ neuroprotective role against some neurodegenerative diseases such as Parkinson’s and Alzheimer’s, its potent role in the treatment of cerebral ischaemia and other socially significant health conditions gave the basis for this review. Facts about Amanita muscaria’s morphology, chemical content, toxicological and pharmacological characteristics and usage from ancient times to present-day’s opportunities in modern medicine are presented. Keywords Amanita muscaria, muscimol, ibotenic acid Introduction rica, the genus had an ancestral origin in the Siberian-Be- ringian region in the Tertiary period (Geml et al. -
Hymenomycetes from Multan District
Pak. J. Bot., 39(2): 651-657, 2007. HYMENOMYCETES FROM MULTAN DISTRICT KISHWAR SULTANA, MISBAH GUL*, SYEDA SIDDIQA FIRDOUS* AND REHANA ASGHAR* Pakistan Museum of Natural History, Garden Avenue, Shakarparian, Islamabad, Pakistan. *Department of Botany, University of Arid Agriculture, Rawalpindi, Pakistan. Author for correspondence. E-mail: [email protected] Abstract Twenty samples of mushroom and toadstools (Hymenomycetes) were collected from Multan district during July-October 2003. Twelve species belonging to 8 genera of class Basidiomycetes were recorded for the 1st time from Multan: Albatrellus caeruleoporus (Peck.) Pauzar, Agaricus arvensis Sch., Agaricus semotus Fr., Agaricus silvaticus Schaef., Coprinus comatus (Muell. ex. Fr.), S.F. Gray, Hypholoma marginatum (Pers.) Schroet., Hypholoma radicosum Lange., Marasmiellus omphaloides (Berk.) Singer, Panaeolus fimicola (Pers. ex. Fr.) Quel., Psathyrella candolleana (Fr.) Maire, Psathyrella artemisiae (Pass.) K. M. and Podaxis pistilaris (L. ex. Pers.) Fr. Seven of these species are edible or of medicinal value. Introduction Multan lies between north latitude 29’-22’ and 30’-45’ and east longitude 71’-4’ and 72’ 4’55. It is located in a bend created by five confluent rivers. It is about 215 meters (740 feet) above sea level. The mean rainfall of the area surveyed is 125mm in the Southwest and 150 mm in the Northeast. The hottest months are May and June with the mean temperature ranging from 107°F to 109°F, while mean temperature of Multan from July to October is 104°F. The mean rainfall from July to October is 18 mm. The soils are moderately calcareous with pH ranging from 8.2 to 8.4.