Sunday, 14 January 2024

Boys or Girls?

Generally speaking, a newborn mammal is equally likely to be male or female. The sex ratio in the resulting population may not always be a perfect 50/50 if one sex has a shorter life expectancy than the other, but it's still going to be pretty close. There is a sound reason for this, and it's called Fisher's Principle, after geneticist and mathematician Ronald Fisher, who promoted it in the 1930s (although he probably wasn't the first to have thought of it).

The argument runs like this. Let's say that a particular species produces more females than males. Then males will have more mating opportunities than females, and will, on average, have more offspring. If a mutation then arises in a given individual that makes her more likely to give birth to sons, she will tend to have more grandchildren, many of whom will carry that mutation. Since they will also have an advantage, the mutation will spread through the population... until males are more common, at which point it's preferable to have more female offspring, and so on. 

Sunday, 7 January 2024

The Rarity of Gophers


What exactly does it mean to say that a species is "rare"? The general idea, of course, is that it must have a lower total population than some species that is "common", and we can certainly argue over where to draw the line between the two. But, even then, rarity can manifest in different ways and that may have an effect on our perception of it.

Take the tiger for example. Today, this is undeniably a rare animal, and it's internationally listed as an endangered species. But go back two hundred years, and tigers were found across southern Asia from the easternmost parts of Turkey to the Russian Far East. They stretched from the deserts of Central Asia to the jungles of Java. But even then, if you'd gone to any of these places, the chances of actually meeting a tiger weren't all that high. Tigers are big predators, and they need a wide area to find enough food to eat. So they may have had a high total population (certainly compared with today) but they weren't exactly abundant in any given locality. Does that count as being "rare"?

Sunday, 17 December 2023

Prehistoric Mammal Discoveries 2023

Potamotherium
It's the last post of the year for 2023, and that means it's time once again to take a brief look at discoveries from the last year in the world of fossil mammals that didn't make it into this blog. Because, while dinosaurs are undoubtedly popular, the study of prehistoric mammals is also a major field, aided by that, being (mostly) relatively recent they tend to be more numerous and better preserved. Of course, everyone's heard of woolly mammoths and sabretooth cats but there's plenty more out there and, if I'm going to zip through them at speed today, I'm also going to try and cover as wide a range as possible. So, let's get going...

Sunday, 10 December 2023

Oligocene (Pt 6): Devil's Corkscrews and the Grasseater That Wasn't

Leptomeryx
The Grande Coupure was, strictly defined, an event unique to Europe, caused by the drying up of the water channels separating it from Asia. However, it was compounded by a dramatic worldwide cooling event, and, if the Coupure itself didn't affect more distant lands, the climate changes certainly did. Due to some particularly well-preserved geological deposits of the right age, as well as the obvious convenience for Western researchers, this is particularly well-studied in North America.

Deposits across the continent show a sudden change in the climate at around the dawn of the Oligocene. By 'sudden' in this context, we mean over the course of hundreds of thousands of years, so it's hardly something you would have noticed had you been there at the time, but it's still rapid as such things go. The exact nature of the changes, and the speed at which they appear to have happened, depend on which part of the continent we're talking about, but nowhere was unaffected.

Sunday, 3 December 2023

The Other One: Red Pandas

Over the course of this year, I have looked at all the species of the raccoon and skunk families, two groups of smallish carnivorous mammals that are mostly confined to the Americas. These two families are themselves related, forming part of a larger group called the "musteloids", traditionally ranked as a "superfamily". The group is named for a third family within it, the mustelids or "weasel family", which contains a much wider - and more widespread - group of species, including otters, badgers, and wolverines. 

The musteloid superfamily, however, also contains one other living species that does not fit into any of the three main families: the red panda (Ailurus fulgens). Six years ago, I took a look at the history of Western knowledge of this animal, and of how it relates to other mammal families. The upshot of that, you may recall, is that there is broad agreement that the red panda is the only living species in its family, distinct from raccoons, skunks, and weasels although quite how was unclear. Since I wrote that, a further study has come out supporting the evolutionary tree I described as "the current best bet", but I'd be remiss if I didn't point out that at least one contradictory study has also been published. It's perhaps fair to say that the four families of musteloids all appeared fairly suddenly at around the same time (likely around the Grande Coupure) and the exact sequence of events is difficult to disentangle.

Saturday, 25 November 2023

The First Whales to Use Sonar?

Xenorophus
Other than their obvious physical adaptations, one of the most familiar features of dolphins and whales is their ability to use ultrasound to echolocate. All dolphins, porpoises, and toothed whales (collectively called odontocetes) can echolocate and, while some of the fine details do vary between, say, sperm whales and some of the smaller species, the basic mechanism is much the same. Ultrasound would not have been useful to the large, ground-dwelling ancestors of whales in the same way that it is for bats, so it must have evolved after they entered the water. But how soon after?

We can put some limits on this. At the younger end, since all odontocetes echolocate, it's unlikely to have evolved any later than their last common ancestor, which is estimated to have lived around 34 million years ago. On the other hand, it's notable that the toothless, baleen, whales do not use ultrasound; in fact, they are specialised in the exact opposite direction to produce sounds well below, not above, the range of human hearing. This suggests that they evolved along different lines, and that the origins of ultrasonic echolocation lie somewhere after the two split. 

Sunday, 19 November 2023

Learning to Hunt at Sea

One of the distinguishing features of mammals is that they invest a lot of time and effort in caring for their young. Of course, birds do this too, as do some other vertebrates, but the provision of milk is one of the key defining traits that's true of all living mammal species. (Probably most extinct ones, too, although it's hard to tell with the very early species). This means that newborn mammals are entirely dependent on their mothers in a way that the young of, say, most reptiles are not. 

But there comes a point where any mammal has to be weaned and make its way in the wider world. Even then, the maternal investment doesn't necessarily end with the mother continuing to raise and train her offspring for what can be an extended period. Brown bears, for example, are weaned at around six months, but they commonly stay with their mothers for at least another year, and often for two or more. We can see similar patterns in other mammals including, perhaps most obviously, primates.