1 / 45

USDA Dairy Goat Genetic Evaluation Program

USDA Dairy Goat Genetic Evaluation Program. USDA Dairy Goat Evaluations. Evaluations for milk, fat, protein, and type Yield evaluations in July Type evaluations in December Evaluations provided to ADGA, DRPC, and publicly via the Internet. Data Flow. Milk Data collected monthly .

Faraday
Download Presentation

USDA Dairy Goat Genetic Evaluation Program

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. USDA Dairy Goat Genetic Evaluation Program

  2. USDA Dairy Goat Evaluations • Evaluations for milk, fat, protein, and type • Yield evaluations in July Type evaluations in December • Evaluations provided to ADGA, DRPC, and publicly via the Internet

  3. Data Flow Milk Data collected monthly COMPONENT TEST LAB FARM DHIA DRPC ADGA INTERNET AIPL

  4. Does Contributing Data from Test Day Nearest June 30th, 2003 By Processing Center

  5. Lactation 1 Lactation 2 Lactation 3 Alpine Milk ProductionLactation Curve

  6. Lactation 1 Lactation 2 Lactation 3 Alpine Fat PercentageLactation Curve

  7. Lactation 1 Lactation 2 Lactation 3 Alpine Protein PercentageLactation Curve

  8. Alpine and Nubian Milk Production Second Lactation Alpine Nubian

  9. Nubian Fat and Protein PercentageSecond Lactation Fat Protein

  10. Genetic Improvement Program Phenotype = Genotype + Environment • Genetic improvement programs only change genotype • Heritability is the portion of total variation due to genetics • Rate of genetic improvement determined by • generation interval • selection intensity • heritability

  11. Factors Affecting Value of Data • Completeness of ID and parentage reporting • Years herd on test • Size of herd • Frequency of testing and component determination

  12. Evaluation Calculation • Goal • predict productivity of progeny • Method • separate genetic component from other factors influencing evaluated traits • All relationships are considered • bucks receive evaluations from the records on their female relatives

  13. Yield Evaluation Model MODEL: y = hys + hs + pe + a + e y = yield of milk, fat, or protein during a lactation hys = herd-year-season - accounts for environmental effects common to does kidding in the same herd in the same season hs = herd-sire - effect common to daughters of a buck in the same herd pe = permanent environment - effect common to all a doe's lactations that is not genetic a = animal genetic effect (breeding value) e = unexplained residual

  14. MFP$ = (0.010  PTAM) + (1.15  PTAF) + (2.55  PTAP) Index of Yield Evaluations Milk-Fat-Protein Dollars (MFP$) combines evaluations into a single number

  15. Breeding Value Trend for Milk

  16. Breeding Value Trend for Fat

  17. Breeding Value Trend for Protein

  18. Type Traits Measure of similarity to ideal Final Score (overall assessment) scored  50-99 Linear traits (13 defined traits) scored 1-50

  19. Linear Traits Stature - Height at withers Strength - Width and depth of chest, width of muzzle Dairyness - Sharpness and flatness of bone, etc. Teat diameter - Measured at base Rear Legs - Angle of the hock, side view

  20. Linear Traits Rump Angle - Angle from hips to pins Rump Width - Width of pelvis Fore Udder Attachment - Strength of attachment Rear Udder Height - Distance from vulva to top of udder

  21. Linear Traits Rear Udder Arch - Width and shape of rear udder attachment Udder Depth - Measured relative to hocks Medial Suspensory Ligament - Measure of udder cleft Teat Placement - Distance between teats

  22. Type Evaluation Model MODEL: y = h + a + p + e y = adjusted type record h = herd appraisal date a = animal genetic effect (breeding value) p = permanent environment - effect common to all a doe's lactations that is not genetic e = unexplained residual Multi-trait evaluation allows scores from one trait to affect the evaluation of another trait through the genetic correlations among the traits.

  23. Recent Type Appraisal Data

  24. Type Trait Genetic Correlations

  25. Breeding Value Trend for Type

  26. Accuracy of Evaluations • Number of does kidding in same hys more records  better estimate of hys effect • Number of bucks with daughters having records in same hys more direct comparisons  better ranking of bucks • Number of lactation records • Number of daughters • Completeness of pedigree data

  27. Selection is a Continuous Decision Making Process Which does to breed Which bucks to use Which specific matings Avoiding inbreeding Correction of faults Which kids to raise Which kids to breed Which does to milk

  28. Selection is a Continuous Decision Making Process The greatest impact on progress is from selection of bucks

  29. Program for Genetic Improvement Dairy cattle program based on: • Artificial insemination (AI) • Allows for many progeny from superior males • Allows semen to be used in geographically diverse locations • Progeny testing (PT) • Use young males to get a representative group of daughters • Wait until those daughters are milking • Based on the evaluations, return the best males to heavy use

  30. Dairy Cattle Improvement Program • About 1 in 10 PT bulls become active • Bulls remain active only a few years • Young bulls waiting for daughter records are not active • Intensive selection program

  31. Steps to Increase Rate of Improvement in Goats • Employ AI to use better bucks in more herds • Focus on larger herds to improve accuracy • Identify young bucks for PT

  32. Alternative to Waiting for PT • Use young bucks for most breedings • Replace bucks quickly • Bank semen of young bucks • Use frozen semen from superior proven bucks as sires of next generation of young bucks

  33. AIPL Web Services http://aipl.arsusda.gov/query/public/tdb.shtml#GoatsTBL • Queries provide display of: • pedigree information • yield records • herd test characteristics • genetic evaluations of does & bucks • yield • Type • Access information using: • ID number • animal name • herd code

  34. http://aipl.arsusda.gov/cgi-bin/general/Qpublic/do.Q.cgi?qname=shgoat&singlehttp://aipl.arsusda.gov/cgi-bin/general/Qpublic/do.Q.cgi?qname=shgoat&single

  35. http://aipl.arsusda.gov/cgi-bin/general/Qpublic/do.Q.cgi?qname=getbuck&singlehttp://aipl.arsusda.gov/cgi-bin/general/Qpublic/do.Q.cgi?qname=getbuck&single

  36. http://aipl.arsusda.gov/cgi-bin/general/Qpublic/do.Q.cgi?qname=goatherderr&singlehttp://aipl.arsusda.gov/cgi-bin/general/Qpublic/do.Q.cgi?qname=goatherderr&single

  37. http://aipl.arsusda.gov/cgi-bin/general/Qpublic/do.Q.cgi?qname=shgprog&singlehttp://aipl.arsusda.gov/cgi-bin/general/Qpublic/do.Q.cgi?qname=shgprog&single

  38. Recent Changes • New web query for accessing data by animal name • Yield data since 1998 extracted from the master file each run • incorporates corrections, deletions, and ID changes • Standardized yields back to 1974 available

  39. Possible Enhancements • Add evaluations for more traits • Productive Life • Somatic Cell Score • Daughter Pregnancy Rate • Switch to test day model • Provides better accounting for environment • Accounts for genetic differences in shape of lactation curve

More Related