Showing posts with label protists. Show all posts
Showing posts with label protists. Show all posts

Tuesday, June 14, 2011

Life in 10 Drops of Water: Assorted Protists and rotifers

This is the fourth in the series of images of some of the organisms found in just a few drops of water collected from a pond in a disused quarry on the edge of the moors in Weardale.



An amoeba. I could spend a long time watching these - it's rather relaxing watching an organism whose motto for life must be 'go with the flow'

It seems to have ingested a wide varieties of objects.

This is one of the free-swimming ploimate rotifers, with tails that look like scissors - possibly Monommata caudata...? 

Vorticella - a ciliate protist on a stalk, that contracts like a spring when disturbed. The green object is a cyanobacterium - possibly Gloeocapsa.

A ciliate protist that creeps along using strange 'whiskers' - and also swims very actively using smaller cilia. You can see a contractile vacuole quite nicely here. I think this, and the three below, might all be Oxytricha.



All three of the above ciliate protists look rather well fed - full of undigested algae.

This beautiful object is the flask-shaped shell of the testate rhizopod Cyphoderia ampulla. The amoeba that lived inside has long-since died.


I thought this might be the shell of a testate rhizopod, but Natalia has kindly identified it as a tintinnid  ..........

... at higher magnification you can see that it's constructed of tiny translucent particles....

... that are especially fine and fit together beautifully around the orifice




.... and finally another heliozoan, that appears to be ingesting something

Sunday, June 5, 2011

Life in a few Drops of Water:Dinoflagellates

This is the third in the series of images of some of the organisms found in just a few drops of water collected from a pond in a disused quarry on the edge of the moors in Weardale

This little object (which I think may be a species of Peridinium), a mere five one hundredths of a millimetre across, is a dinoflagellate - a single-celled, hardshelled organism that's powered by two rapidly undulating flagellae. One runs on the horizontal groove around the 'equator' of the example you can see here. The other runs in vertical groove, extending from the equator to the apex - it's out of sight on the distal side of this image, although you can just see the apex of the vertical groove at the top. It seems like an unlikely means of motive power but it works - this one whizzed all over the slide before it paused for long enough for me to get a photograph.

This is the empty shell of a dead dinoflagellate, which reveals the intricate pattern on the armoured surface composed of cellulose plates. Unfortunately....

....it wasn't intact - you can see where about a quarter of the sphere has broken away, but you can also see the equatorial flagellar groove rather nicely. The green object approrach from lower right is a diatom, which is just about to punt the diatom out of the way as it glides past.
For some fascinating recent research on dinoflageelates, take a look at this post about a predatory dinoflagellate at Jennifer Frazer's The Artful Amoeba web site, where you can read about their amazing biology and also find links to drawings and electron micrographs that show the organism rather more clearly than my photographs.

Coming next: An assortment of protists

Wednesday, March 2, 2011

Microscopic Living Do-nut

Here's another interesting organism that lives in the temporary pools of water, known as phytotelmata, that accumulate in cavities in the surface roots of beech trees. It's a testate rhizopod - an amoeba that lives in a shell that it secretes - and is called Arcella. It's about a tenth of a millimetre in diameter. The shell in old specimens tends to be brown but this one is nicely translucent, revealing the exquisite sculptured pattern that decorates its surface.

Here's the flip-side, showing the hole in the underside of the hollow do-nut shaped shell and...

... here, with a shift in focus, you can see the amoeba inside, with one arm or pseudopodium protruding out of the hole. The dark structure that you can see in the cytoplasm is a vacuole filled with carbon dioxide - the organism produces one of these to increase its buoyancy when it needs to float up to the surface.

Here you can see the whole organism inside the shell in side view, poised above the hole. The circular structure in the cytoplasm, top left at about 10 o'clock, is a nucleus.... the control centre of the cell.

There are always two nuclei in the cytoplasm of each Arcella.... so which one is in control? Who knows?

And finally, here it is on the move, extending a pseudopodium that it uses for locomotion and food capture.

This is probably Arcella discoides. If you'd like to see some wonderful illustrations of more testate rhizopods take a look at this page, where you'll need to double-click on the images to enlarge them.

Wednesday, February 16, 2011

Teeming Millions - Paramecium Population Explosion

Well, teeming thousands anyway. These little organisms are Paramecium, single-cells protists that swim with incredible speed using ciliary hairs on their surface, that beat in rhythm. Here they're magnified one hundred times. This single drop of  water on a microscope slide probably contained about five hundred...

... and this little pool of water, trapped in a cavity formed by the coalesced roots of a beech tree, must have contained millions, feeding in bacteria and other microscopic organisms that were in turn feeding on the rotting leaves trapped in the water. The pool is fed by rivulets of water that trickle down the trunk when it rains. Temporary pools of water trapped in plants like this are known as phytotelmata. The best-known examples are the pools of water trapped by the leaves of bromeliads (urn plants) that grow as epiphytes in the rainforest tree canopy. They host all sorts of exotic animals - tree frogs, land crabs, dragonflies - but this beech tree-root equivalent hosted nothing larger than rat-tailed maggots - the larval stages of drone flies. But while the species diversity in the beech-tree pool might have been low, the sheer abundance of the Paramecium was staggering. 

Here they are magnified two hundred times. The circles that you can see in some of them are contractile vacuoles, that constantly expell water from the cell cytoplasm.
  
At 400 times magnification you can see the fine cilia (top right) that are arranged in rows over the surface of the cell - you can just make out their dark parallel lines and you can also see algae that the Paramecium has ingested, inside the cell.

Static images don't really do justice to the helter-skelter movement of these little protists, but the video clip below gives some impression of what is going on in those little temporary pools of water trapped by the tree roots.

 

Monday, February 22, 2010

A Living Jewel


This exquisite object, nature's equivalent of a FabergĂ© egg but only about one tenth of a millimetre long, is a testate rhizopod - a species of amoeba that lives inside a balloon-shaped shell. Testate rhizopods either secrete their shells or they cement minute sand grains together to create one. When you think about it, that's a remarkable feat of construction for one of the lowest forms of life that, superficially, is little more than a slithering blob of cytoplasm. You can see some more examples here. Testate rhizopds that assemble a shell from sand grains are often assigned to the genus Difflugia and scores of 'species' have been described, based on the components and construction of their shell, although it's not clear to what extent these are really distinct 'species'. You can download a guide to identification and where to find them here. I found this specimen when I was screening a sample of water from amongst the waterweeds on the edge of a pond in Durham. I have to admit that the image above has involved a bit of optical trickery because......... 

... this is what I saw when I first examined the organism under normal bright field microscopy, revealing the translucent quartz grains that formed its case. Switching to dark field microscopy....

... where the image is formed from light diffracted by the translucent grains showed them in a new light. But it was only when I switched to polarised light microscopy, which reveals the interference colours formed by the birefringent grains, that the ultimate beauty of this tiny organism's case was revealed.

Jewellery on a microscopic scale...

Sunday, June 7, 2009

Living Springs








This unusual single-celled organism, called Vorticella, lives amongst the algae that line the inside my water butt, that collects rainwater from the garage roof. Each individual resembles a bell attached to a patch of algae via a long stalk. It feeds using a ring of beating hairs around the edge of the ‘bell’, creating a water current that sweeps in minute algae. All those green blobs inside are algae that it has trapped. Vorticella reacts to the slightest disturbance in a remarkable way, by coiling its stalk like a spring so that it shrinks back out of sight. The short video clip shows this behaviour quite nicely. Each Vorticella is about a fifth of a millimetre long, at full stretch. You can read more about Vorticella at http://www.microscopy-uk.org.uk/mag/indexmag.html?http://www.microscopy-uk.org.uk/mag/artjun03/wdvorticella.html