Monday, October 24, 2011

Geese and Canada Geese Habitat and Populations

Geese, ducks, and swans have always been a treasured natural resource in Pennsylvania. These birds are enjoyed by millions of people each year, whether they are birdwatchers, hunters, or just those who appreciate their presence. The fall flights of geese and swans in their characteristic “V”-flock formation are familiar and welcome signs of the changing seasons. However, because of recent dramatic increases in waterfowl populations, these birds have become a nuisance in some places. A lack of predators, decreased opportunities for waterfowl hunting, food handouts, and landscapes consisting of large expanses of turfgrass have provided ideal conditions for these birds.


Although most people find a few ducks or geese acceptable, waterfowl populations can quickly get out of hand. For example, one pair of geese can, in five to seven years, easily become 50 to 100 birds that foul ponds and damage lawns, golf courses, and crops. This fact sheet provides information on controlling damage caused by Canada Canada geese, ducks, and swans.


Canada geese mate for life, with both parents caring for, and aggressively protecting, their young. Canada geese in Pennsylvania consist of both migratory and nonmigratory populations. Migratory populations are the Atlantic Population and the Southern James Bay Population. These two populations nest in Canada and migrate south for the winter. Adults of both populations do not breed until three years of age. Both of these migratory populations have declined in size because of poor survival and low reproduction since 1985.



By contrast, the nonmigratory, or resident, population in Pennsylvania has grown from approximately 2,400 from 1955-60 to more than 150,000 in 1993. Adults in this population can begin breeding at age two and have a higher survival rate than migrating birds. The resident population consists of nonmigratory birds that nest and reside in the Mid-Atlantic states, including Pennsylvania, throughout the year. Because harvest restrictions that protect the migratory populations also have protected the resident population, Pennsylvania has recently established special hunting seasons to target the resident population of geese. These seasons take place when migrant populations are not in the state.

Canada geese may be discouraged from using ponds by installing a 30- to 36-inch-high poultry-wire fence at the water’s edge. This technique, however, is not effective for ducks. Three-foot-high woven-wire fences around gardens and yards also will help keep geese out of these places because adult geese with young will not cross a fence and leave their young behind. Geese also are reluctant to pass under a wire fence, so installing a single-strand fence, or one made of Mylar flashing tape, at a height of about 15 inches may discourage geese from entering an area. A 2-to 3-strand goose-resistant fence can be placed around lawns, gardens, and crop areas. Place the first strand 1 foot above the ground, with each succeeding strand 1.5 feet
above the previous strand. Snow drift fences and electric livestock fences have also proven effective.

Good results also have been reported using 20-pound test, or heavier, monofilament line to make a 2- to 3-strand fence in situations where aesthetics preclude the use of wire fencing. String the first line 6 inches off the ground, with each additional line spaced 6 inches above the preceding line. Suspend thin strips of aluminum foil at 3- to 6-foot intervals along the lines to increase visibility of the barrier for wildlife and people. The best results are obtained when the fence is in place before geese start grazing.

To stop waterfowl from using reservoirs, lakes, ponds, and fish-rearing facilities, overhead grids can be constructed of thin cable visible to both humans and waterfowl. White or brightly colored cables may improve visibility. Because these materials are extremely light, several hundred feet can be supported between two standard, 5-foot, steel fence posts. Grids on 20-foot centers will stop geese, and grids on 10-foot centers will stop most ducks. Where necessary, grid lines should be installed high enough to allow people and equipment to move beneath them. Excessive rubbing will result in line breakage, so grid wires should be tied together
wherever two lines cross. 

Attach lines independently to each post and not in a constant run, to prevent having to rebuild the entire grid if a line breaks. Where total exclusion is needed, use 1- to 1.5-inch mesh polypropylene UV-protected netting. Support the netting with at least 0.19-inch, 7 x 19-strand galvanized coated cable on 20-foot centers. Support cables must be well anchored to carry the weight of the netting and to allow the cable to be stretched tight to eliminate sag. High winds are the greatest hazard to this type of netting installation, so netting should be attached to the support cables to prevent wind-caused abrasion.

Mute Swans Habitat In Waterfowl

Mute swans are not native to North America but were first introduced from Europe in the late 1800s. Consequently, they are an unprotected species in Pennsylvania. They begin breeding at two or three years of
age, and their population has grown to more than 9,500 swans in the Northeast. They mate for life, and both adults care for the young. The adults can be extremely aggressive when protecting their young. Mute swans consume large amounts of aquatic vegetation that other fish and wildlife species depend on for food and shelter. Mute swans usually have an arching neck as they swim.



Waterfowl have two primary habitat requirements. First, they need a permanent body of water on which to land, escape, rest, and roost. Second, they must have a suitable open feeding area that provides a place to land, has good visibility of the surrounding territory, and has abundant tender young grass and other vegetation for feeding. Mallards are primarily filter feeders and will consume almost anything edible. Swans eat aquatic plants, and geese eat a variety of terrestrial grasses.


Mute Swans

All species will come on land to feed, typically twice a day, in the morning and late afternoon. However, they may feed at night if their normal daytime habits are disturbed. Normally waterfowl roost on open water at night.

Saturday, October 22, 2011

Charolais Cattle With Bos Tourus Genetic

Bos taurus


Bos taurus breeds are descendants of the ancient Celtic Shorthorn. Bos taurus breeds show a closer resemblance to the Aurochs, particularly Scotch Highland cattle, than Bos indicus breeds. Bos taurus can be classified into two sub-categories, British breeds and Continental breeds. Continental breeds, also called Exotics, are breeds that originated in Europe. These cattle are known for weight gain and cutability. Continental breeds are generally large in size, lean, muscular, and vary in adaptability to hot climates. The following Continental breeds are commonly found in the United States.




Charolais Cattle

The Charolais breed was developed in France and was introduced into the United States in 1936. This breed ranges from white to light straw in color. Charolais cattle can be horned or polled. This large, heavily muscled breed’s traits include a fast growth rate and feed efficiency.

Complete albinism was reported from two purebred Charolais herds. The first calf brought to us was a 2-week-old purebred bull Charolais calf, and it was presented to us because of blindness. Six such blind calves were seen over a 5 year period in this purebred Kansas Charolais herd. They were sired by the same bull and all 5 dams were half sisters. One dam had an albino calf in successive years. After removal of the bull no more cases of albinism were observed. Bull and all dams involved had normal eye color. A 5-week-old male purebred Charolais calf from a 50 head purebred cow Charolais herd in Missouri was presented to us in lateral recumbency. It had opisthotonus, nystagmus, and appeared to be blind. The owner had not encountered any other animal with pigmentary anomalies previously. The animal was euthanatized and necropsied.



Albinism appears to be a rare defect. In Swiss Brown cattle in Switzerland, the recessive gene was estimated to house a frequency of 0.002 I( NZENWRIED & A-LU V,ERGNE 1970). In a US survey of bovine birth defects involving over 70,000 births, no albinos were encountered, making the frequency of the albino gene, if recessive, to be less than 0.004 E( IPLOLD et al., 1972). R GEENE et al. (1973) concluded that the type of inheritance of albinism in Beef Shorthorns appeared to be recessive. The pattern of occurrence of albinism in these two purebred Charolais herds is suggestive of a recessive mode of inheritance. However, further investigations are warranted to elucidate the exact nature of inheritance of complete albinism among Charolais cattle.

Simbrah and Simbrah Cattle Breeding Breeders

The Simbrah breed  was developed in the United States in the late 1960s. This breed is a composite breed that consists of 5/8 Simmental and 3/8 Brahman. There are no color standards for Simbrah cattle. Simbrahs can be horned or polled. The Simbrah breed has both maternal and survival characteristics in a hot environment and produces a modern, lean, high-quality beef product. Simbrah combines the strengths of the two most populous breeds of cattle in the world Simmental and Brahman. The fertility, milking ability and rapid growth of the Simmental is complemented by the heat tolerance and hardiness of the Brahman. The initial development of the Simbrah cattle breed occurred predominantly in the Gulf Coast region of the U.S. However, the popularity of the Simbrah cattle now extends to many parts of the country.


Breeding Simbrah Cattle

A purebred animal consists of 5/8 Simmental and 3/8 Brahman breeding. The degree of heterosis (hybrid vigor) in the first generation purebred will depend on how Simmental and Brahman are combined (see Table).
Matings of purebred Simmental and 1/4 Simmental x 3/4 Brahman parents result in a greater degree of heterosis in the calf than matings of 3/4 Simmental x 1/4 Brahman and 1/2 Simmental x 1/2 Brahman parents.
Differences among the dams used in the cross will also influence performance. As Brahman breeding of the dam increases, calf birth weight will generally decrease; as level of Simmental breeding of the dam increases, calf birth weight and calf weaning weight will generally increase.

Breeder Goals
Simbrah breeders should strive to produce a breed of beef cattle that is acceptable worldwide truly, “The World’s Breed.”
• Adaptable to many environments and management systems.
• Able to maximize production income while minimizing production costs.
• Bulls able to settle a high percentage of females in a short breeding season.
• Females able to calve without assistance by 24 months of age and every 12 months thereafter.
• Feeder calves able to adapt quickly to the feedlot environment, gaining rapidly and efficiently, and produce a high percentage of lean meat of acceptable quality.

Trait Selection
Sound Feet and Legs
Legs should be well-placed and relatively straight with a moderate degree of angulation to the hock. Avoid animals with extremely straight rear legs (post-legged), with extreme hock angle (sickle hocked) or with weak pasterns. Feet should be straight, allowing the animal’s weight to be carried evenly. The hoof should be almost round, relatively large in proportion to body size and have two claws of equal size and shape. Avoid animals whose feet “toe in” or “toe out,” whose hooves are crooked or small in relation to body size.

Reproductive Potential
Both males and females should show potential for high reproductive performance. Simbrah bulls should appear to be strong, virile and athletic. The testicles should be well developed, of equal size and hang straight in the scrotum. The sheath should not extend below an imaginary line drawn from the knee to the hocks. The prepucial orfice should be small and open at a 45 degree angle to the body.

Avoid bulls lacking secondary sexual features, those with abnormal or inadequate testicular development, a
pendulous or funnel shaped sheath, a large prepucial opening, a prolapsing or lazy prepuce. Simbrah females should show evidence of femininity. They should breed at an early age, calve at regular yearly intervals and show evidence of good mothering ability. Their udder should be well attached both front and rear, have a level floor and four well-placed medium size teats. Females should produce a generous volume of milk adequate to sustain the growth of their calf until weaning. Avoid females that show evidence of masculinity and are late breeders. Cull those that have pendulous udders or large misshapened teats as well as those that fail to mother their calf and provide adequate milk.


Frame Size and Type
Selection for reproductive efficiency will ultimately determine the frame size and type best suited to each production environment. Additional constraints may come from different management and marketing systems. In general, Simbrah should be of medium to large frame, have a strong, straight topline showing muscularity uniformly from behind the shoulders through the loin area, and thickness in the hindquarters and lower stifle area. Breeders should avoid extremely large frame sizes associated with delayed puberty, larger mature size and increased feed requirements of breeding females. Extremely small as well as extremely large frame size can also mean unacceptable market weights of commercial feeder and slaughter cattle. Breeders should also avoid extremes in muscling.


Very heavy muscling is associated with calving problems and infertility. Light muscling simply means less meat. Simbrah animals should show sufficient body capacity and fleshing ability to sustain satisfactory reproductive performance with limited amounts of feed. Avoid animals that are swayback, pinched behind the shoulders, have a small heart girth or lack spring of rib. Simbrah should also have a moderate amount of dewlap while still maintaining a relatively clean naval flap and sheath area. The skin contains important sweat glands that help the animal cope with hot weather.

Temperament
A good disposition is also important. Cattle should be relatively quiet and easy to handle.

Performance in Production Traits
Final selection should be based on actual performance in production traits. ASA’s herd performance and national sire evaluation programs can help breeders to evaluate both individual and expected progeny performance in traits such as calving ease, birth weight, weaning weight, yearling weight, maternal calving ease, maternal weaning weight and maternal milking ability. Check with ASA for more information. To be successful in today’s industry, Simbrah breeders must produce functional cattle with measured performance in traits important to commercial cattlemen.

Santa Gertrudis and Santa Gertrudis Cattle Breeds

The Santa Gertrudis breed (see Figure 4) was developed on the King Ranch in Kingsville, Texas. This composite breed consists of 5/8 Shorthorn and 3/8 Brahman. Santa Gertrudis cattle are dark red in color and can be horned or polled. Santa Gertrudis cattle are a desirable breed because of their overall hardiness. This breed adapts to adverse conditions and is productive in hot climates. Santa Gertrudis cattle also possess many desirable maternal characteristics.

There are approximately 250 breeds* of cattle recognized throughout the world, and several hundred breeds that are not currently recognized. More than eighty recognized breeds of beef cattle are available to producers in the United States. However, an exact count is difficult to obtain because other breeds continue to be imported and crossing existing breeds continuously creates new breeds. A breed is a group of animals of common descent and possessing distinctive characteristics that distinguish them from other groups within the same species. These groups are referred to as purebreds. The term purebred refers to the purity of ancestry and implies that there is genetic uniformity of all characteristics.

Santa Gertrudis
Santa Gertrudis Cattle
 Knowledge of breed characteristics is important to beef producers in purebred and crossbreeding programs. Crossbreeding is considered to be the most efficient means of commercial production, but highly productive purebreds are the backbone of successful commercial crossbreeding programs. Crossbreeding programs use breeds that possess complimentary characteristics to produce desirable offspring. The major characteristics that are important in beef production include mature body size, milk production, age at puberty, environmental adaptability, rate and efficiency of gain, muscle expression, cutability, and marbling.

Santa Gertrudis Bulls
The major characteristics differ in relative economic importance, especially when considering different
phases of the production system. Reproduction traits such as milk production and age at puberty are the
primary concern of a cow-calf producer, while efficiency of gain, rate of gain and carcass traits are most
important to stocker and feeder operations. Two characteristics that have a marked effect on most production
traits are mature body size and milk production. Other indicators that may be important are muscle
expression and age at puberty.

Brangus and Brangus Cattle Genetics Breeders

The Brangus breed was developed in the United States. Registered Brangus, a composite breed, consists of 3/8 Brahman and 5/8 Angus. Brangus cattle are black in color and are polled. The Brangus breed has combined many of the most desirable traits of the Brahman and Angus breeds. Some of these traits include hardiness, heat tolerance, muscularity, early maturity, and production of quality beef.

Brangus cattle Breedplan is a modern genetic evaluation system for livestock breeders. It is applied by ABRI to the cattle industries in many countries but it can be customised for other species. BREEDPLAN offers you the potential to accelerate genetic progress in your herd, tighten up your breeding operations, improve productivity and increase the prices of your livestock. It can put a lot more cash in your pocket. Breedplan uses the world's most advanced genetic evaluation system (ie. an "animal model" which incorporates multi-trait analysis procedures) to produce Estimated Breeding Values (EBVs) of recorded cattle for a range of traits (eg. fertility, weight, carcase).

Brangus Cattle


Brangus Breedplan is integrated with the pedigree systems of many breeds. With the increasing use of artificial insemination, most herds within a breed have genetic links with other herds. BREEDPLAN technology can be used at a number of levels eg. within-herd analyses for individual breeders, across-herd analyses for members of a breed association or breeding group and international genetic evaluations where breed associations from a number of countries pool their data for analysis. Brangus Breedplan is the national beef recording scheme in Australia, New Zealand, Namibia, Thailand and the Philippines. Its use is increasing in the United States, Canada, United Kingdom, Hungary, South America, South Africa and the United Kingdom.

Red Brangus
At ABS, we recognize the value of the Brangus breed in challenging environments. In the hot, humid areas of the Southeastern tier of the U.S. Brangus cattle are able to maintain/improve performance and fertility. In more arid climates in the Southwest and Western states, Brangus cattle have the ability to travel, forage and survive on the toughest ranges. Not limited to these areas, Brangus cattle are found from border to border and coast to coast. In areas where breeders have utilized English breeds for several generations, there is often a need to interject heterosis through planned crossbreeding.

Brangus initiative is to supply environmentally adapted genetics for both registered and commercial cattlemen across the U.S. and the world. Over the past several years, we have built a Brangus lineup that combines some of the breed’s most proven cow families with performance oriented and calving ease genetics. Brangus cattle are 5/8 Angus and 3/8 Brahman. Angus genetics provide maternal and carcass value while Brahman
genetics add environmental adaptability and insect resistance. Over the past ten years, seedstock Brangus breeders have methodically and selectively added muscle and intramuscular fat while moderating mature size and cleaning sheath designs. Today’s progressive Brangus genetics have the ability to exceed the needs of producers in a wide array of environments while meeting feedlot and packer challenges.

Brangus Bull
Brangus cattle can do this without losing maternal or carcass value. At the same time, Brangus genetics can be combined in an Exotic rotational system to provide this same maternal advantage. Longevity, “do ability” and foraging ability all come as additive advantages in each of these scenarios. As we began to build our Brangus lineup, we established criteria that most cattlemen can relate to. Beginning at the ground and working upward, all of the sires have been evaluated for correct feet, joints and skeletal design. We understand the environments the Brangus progeny will be expected to survive in, so soundness is of the utmost priority. Equally as important, are fertility, fleshing ability and docility. Once we have identified these traits in a bull, it has been important to recognize the value of his dam and sire’s progeny performance, correct maturity patterns and desirable sheaths.

Brahman Cow Brahman Cattle Brahman Bull Breeders

Bos indicus

Brahman Cow, Brahman Cattle, Brahman Bull. Bos indicus (also referred to as Zebu-type) are humped cattle originating in South Central Asia. Bos indicus are adapted to tropical and sub-tropical environments, which include the stresses of heat, humidity, parasites, and poorly digestible forages. Environmental adaptability and hybrid vigor of cattle with a percentage of Zebu-type breeding are particularly significant in the southern part of the United States. The general vigor, especially early in life and reproductive efficiency of purebred Bos indicus may be poor, but this can be remedied through crossbreeding.

Hybrid Bos indicus-Bos taurus cattle are generally vigorous and fertile. Formal research and commercial producer experience reveals that the most practical and productive commercial application is with crossbred cows that have some Bos indicus genetics. The birth weight of purebred Bos indicus calves are unusually low. This seems to be primarily a maternal characteristic. When Bos indicus bulls are used on other types of females, the birth weights are higher. Bos indicus cattle are later maturing than Bos taurus, but their longevity is greater than Bos taurus.

Some examples of Bos indicus cattle are the Nelore, Gyr, Guzerat, Brahman, Brangus, and Beefmaster breeds. The Brahman, Brangus, Beefmaster, and other Bos indicus breeds developed in the United States
are often referred to as American breeds. Several of these breeds are composite breeds, which means that they were developed by crossing two or more breeds, but these breeds are still classified as Bos indicus. The following are Bos indicus breeds that are commonly found in the United States.

The Brahman Cow breed originated in the United States from humped cattle that were imported from India and Brazil. Brahman cattle are a horned breed that vary in color, but are predominantly gray and red. Brahman cattle are humped, have large drooping ears, and loose skin in the throat and dewlap. These cattle have a very high tolerance to heat and have a natural resistance to many parasites. They are considered a maternal breed. If the Brahman bull looks like it was put together from the parts of several different animals, that’s because it was, in a way. The ancestors of Brahman cattle were several different types of hump-backed cattle from India. Cattle breeders in the southern United States developed Brahman cattle between 1854 and 1926.


The Brahman has a humped back, long, drooping ears and loose skin. Like the camel, the Brahman stores food and water in the odd-looking hump on its back. The hump is a deposit of fat. Farmers and ranchers in the southeastern US and the Gulf States like to raise Brahman cattle because they can stand the heat, and insects don’t bother them much. Some cattle breeders have tried crossing Brahman cattle with other breeds of American beef cattle to develop other breeds that can stand harsh conditions. Brahman cattle are also called “Brahma” or “zebu.” Many Brahmans are light to medium gray, but there are some that are red and some that are almost black. Brahman bulls weigh between 1,600 and 2,200 pounds. Brahman cows weigh between 1,000 and 1,400 pounds.



Brahman cattle a breed of cattle developed in the southern United States from stock originating in India having a hump between the shoulders and a large fold of loose skin hanging from the neck breed (n) A group of animals descending from a common ancestry and possessing certain common characteristics which distinguish it from any other group. (v) To cause to reproduce, especially by controlled mating and selection. To develop new or improved strains in animals or plants. Zebu a domesticated bovine mammal of Asia and Africa, having a prominent hump on the back and a large fold of loose skin hanging for the neck

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