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A universe of beauty, mystery and wonder
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Showing posts with label Fungi. Show all posts
Showing posts with label Fungi. Show all posts

Saturday, April 29, 2017

UNKNOWN FUNGUS FOUND GROWING ON INTERNATIONAL SPACE STATION - It is clogging waterlines and spreading on walls and surfaces - NASA will investigate

©http://ottersandsciencenews.blogspot.ca/. Unauthorized duplication of this blog's material is prohibited.   Excerpts and links may be used, provided that full credit and link is given to Otters and Science News Blogspot.  Link to this post:  http://ottersandsciencenews.blogspot.ca/2017/04/unknown-fungus-found-growing-on.html - Thank you for visiting my blog.
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Those of you who remember the film "Alien" know it's bad news to find an uninvited guest on board a spacecraft. 
  • Astronauts have reported funding strange microbial growths on walls and surfaces, and it has even clogged waterlines
  • Two instruments onboard will be used to analyse it in orbit
NASA is set to use a radical new 'tricorder' DNA sequencer to work out what a mysterious fungus found growing on the International Space Station is.

Astronauts have reported funding the strange microbial growths on walls and surfaces, and it has even clogged waterlines. 
Now, two instruments onboard will be used to analyse it in orbit, allowing mission controllers to work out how to deal with it.   Currently, the only way to identify contaminants is to take a sample and send it back to Earth.
 
Continue reading

Thursday, January 1, 2015

THE ZOO IN OUTER SPACE - Experiment has placed 46 species outside the Space Station to observe radiation effects on life forms such as microbes and fungi

daily life©http://ottersandsciencenews.blogspot.ca/. Unauthorized duplication of this blog's material is prohibited.   Excerpts and links may be used, provided that full credit and link is given to Otters and Science News Blogspot.  Link to this post:  http://ottersandsciencenews.blogspot.ca/2014/12/the-zoo-in-outer-space-experiment-has.html - Thank you for visiting my blog.
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  • 46 species of bacteria, fungi and arthropods were delivered by a Progress supply ship to the Station in July
  • Could help solve the mystery of possible life on Mars.
  • Cosmonauts Alexander Skvortsov and Oleg Artemyev attached the package to the outside of the Zvezda module on 18 August
  • Some compartments recreate the Martian atmosphere by filtering some sunlight and retaining some pressure
  • Will remain for 18 months to study how they deal with space radiation
  • Expose has special compartments that recreate the martian atmosphere by filtering some sunlight and retaining some pressure.
    The Expose-2 experiment has special compartments that recreate the Martian atmosphere by filtering some sunlight and retaining some pressure.

    Monday, August 25, 2014

    A FUNGUS CAN CONTROL ANTS' BRAINS TURNING THEM INTO ZOMBIES

    
    A dead carpenter ant, with fungus sprouting from its head. A parasitic fungus, a species of Ophiocordyceps, has the ability to take over the mind and body of the ant before leading it to its final resting place
    Ant with fungus sprouting from its head

    Watch out for the zombie ants!
    Scientists find insects infected by mind controlling fungus always go back to their nest so their killer can find fresh victims.

  • Ophiocordyceps camponoti-rufipedis dubbed the 'zombie ant fungus'
  • Controls the behavior of carpenter ant workers
  • Manipulates victims to die in the vicinity of the colony, ensuring a constant supply of potential new hosts
  • Infects others by dropping spores
  • Saturday, June 21, 2014

    THE SURREAL MUSHROOMS OF OCEANIA - They look like life forms from another planet

    Steve Axford’s photographs seem to come from a slightly enchanted place. It’s a place where the pale brown lumps I think of as "mushrooms" have been transformed into a host of strange new creatures—some shimmering, some translucent, some hairy, some hideous, but all magic.



    Read more and see more pictures
    http://www.radiolab.org/story/lost-mushrooms-oceania/

    RELATED

    Steve Axford photography
    http://steveaxford.smugmug.com/

    Mushrooms make their own weather
    http://ottersandsciencenews.blogspot.ca/2013/11/mushrooms-make-their-own-weather.html

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    Thursday, February 13, 2014

    WHEN IT'S OK TO CUT MOLD OFF FOOD, AND WHEN THE ENTIRE FOOD SHOULD BE DISCARDED

     
    This article was originally published at The Conversation. The publication contributed the article to Live Science's Expert Voices: Op-Ed & Insights.
     
    The short answer is that it’s a lot safer than not cutting it off.  Some molds make and release poisons, called mycotoxins, into the food that could, over time, make you very sick. Why they do it is not especially well understood but that doesn’t make it any safer. Some moldy foods should simply be discarded (ideally, to compost). For others, though, you can salvage and use the unaffected parts without exposing yourself to a health risk. That’s good if your moldy food is an expensive, vintage cheddar cheese!

    The life of molds

    Molds are fungi. They’re related to mushrooms, and the yeasts we use to make bread, or convert sugars to alcohol. They are heterotrophs, meaning they can’t make their own food (unlike plants). Instead, they degrade complex organic molecules in their environment into smaller molecules they can absorb to meet their energy and nutrient needs.
     
    In nature, mold’s ability to break down detritus (waste) ensures that dead matter doesn’t accumulate. It also enables the release of minerals that are chemically tied up in detritus to the plants that need them for their primary production.
     
    Molds are single-celled organisms and, individually, are microscopic. When water and nutrients are available (such as in semi-perishable foods) they grow in number: to procreate, mold cells simply make copies of all essential cell components, and then divide into two new (genetically identical) “daughter” cells.
     
    When molds divide the two cells stay connected and when they divide again and again, they form a long chain of cells, called a hypha. The hyphae can branch and collectively form a complex matrix called a mycelium that, when big enough, can be seen with an unaided eye. This is the furry growth we can see, for example, on crumpets, berries, jam, tomato paste, cheese, and so on.
     
    The growing tips of the hyphae release enzymes into the environment to degrade complex organic molecules into usable nutrients. The tips of the hyphae also release the mycotoxins which are probably released to ward off competitors.
     
    So, wherever the mycelia go in search of nutrients, toxins may also be found. The extent of spread of the mycelium is not always visible, however, and herein lies the problem.

    What to do?

    Many molds can grow on, and spoil, our foods. Among those we are likely to encounter on foods in our homes are Penicillium (“cousins” of those used to make antibiotics, or to ripen some cheeses), Aspergillus, and on fruits, Botrytis.
     
    You’re unlikely to experience any immediate symptoms from ingestion of mycotoxin-contaminated foods. Ongoing exposure increases the chances of a range of diseases including include kidney, liver and immune system damage, increased risk of a range of cancers and neurological symptoms; though these worst-case scenarios are rare.
     
    Not all molds on foods will produce mycotoxins, or produce them at harmful levels, but without a microscope and laboratory its hard to distinguish the dangerous and harmless ones. Given the risk to your health its best to take a very cautious approach to visible mold growth on any food with some exceptions.
     
    A good rule of thumb to judge whether a moldy food can be “saved” is its moisture content or firmness. Foods with a high moisture content such as cooked casseroles, soft fruit and vegetables, pastes/sauces and soft cheeses can have invisible hyphae growing below the surface and producing mycotoxins.
     
    The same is true for porous foods such as bread and cakes where the hyphae can penetrate. All of these foods should be discarded if you see mold on the surface.
     
    Conversely a cheddar, or a salami, or carrot, that have dense structure are less likely to have extensive hyphal growth away from the visible mycelium. In these cases the mycelium can be cut away (to a centimetre or two depth) and the remaining food consumed with little risk.
    The United States' Department of Agriculture’s website is a good source of advice for dealing with mold contamination on a wide variety of foods.
     
    The authors do not work for, consult to, own shares in or receive funding from any company or organisation that would benefit from this article. They also have no relevant affiliations.
    This article was originally published on The Conversation. Read the original article. The views expressed are those of the author and do not necessarily reflect the views of the publisher. This version of the article was originally published on Live Science.
     

    Editor's Recommendations


    Source - http://www.livescience.com/43348-health-check-is-it-safe-to-cut-mold-off-food.html

    More on amazing fungi on this blog
    http://ottersandsciencenews.blogspot.ca/search/label/Fungi

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    Friday, February 7, 2014

    SELF-BUILDING TOWER MADE OUT OF FUNGUS AND CORN HUSKS TO BE GROWN IN NEW YORK

    SELF BUILDING BRICKS WILL BE PLANTED FOR OUTDOOR AIR CONTITIONING
     
  • New York's Museum of Modern Art PS1 will host the organic structure
  • Bricks will be grown from a combination of corn husks and mycelium and used to build the structure, which is designed to draw cool air downwards
  • Architect David Benjamin's Hy-Fi design will be almost carbon neutral in its construction and even reflective bricks used in the structure will be recycled
    Once used in the eco-friendly building, the 'self-assembling' fungus bricks will carry on growing and bond together to strengthen the overall structure.
    The building will incorporate reflective bricks to throw light downwards onto the organic blocks so that they can carry on growing
  •  
    Read more and see illustrations of the planned buildings
    http://www.dailymail.co.uk/sciencetech/article-2553901/Tower-FUNGUS-set-grow-New-York-Self-building-blocks-planted-outdoor-air-conditioning.html

    FUNGI RELATED
     
    What are fungi?
    Mushrooms make their own weather 
    The largest organism on earth is a fungus!  It's 10 square km and thousands of years old.
    http://ottersandsciencenews.blogspot.ca/2013/11/mushrooms-make-their-own-weather.html

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    Tuesday, November 26, 2013

    MUSHROOMS MAKE THEIR OWN WEATHER

    Fungi alter nearby air humidity to create 'winds' that spread their spores far and wide.
    • Researchers found that oyster and Shitake mushrooms release water vapour that cools the air around them, creating convection currents
    • This in turn generates miniature winds that lift their spores into the air
    • The scientists believe the same process may be used by all mushroom fungi, including those that cause diseases in plants, animals and humans 
    Plants use a variety of methods to spread seeds, including gravity, forceful ejection, wind, water and animals.
     
    Mushrooms have long been thought of as passive seed spreaders, releasing their spores and then relying on air currents to carry them. 
     
    But new research has shown that mushrooms are able to disperse their spores over a wide area even when there is not a breath of wind - by creating their own 'weather'. 
     
    U.S. scientists used high-speed filming techniques and mathematical modelling to show how oyster and Shitake mushrooms release water vapour to cool the air surrounding them, creating convection currents.  The scientists believe the same process may be used by all mushroom fungi, including those that cause diseases in plants, animals and humans.  This in turn generates winds that lift their spores into the air.

    A mushroom- or toadstool - is technically the fleshy, spore-bearing, fruiting body of a fungus.  Millions of spores, microscopic single-celled 'seeds', may be produced by a single mushroom, and at least a few of these are likely to land somewhere suitable for fungal growth.  More than 80 different types of wild edible mushroom grow in the UK, as well as many poisonous species.  One of the world's deadliest mushrooms, the death cap, is a common sight in British woodland. Although pleasant tasting, just one ounce of the fungus is enough to kill.
     
     
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    RELATED
     
    THE LARGEST ORGANISM ON EARTH IS A FUNGUS

    Next time you purchase white button mushrooms at the grocery store, just remember, they may be cute and bite-size but they have a relative out west that occupies some 2,384 acres (965 hectares) of soil in Oregon's Blue Mountains. Put another way, this humongous fungus would encompass 1,665 football fields, or nearly four square miles (10 square kilometers) of turf.
     
    The discovery of this giant Armillaria ostoyae in 1998 heralded a new record holder for the title of the world's largest known organism, believed by most to be the 110-foot- (33.5-meter-) long, 200-ton blue whale.
     
    Based on its current growth rate, the fungus is estimated to be 2,400 years old but could be as ancient as 8,650 years, which would earn it a place among the oldest living organisms as well.

    Read more - http://www.scientificamerican.com/article.cfm?id=strange-but-true-largest-organism-is-fungus

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    WHAT ARE FUNGI?  Neither plant nor animals, nor bacteria, nor protists.  They are a separate kingdom altogether.
     
    A fungus (/ˈfʌŋɡəs/; plural: fungi[3] or funguses[4]) is a member of a large group of eukaryotic organisms that includes microorganisms such as yeasts and molds (British English: moulds), as well as the more familiar mushrooms.
     
    These organisms are classified as a kingdom, Fungi, which is separate from plants, animals, protists and bacteria. One major difference is that fungal cells have cell walls that contain chitin, unlike the cell walls of plants and some protists, which contain cellulose, and unlike the cell walls of bacteria.
     
    Mycology has often been regarded as a branch of botany, even though it is a separate kingdom in biological taxonomy. Genetic studies have shown that fungi are more closely related to animals than to plants.

    Source - http://en.wikipedia.org/wiki/Fungus

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