Showing posts with label lizards. Show all posts
Showing posts with label lizards. Show all posts

Boy or Girl?: A Climate-Fated Adventure In Lizards

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Niveoscincus ocellatus (Photo credit)

Ever caught yourself wondering what it might be like if you could know the sex of your future children? Several methods allow for this to be determined with modest accuracy in the late stages of a human pregnancy, but what about early pregnancy? Before pregnancy? In other animals?

Sometimes the answers to these questions can be predicted based on the context in which they are asked. For example, I came across this article this article a few months ago, and would like to share its findings (full paper here; additional source). Essentially, the researchers found that climate, combined with genetics, was a main determinant of what sex-determining system emerged in a species of lizard.

But isn't sex in vertebrates determined by chromosomes? Not always. For instance, in many (not all) reptiles, sex is influenced by environmental factors, often temperature (i.e., temperature-dependent sex determination, or TSD). But how would a knowledge of TSD help you predict the sex your offspring? Well consider the example offered by our study in question.

In these experiments, an international cohort of herpetologists collected and observed female Spotted Skinks, Niveoscincus ocellatus from two types of habitats in Tasmania: highland and lowland. The habitats differ in altitude and therefore atmospheric oxygen, UV irradiation, moisture, and temperature, among others. Female N. ocellatus from the lowland habitat, when raised in a lab setting, varied in the ratios of male/female lizards based on the amount of sunlight they were exposed to (4 hr or 10 hr; sunlight functioning as a natural variable in temperature, UV irradiation, and light). Surprisingly, although the same species, female N. ocellatus from the highland habitat did not demonstrate this discrepency between sunlight exposure times.

What does this mean? The authors of this paper predict that in N. ocellatus, the lowland-dwelling lizards are more likely to give birth to female lizards than male lizards when temperature is higher. Lowland female lizards born earlier (as a result of warm temperatures earlier in the year) have a reproductive advantage over lowland female lizards born earlier in the year. Neither highland lizards or male lowland lizards experience a similar boost from being born earlier (resulting in more females in lowland species in warmer years). For the highland lizards, the overall temperature is colder and there is not a significant reproductive advantage to being born earlier in the year. Additionally, the paper revealed a possible mechanism for species divergence (i.e., cladogenesis) - that of environmentally-sensitive evolution of sex-determination systems.

Remember our question about predicting the sex of future offspring?  The authors also suggest that if the warming trend continues in the species' habitat, more females will be expected. Hypothetically, lowland N. ocellatus mothers can plan on more female offspring in their future (assuming it remains an evolutionary stable strategy for the species). Greeting card companies for newborns take note!

It a Gril! (via Cake Wrecks)

Article - Huge Monitor Lizard Species New to Science

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What a find!

Ethnobiologists in the Philippines recently discovered a whopper of a lizard. Now introducing the Northern Sierra Madre Forest Monitor Lizard (Varanus bitatawa)! This large (~10 kg) lizard is apparently one of only three known fruit-eating species in the world.

To learn more, check out this article from ScienceDaily.

According to this article, the fruit-eating lizard lives in the trees on the northern Philippines island of Luzon. The species was probably so difficult to find because the lizard has actually been hunted by humans (their main predator) for so long that the behavior of the species has become highly secretive and skittish.

Nowadays, discovering large vertebrate animal species is a fairly rare event (when one omits genetic testing, I suppose). That the lizard is fruit eating and quite brightly colored makes the find even more remarkable.

That's what you get for being observant :)


EDIT: Fixed broken link. Sorry for the confusion.

Article - All-Female Lizard Species Crosses Its Own Chromosomes

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Today's article is an interesting one, even if it might require a bit of background in genetics.

From grade school, you probably know that in sexually-reproducing species (includes most animals), a combination of male and female DNA (in the form of compressed chromosomes) crosses and creates new combinations of genetic information. This process is very complex from an evolutionary standpoint, but has survived because of the genetic resistance to random change it affords.

Now read this interesting article published via Scientific American.

When it comes to the sexual behavior of lizards, things get weird, but this article describes an interesting scenario where female checkered whiptail lizards (Aspidoscelis tesselata) are capable of carrying two sets of chromosomes and crossing them over to create a new combination of genetic information - without a male individual! This is new research to the field of reproduction without sex (i.e., parthenogenesis). This research subtly suggests that in well-adapted species, parthenogenesis could be carried out for far longer than previously hypothesized.

Why would a species even adopt parthenogenesis as a strategy of life? First off, remember that evolution is blind and without a cause. Then postulate that in environments where finding mates is especially taxing on a species, individuals that are able to create their own offspring would have a significant advantage in passing along their genes. Often, it is the case that parthenogenesis involves female individuals asexually creating clones of herself and occasionally asexually producing male individuals to add genetic diversity to that population via sexual reproduction. Here is a visual representation of this cycle:


The break from this "normal" parthenogenesis is that now female checkered whiptails have been shown capable of crossing their own chromosomes - seemingly eliminating the need for males in a population. Another interesting note is that in some species exhibiting parthenogenesis, courting behaviors are still observed, even when no males are present. I will be researching this oddity at a later date, but I am gathering that these behaviors increase fecundity (reproductive success) by increasing circulating crucial sex-related hormones released during stimulations associated with courtship (e.g., mounting).

Article - Fire Ant Decapitating Flies

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Long time no see. It's busy season here at SU, but I have lots to share.

The topic of the day is like something out of a science-fiction story. Imagine an insect that lays its eggs inside an organism so that its larvae eats its hosts brain from the inside. Sound far-fetched?

Read this article from EcoTone.

Pretty insane, huh? These insects, phorid flies, apparently specifically target imported red fire ants for laying their eggs. They stalk fire ant mounds and oviposit one egg in an ant's thorax where the egg will hatch. The larva goes on to eat the ant-hosts brain causing the ant to wander aimlessly for hours until the larva causes the ant's head to fall off.

Creeeeeeepy.

Fire ants, as you may know, are not native to the USA, and are quite the stubborn pests. In fact, many scientists believe that their dominance over native harvester ants is partly responsible for the decline of the Texas horned lizard.


Who wants to see this cute face go? Certainly not me - although I believe that there's more to that story (for another post).

A similar article I recently read in the Texas Parks & Wildlife Magazine described how the use of phorid flies as a biological control for fire ants is being taken to new heights.
Researchers have been experimenting with phorid flies since 1997, and in April 2009, AgriLife researchers released a species that was raised by a team at the University of Texas at Austin. Previously released species would attack only disturbed mounds, but the new species also targets undisturbed mounds and foraging ants. Other than a minimal amount of nectar consumption by adults, the phorid flies eat only fire ants, and each species of fly exclusively eats a certain species of ant.
That's incredible! These science-heavy phorid flies will now, according to this article, attack fire ants less judiciously and could push their invasive status down to a reasonable level.

Edit: I had uploaded a picture of a Desert Horned Lizard, not a Texas Horned Lizard. Whoops!

NOVA Series - Lizard Kings

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Perusing some other blogs, I discovered a fascinating NOVA series on monitor lizards titled "Lizard Kings."


NOVA is well known for their awe-inspiring filming, and this program certainly does not come up short.

I'm posting this because it's free to watch online, visit their website and click "Watch online." The whole program runs at 52 minutes.


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