Showing posts with label hawks. Show all posts
Showing posts with label hawks. Show all posts

Tuesday, June 18, 2013

ACCIPITERS IN A MUSEUM


Sharp-shinned Hawk (Accipiter striatus), Cooper’s Hawk (A. cooperii) and Northern Goshawk (A. gentilis) are three hawks of different sizes that are basically quite similar to one another. They are at home in wooded country, where they nest and usually forage. However, during migration, all three can be seen in open country, and all three can be seen at any time flying overhead, above the forest canopy.

All three eat primarily birds, and all three have relatively short, rounded wings and relatively long tails, useful aerodynamically as they chase their prey through the vegetation. All fly with a rapid flapping flight, interspersed with short glides.

The two smaller species, Sharp-shinned and Cooper’s, have become relatively common in urban/suburban settings, where they find abundant bird life, especially where people concentrate the birds by feeding them. So the hawks that appear in people’s yards are often one of these two species. The larger Northern Goshawk tends to stay in large tracts of conifer forests in wilderness areas.

People have trouble distinguishing the species, especially the two smaller ones, and there have been volumes written about the identification of accipiter hawks in North America. These Slater Museum specimens are put forward to furnish would-be identifiers a better idea of the relative sizes of the sexes and species. The study skins were chosen to be representative.


The first photo shows immatures of both species, the smaller males on the left and females on the right for each species. The size differences are quite apparent, and a female Cooper’s is very much larger than a male Sharp-shinned, but there is a steady gradient from one sex and then one species to the next. You can see that a female Sharp-shinned is as close in size to a male Cooper’s as it is to a male Sharp-shinned.

Immatures of the two species differ on average in the markings on their underparts, with Cooper’s tending to have finer, more distinct streaks and Sharp-shinned broader, blurrier streaks, often with some barring on the sides. Nevertheless, you can see that there is much variation. The best mark, if there is any doubt about the size, is the tail, more graduated in Cooper’s (outermost feathers substantially shorter than the central ones).

The second photo shows the same species as adults, in this case with only one female Cooper’s. Note first the difference in the tail shape. There is really no difference in the ventral color pattern. The final photo shows the upper sides of the same birds. Note the difference in color in the sexes, the males with distinctly bluer upperparts, as well as the better-defined dark cap of the Cooper’s. The male Cooper’s on the left is growing in a new central rectrix.

Dennis Paulson

Wednesday, November 30, 2011

RAPTORS IN THE CITY

One of the surprises in studies of urban wildlife in recent years is the invasion of our cities and suburbs by predatory birds such as hawks and owls. Perhaps "invasion" is too active a word, and a better word is "acceptance." More and more raptors are apparently becoming comfortable with living in the cities of the Pacific Northwest and, in fact, all across North America.

Bird feeders have become a dependable part of the urban/suburban environment, and many small birds are attracted to them. The juncos and finches and sparrows that abound at feeders attract Sharp-shinned Hawks in winter, but the hawks leave for the mountains in spring. However, their larger relatives Cooper's Hawks are year-round residents, feeding on pigeons, jays, and flickers and nesting in wooded areas that give them a sense of security. The males are conspicuous in spring, with display flights and vocalizations, so more and more of them are being detected living among us.

Merlins too are in the process of becoming city dwellers. These small falcons nest in forests near open country, where they usually capture their prey (small birds). Wintering Merlins probably moved into cities to take advantage of local concentrations of small birds, and eventually pairs remained throughout the year and nested because of that prey abundance. Their nesting efforts have been successful, and the population of urban-nesting Merlins has slowly risen.

Barred Owls have moved into the Pacific Northwest from the north, and they too appear to be comfortable in wooded parts of our cities. Preferred prey include the gray squirrels and rats that have been introduced into the region, and our bird feeders attract and concentrate these mammals as well. There are now pairs of Barred Owls, Cooper's Hawks, and Merlins nesting in wooded areas near my house in Seattle that weren't there 10 years ago.

Red-tailed Hawks do not live around dense housing developments, but large parks and open spaces furnish adequate hunting grounds for rats and squirrels, and if any trees in their territory are large enough to support their nests, they may nest in our cities. Many more of them appear in winter to hunt in open areas around parks and airports.

The Great Horned Owl is a top predator surprisingly willing to live in cities, mostly in relatively large parks. It is large enough and fierce enough to handle mid-sized mammals such as raccoons, opossums, and domestic cats that thrive in cities. Crows and pigeons furnish abundant prey populations as well. Nest sites (usually old Red-tailed Hawk nests) may be limiting, however.

Even more surprisingly, after a long period of decline during the DDT era, Bald Eagle populations have rebounded in the Northwest, and they not only visit but even nest in the cities, often in large parks near water where prey species such as waterfowl and fish are available. They need large trees for their huge stick nests.

Whenever a shift like this occurs, it is worth trying to distinguish between behavioral adaptation and genetic adaptation. Have these birds "learned" that cities are OK? Or are there genes for city living that have become favored? Are there genes for increased tameness, recognition of bird feeders as sources of bird concentrations, resistance to being mobbed by crows? Actually, cities aren't bad places to live for mobile predators such as these, as there may be local sources of abundant food and some of their own potential predators may be absent. Also, the first individuals to accept life in the cities have no competition from others of their species!

Dennis Paulson

Tuesday, March 22, 2011

THE BIRDS THINK IT’S SPRING

This is the time of year when our resident birds begin to sing. Already I have heard Anna’s Hummingbird, Bewick’s Wren, American Robin, Varied Thrush, European Starling, House Finch, Song Sparrow, and Dark-eyed Junco singing around my house. On the other hand, the vast majority of migrant species have not arrived yet, and those residents that are singing won’t be breeding until some time in April.

Why don’t all birds breed at the same time? Well, an easy explanation for raptors is that their incubation periods are long, so it behooves them to breed before many other species, so they have eggs hatching at a time when food resources are high. As it turns out, the eggs of the early breeders hatch at a time when many local mammals are weaning young.

Some species, for example raptors such as Barn and Great Horned Owls and Red-tailed Hawks, have already begun their breeding cycles. A Northwest pair of Red-tailed Hawks could have a complete clutch of three eggs laid by March 20. The first egg would hatch in mid April, and young would be ready to leave the nest by the end of May.

The bird-eating accipiter hawks (Cooper’s, Sharp-shinned) begin to breed later than the mammal eaters, because the supply of naïve young birds doesn’t really kick in until May or June. A Cooper’s Hawk pair that lays the first egg of a clutch of four on April 15 would expect the first young to hatch on May 20 and the first young to fledge about a month after that. By the end of May there are great numbers of young, naïve birds in the surrounding woodland that can provide prey for a family of Cooper’s Hawks.

A Barn Owl that laid her first of six to eight eggs on March 10 would see the first young hatch on April 10 and fledge in about two months. By hatching time, great numbers of young voles would have emerged from their grass nests to forage in their myriad runways, and the parents can find plenty of protein for their growing young. Furthermore, a just-fledged owlet should have no trouble detecting and catching those furry snacks.

Mammal-eating owls such as Barn and Great Horned breed early, but insect-eaters such as Western Screech and Burrowing Owls breed later for two reasons. First, incubation and fledging periods are shorter for smaller birds, so there is no reason to start so early. More importantly, their prey does not become active until ambient temperatures allow activity. So these owls are laying their eggs in April and even May.

A Burrowing Owl clutch of eight eggs might be completed on April 15, when incubation would ensue. The eggs would hatch around May 15, and the young would be ready to leave the burrow by the end of June, when insects and lizards abounded in its nesting territory.

So the eggs of the mammal eaters hatch about a month before the eggs of the bird and insect eaters, just as predicted. Not only the wonderful adaptations of living organisms, but also their exquisitely fine tuning, never fail to impress me.

Dennis Paulson
Nature Blog Network