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Agricultural News


Mark Johnson Talks Terminology of Modern Beef Cattle Genetic Prediction

Tue, 08 Mar 2022 08:32:53 CST

Mark Johnson Talks Terminology of Modern Beef Cattle Genetic Prediction Oklahoma State University Extension Beef Cattle Breeding Specialists, offers herd health advice as part of the weekly series known as the "Cow Calf Corner" published electronically by Dr. Peel, Mark Johnson, Parker Henley, Dr. Rosslyn Biggs and Paul Beck. Today Mark Johnson is talking about Modern Cattle Genetic Predictions.

Over the past 30 years we have seen the number of Expected Progeny Differences (EPDs) reported by beef breeds expand several times over. Over the past 20 years, $Values have been introduced in attempt to simplify selection. The past 10 - 15 years has seen the introduction of Genomically enhanced EPDs. This article defines and gives examples of each.

An EPD is the prediction of how future progeny of an animal (bull or cow) are expected to perform relative to the progeny of other potential parents in a beef breed registry's database. EPDs are reported in units of measure for that trait, plus or minus. For example, weaning weight is reported in pounds. A Heifer Pregnancy EPD (HP) is reported in percentage units. If comparing the following two bulls:

                        WW EPD        HP EPD
Bull A                  50                    15
Bull B                  61                    10

Comparing the two bulls as parents, WW EPDs predict Bull B's offspring to weigh 11 pounds heavier at weaning. HP EPDs predict Bull A's daughters are 5% more likely to become pregnant as first calf heifers during their first breeding season.

$Value Indices or $Values serve as an economic selection index. A $Value assigns an economic weighting to several traits pertaining to a specific breeding objective or marketing endpoint.   Accordingly, selection based on $Values will change several traits at once. Relative to a specific marketing goal, all the EPDs for traits that have economic impact on the value of offspring at that marketing endpoint are weighted and the genetic value is expressed as a single numerical value in dollars per head of offspring. For example, in Angus cattle, a Beef Value ($B) is a terminal index expressed in dollars per carcass. This index assumes commercial operations will retain ownership of all progeny through finishing and market fed cattle on a carcass value basis. As such, EPDs for the traits of yearling weight, dry-matter intake, marbling, carcass weight, ribeye area and external fat thickness receive an economic weighting. If comparing two bulls:

                        $B
Bull A             225
Bull B             201

assuming the specific marketing endpoint for all progeny sired defined above, Bull A's offspring should result in $24 more per carcass value.

Accuracy (ACC) indicates the reliability of the EPD and is based on the amount of data that has been taken into account in predicting the genetic value. EPDs based on the records of more ancestors, relatives, progeny and DNA will have higher accuracy values. ACC values range from 0 to 1 with values closer to 1 indicating more reliability (based on more data taken into account).

Genomically Enhanced EPDs (GE-EPDs) have taken DNA test results into account to enhance the ACC of EPDs. GE-EPDs are generally higher in ACC because DNA information is in addition to the pedigree, individual and progeny data. While EPDs are our best estimate of the breeding value of an animal in a breed registry for a trait regardless of ACC, GE-EPDs increase the accuracy of selection of young animals that have not yet sired or produced offspring.

More information and definitions of all genetic values reported by respective Breed Associations can be found in that breed's Sire Summary or on their website.


   


 

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