Showing posts with label spotted salamander. Show all posts
Showing posts with label spotted salamander. Show all posts

Saturday, June 25, 2011

Week's End Survey Round Up V: The Copperhead, the Peeper of Spring, and the Misfortuned Furbearers


Well, despite the theft of our survey equipment, this week wasn't all bad!

Let me start with another bit of scenery.

Surprinsingly, the location above resulted in another interesting scenic photograph (see last week's post). 

This one, however, is interesting because of the pronounced rays of light coming from the upper right.  I also find it interesting because if one compares this picture to the one taken at the same location only a week ago, you can get a feeling for how much variation there is in the appearance of photos on these cameras.

__________________________________________________________________________
The Juvenile Copperhead (Agkistrodon contortix).  We captured this little guy in one of our grassland drift fences.  He was in a funnel trap.  This is the fourth Copperhead captured in this particular drift fence since last August.  So, not very common.  I've posted about finding Copperheads before, and catching a venomous snake never really looses its thrill.  Plus, these snakes are gorgeous!  Juveniles have an additional dimension to their beauty: the tail   The tails of juvenile copperheads are a bright yellow-white (see below).

This is because juvenile Copperheads hunt using a strategy called caudal luring. Copperheads are ambush predators, so they sit in one spot and wait for prey to come by.....then they strike.  Juvenile Copperheads increase their chances of ambushing prey with the aid of caudal luring.  This is accomplished by moving their yellow-white tail-tip in a serpentine fashion so that it resembles a worm....or some other bit of prey.  This tail movement then attracts frogs and lizards (which are a staple food item for young Copperheads).  Once the frog or lizard is close enough, the baby Copperhead strikes.

For a great document that summarizes and investigates information on the ecology of the Copperhead, see Fitch (1960).

Above: the juvenile Copperhead captured in our drift fence this week.  Note the yellow-white tail tip.

Above: a nice head shot of the little Copperhead.  I'll say it again, they are a handsome-looking snake!
_________________________________________________________________________

The metamorphosed Spring Peeper (Pseudacris crucifer):  It's the time of year when the amphibians species who laid eggs in the early spring are now having larvae metamorphose into tiny juveniles.  This week, for the first time, we started seeing froglets and tiny terrestrial salamanders.

One example was this tiny Spring Peeper froglet that I captured while tracking Box Turtles with radio telemetry equipment.  I happened to look down just as the little critter hopped out of my way.  It took alittle effort to catch such a minute (and delicate) amphibian while not injuring it, but I managed.

These frogs are some of the earliest breeders in the state, along with the Upland Chorus Frog (Pseudacris feriarum).  I heard both species calling in the ephemeral wetlands on-site as early as February of this year.  This is only the second individual of this species that we've captured at this site.  The individual captured previously was an adult....so click on the link to see the difference in size from the juvenile pictured below.

Above: newly metamorphosed frogs are usually small, but they are even smaller for members of the Genus Pseudacris.  These frogs are diminutive as adults, and as juveniles....well you can see the size compared to my thumb in this picture.

___________________________________________________________________________

The D.O.R. Mink (Neovison vison).  A Dead-On-Road, or DOR, animal is something one never wants to come across.  It really puts a downer on the day.  So...if I'm not at risk of putting myself or others in danger...I try and at least get something useful out of the carcass.  I don't have the facilities to make mammals into suitable museum specimens, but if it is an uncommon species and the carcass is still in good shape...I try to at least snap photos, get location information, note associated habitat, and take some measurements.  I then send this to the appropriate regulatory and/or museum folks.

For herps....it's alittle easier (no skinning involved, you just need access to a chemical fixative and preservative and some jars).  I always try to make specimens out of the DOR herps I find, if possible.

Anyways, we saw this poor mink dead in the middle of the road as we drove to the sites this Monday.  It was killed near a stream-crossing....with a fairly dense wooded riparian (i.e., stream-associated) buffer.  The carcass was fresh and in good shape.  We got some photos of the feet, head and etc..

Also turns out, it was a female with enlarged nipples, which meant that she was nursing young nearby.  Those young may not have very good odds of survival anymore.

While taking pictures, I attempted to snap some of the critters feet (with Dave's help).  Having pictures of the feet really helps one see what they should be looking for when identifying tracks in the mud.

Thought I'd share the feet/paw pictures.

I'll post more information about Mink in the future....
Above: the right front paw of the road-killed mink.  Check out the slight webbing between the toes.  Also important to note is the shape of the inter-digital pad (i.e., pad between the toes).  It's that pad which gives mink tracks that crescent-shaped imprint directly below where the toes register in their tracks.

Above: The rear left paw of the road-killed mink.  Again, note the webbing and crescent-shaped inter-digital pad.  Also, five toes...but you may be able to see why one of those toes doesn't always make an impression.

_______________________________________________________________________

The D.O.R. Gray Fox (Urocyon cinereoargenteus).  The downside of being a wild animal in suburbia, is that you face mortality from a variety of sources that you otherwise wouldn't face in a more natural setting.  A great example of which is mortality due to vehicular traffic (see also Temple et al. 2010).  I'll post more specifics about carnivores in suburban lanscapes at a later date...but for now....I'll tell you about the road-killed Gray Fox we had the opportunity to see this week.

Above: the road-killed Gray Fox that we were told about on 6/23/2011.

This individual was not encountered at our normal study sites (nor on the road as we drove to our study sites).  Dave and I were working in the office one afternoon...data entry...data analysis....etc., when a colleague stopped by.

He told us of a freshly dead fox on the road not far from campus.  He said it had not been there in the morning, but was there now (several hours later).  He said it looked mostly intact.

Dave and I jumped up and hopped in my truck to check it out. 

Within about 30 seconds we found him......laying stiff in the road just about at the middle of a busy suburban intersection.  So busy, in fact, it had a stop light.  On one side of the road was suburbia...densely packed with houses.  On the other side was a large wooded buffer associated with a corporate headquarters of some kind.

We drug the little fella off of the road with garden rake and donned some gloves.  Took some measurements, got a GPS reading, and snapped some photos.  The body was pretty stiff with rigor mortis, but I was able to pry the legs apart enough to see that it was a male.  It was in perfect condition....the skull appeared intact...the pelt in good shape aside from being split along the shoulder and part of the front leg.  Would have made a fantastic museum specimen.  Unfortunately, I don't have a good facility to deal with a dead critter this large.

So we had to leave him there.  Seems like a massive waste, but we submitted our data to the state wildlife commission.

Among the photos we took were some good shots of the paws.  As with the mink, I think seeing the actual paws of an animal can be very helpful in learning to identify tracks in the wild.

The pictures below are all of the front right paw.  Due to rigor mortis, I couldn't get a very good shot of the back paws (and we were trying to do this along a busy roadway...so we were working quickly).

Above: in this picture, the pads of the digits (i.e. toes) are in focus.  You can really see the details of these pads, including the dermal pappillae (i.e. which essentially are the "finger prints" of this individual fox). 


Above: in this picture, the interdigital pad (closer to the heel) is in better focus and you can also see the dewclaw (near the thumb of my glove).  The dewclaws don't usually register in the track the animal makes.


Above: the same paw with a ruler for scale.  The Gray Fox really is a pretty small critter.
__________________________________________________________________________

The Gravid Wormsnake (Carphophis amoenus):  This is a very commonly captured species at our sites, and I've reported capturing them in the past.  However, on Thursday we first noticed definitive evidence that the females at one of our sites are gravid (i.e. carrying eggs).  I had thought previous females looked as if they might have eggs....but the one we caught this Thursday has eggs that are clearly visible in the second picture below.  

It's that time of year for the egg-laying snakes and turtles!

Above: the gravid female and juvenile wormsnakes captured in an upland forest drift fence this week.  They were found in one of the pitfall traps.

Above: the whitish blobs in her belly (visible through her ventral scales) are individual eggs.  It appears she has four eggs ready to be laid.

____________________________________________________________________________

The Southern Two-lined Salamander (Eurycea cirrigera).  We captured this juvenile in a pitfall trap along one of our lowland forest drift fences.  It is the first time we've captured Two-Lined Sallys in the drift fences at this site (although we'd found them flipping rocks in the stream edge nearby).  We hadn't seen any this year at this site.  At our other site, we captured an adult in an upland drift fence back in May.

There's not much to add.....the pictures are just cool.

In addition, it's just another example of the juvenile amphibians we're seeing this week.



_________________________________________________________________________

The metamorphosed Spotted Salamander (Ambystoma maculatum).  You may recall that last week we were still seeing larval Spotted Salamanders (note: as larvae most salamanders are fully aquatic, breathing with gills and spending all of their time in water).  Last month we found many larvae in the ephemeral wetlands on-site, but slowly the numbers we captured began to dwindle, which meant they were metamorphosing (i.e. transforming from aquatic larvae to land-dwelling adults and leaving the water).  But until this week, we hadn't captured any juveniles that had metamorphosed and began living terrestrially (i.e. on land).

Finally, we captured a pair of them in the pitfall trap of a lowland forest drift fence.

Above: a small juvenile Spotted Salamander, just beginning his new life as a land-dwelling organism.

____________________________________________________________________________

The Adult Eastern Ratsnake (Pantherophis alleghaniensis).  You may recall that we captured a juvenile Eastern Ratsnake a few weeks back in a lowland forest drift fence.  In that post, I made mention of how different adult individuals look compared to juveniles.  Well, here's another chance to see what I mean!

This adult female was captured in a funnel trap along a grassland drift fence at the same site that we caught the juvenile.

You can see, she's very black....no real discernible pattern.

A very cool snake!  Back home, these are very rare (listed as "Special Concern" by the Wisconsin Department of Natural Resources).  Here, they are one of the most common large constrictors encountered (I've even caught them in the university's "community garden" just outside my office door).

Funny what a difference geography makes.

Above: although it may be possible to confuse the Eastern Ratsnake with the Black Racer (Coluber constrictor), there are two basic differences that most folks can figure out.  (1) if its warm out, the Racer will be gone almost immediately after you see it....they are FAST....while the Ratsnake is a bit more pokey.  (2) if you can capture the snake (and you will probably get bitten in the process...trust me) look at the underside.  The Racer's belly is basically solid-black with the exception of the area around the chin.  Although it also has a white chin, the Ratsnake often has a "checkerboard" pattern along parts of the belly....not the solid-black scales of the Racer.


Hopefully, we'll have more to report from our surveys next week.  And hopefully we wont have any more camera thefts!
____________________________________________________________________________

Literature Cited:

Fitch, H.S. 1960. Autecology of the copperhead.  University of Kansas Publications of the Museum of Natural History 13:85-288.

Temple, D.L. et al. 2010. Spatial ecology, survival and cause-specific mortality of gray foxes (Urocyon cinereoargenteus) in a longleaf pine ecosystem.  American Midland Naturalist 163:413-422.

Wednesday, March 23, 2011

A Good Day for Herps!

The posts will come more frequently in the spring, I imagine. 

Especially now that the herps are active, as I'll have more to talk about in between camera trap photos!

As a little background, let me tell you about this project.  I have two study sites that I'm comparing mammal and herp communities at.  The camera traps are part of that project, but I've also got a suite of other survey equipment deployed for small mammals and herps.

At each site we are surveying three habitats.  In each habitat we have a transect of 10 cover boards and a drift fence (200 ft of fencing with three types of live trap: funnel traps, box traps and pitfalls). 

So, for those of you keeping track, that's 60 coverboards (hauled out on the back of your's truly last year) and 1,200 ft of fence dug in (again, by your's truly).  The boards create cover, and a microclimate beneath that are attractive to herps and small mammals.  They are passive, so you can go out and flip them whenever.  The drift fences also capture herps and small mammals.  Problem is, they are not passive.  If the traps are engaged, you have to check them every 24 hrs and release the critters captured.

We are also supplementing with sherman traps (only for small mammals).

So, I run the surveys in the summer and off semesters, and in the semesters that I teach Wildlife Ecology, the students run the surveys as part of their lab exercises.

Two weeks ago, the drift fences were opened for the first time (no class this semester...so it's done by me, or any student willing to volunteer).  Because the semester is still in session, time is limited, and we are only opening them for one or two 24 hr perios per week.

In the first week: no captures.
In the second week: a single cricket frog and a white-footed mouse (and that's it for ALL of that survey equipment!).

Clearly, stuff was not ready to start hopping yet.

Today, I had the first good haul of herps to indicate the season is upon us (I hope!).

First, in one of the grassland coverboard transects, got a cute little juvenile racer (Coluber constrictor).

Although the adults are typically a sleek black (with a white chin), hatchling racers are patterned.  This pattern is retained by juveniles (as seen in the pics above) for a time and fades as they grow to adulthood.   Racers are aptly named.  They can move like the dickens and even an experienced herpetologist can loose them in long grass or brushy edges should they take off.  Luckily it was cool this morning when I checked the boards, and this guy wasn't moving very fast....so I was able to snap a few pics!  Although the specific epithet "constrictor" implies....well...something that constricts, racers typically don't.  They often prey on animals they can overpower without constriction....although bigger prey may be held down with a coil or two.  They hunt by smell, but also by sight.  Nussbaum et al. 1983 report that they are able to detect crickets up to 50 METERS away, and can see larger prey at even greater distances!  Their dietary choices are not narrow. 

In fact, Uhler et al. (1939) reported the prey occurence (by volume) in the stomachs of racers surveyed in Virginia as follows:
  • snakes=26%,
  • birds=18%,
  • shrews=12%,
  • caterpillars and moths=10%,
  • frogs=9%,
  • moles and lizards=6%,
  • squirrels=5%
  • other insects/arthropods=5%
Hamilton and Pollack (1956) found the percent occurrence of food types selected by racers in Georgia to be as follows:
  • Lizards=65%
  • Snakes=28%
  • amphibians=9%
  • mammals=3.5%
  • insects=1.7%
In North Carolina, Brown (1979) found that reptiles, mammals and insects made up roughly 80% of selected prey.

Interestingly, a different trend was observed in Illinois by Klimstra (1959):
  • insects = 48%
  • mammals = 43.5%
  • birds = 16.5%
  • THEN reptiles= 12%.
A similar trend was also reported by Fitch (1963) for racers in Kansas:
  • Insects = 77%
  • mammals = 15%
  • snakes = 5%
So, not only do they have broad dietary interests, they also vary greatly by geographic location.

________________________________________________________________

My next coverboard discoveries occurred in the woods, specifically in lowland deciduous woods.  There is a wooded riparian area (stream corridor) nearby, and a number of ephemeral wetlands in the general vicinity.  That means one thing!  GREAT SALAMANDER HABITAT!

The first volunteer was a very young white-spotted slimy salamander (Plethodon cylindraceus).  He was under a board located within 15 ft of an ephemeral pool.  He was so small that I actually almost didn't see him.

I had found many young slimy salamanders at this site last year, but no big adults.  That changed today, however!  I found a big male under a different board in the same transect.

Slimy salamanders are members of the family Plethodontidae, which are generically referred to as the "lungless salamanders".  The name is accurrate, as members of this Family truly have no lungs!  They absorb oxygen through their skin (called cutaneous respiration).  The taxonomy of the "slimy salamander complex", specifically, is amazingly confusing and constantly in flux.  Members of this "complex" are found throughout the southeastern and eastern USA.  According to Beane et al. (2010), all slimy salamanders in our region were once thought to be a single species (P. glutinosus).  These have now been split into 4 species that exist in the state: P. glutinosus, P. cylindraceus, P. chattahoochee and P. chlorobryonis. 

Luckily, in my particular part of the state, I only have to worry about one (P. cylindraceus, the white-spotted slimy salamander).  Whew!

__________________________________________________________

I round out this post with another coverboard encounter: the spotted salamander (Ambystoma maculatum). 

A member of the family Ambystomatidae (the "mole salamanders") these chucky little salamanders are fairly common in this region of the state.  Amazingly, I had not found one until today!  So, I added a new species to the list for one of my sites.  The breeding season for this species is late winter, early spring and has already passed.  I imagine this fella was taking advantage of the nice cover created by the board and will soon move on to his permanent borrow for the summer.

Drift fence captures to be reported in the future!

Literature Cited:

Beane, J.C., J.C. Mitchell, W.M. Palmer, and J.R. Harrison III. 2010. Amphibians and Reptiles of the Carolinas and Virginia (2nd edition).  University of North Carolina Press.

Brown, E.E, 1979.  Some snake food records from the Carolinas. Brimleyana 1:113-124.

Fitch, H.S. 1963. Natural history of the racer Coluber constrictor.  University of Kansas, Publications of the Museum of Natural History 15:351-468.

Hamilton, W.J., Jr., and J.A. Pollack. 1956. The food of some colubrid snakes from Fort Benning, Georgia. Ecology 37:519-536.

Nussbaum, R.A., E.D. Brodie, Jr., and R.M. Storm. 1983. Amphibians and reptiles of the pacific northwest.  University of Idaho Press.

Klimstra, W.D. 1959. Food of the racer, Coluber constrictor, in southern Illinois. Copeia 1959:210-214.

Uhler, F.M., C. Cottam, and T.E. Clarke. 1939. Food of snakes of the George Washington National Forest, Virignia. Transactions of the North American Wildlife Conference 4:605-622.