Estimates of genetic parameters for production, behaviour, and health traits in two Swiss honey bee populations
暂无分享,去创建一个
E. W. Brascamp | P. Fried | B. Dainat | P. Bijma | M. Neuditschko | M. Grandjean | M. Guichard | Gabriele Soland | Sarah Gerster
[1] A. Hoppe,et al. The importance of controlled mating in honeybee breeding , 2019, Genetics Selection Evolution.
[2] E. W. Brascamp,et al. A note on genetic parameters and accuracy of estimated breeding values in honey bees , 2019, Genetics Selection Evolution.
[3] E. W. Brascamp,et al. A note on genetic parameters and accuracy of estimated breeding values in honey bees , 2019, Genetics, selection, evolution : GSE.
[4] S. Andonov,et al. Modeling honey yield, defensive and swarming behaviors of Italian honey bees (Apis mellifera ligustica) using linear-threshold approaches , 2019, BMC Genetics.
[5] K. Delaplane,et al. Reduced density and visually complex apiaries reduce parasite load and promote honey production and overwintering survival in honey bees , 2019, PloS one.
[6] N. Kuhn,et al. High-resolution maps of Swiss apiaries and their applicability to study spatial distribution of bacterial honey bee brood diseases , 2019, PeerJ.
[7] E. W. Brascamp,et al. Hygienic behaviour in honeybees: a comparison of two recording methods and estimation of genetic parameters , 2019, Apidologie.
[8] T. Blacquière,et al. Bioassays to Quantify Hygienic Behavior in Honey Bee (Apis Mellifera L.) Colonies: A Review , 2018, Journal of Apicultural Research.
[9] R. Veerkamp,et al. Heritabilities and genetic correlations for honey yield, gentleness, calmness and swarming behaviour in Austrian honey bees , 2016, Apidologie.
[10] B. Locke. Natural Varroa mite-surviving Apis mellifera honeybee populations , 2016, Apidologie.
[11] M. Babaei,et al. Genetic Trends and Parameters of Honey Production, Swarming and Defense Behavior in Iranian Honeybee (Apis mellifera meda) Colonies , 2015 .
[12] T. Seeley,et al. Crowding honeybee colonies in apiaries can increase their vulnerability to the deadly ectoparasite Varroa destructor , 2015, Apidologie.
[13] E. W. Brascamp,et al. Methods to estimate breeding values in honey bees , 2014, Genetics Selection Evolution.
[14] P. Rosenkranz,et al. Autumn Invasion Rates of Varroa destructor (Mesostigmata: Varroidae) Into Honey Bee (Hymenoptera: Apidae) Colonies and the Resulting Increase in Mite Populations , 2014, Journal of economic entomology.
[15] R Core Team,et al. R: A language and environment for statistical computing. , 2014 .
[16] K. Bienefeld,et al. Subjective evaluation of defensive behavior in the Syrian honeybee (Apis mellifera syriaca) , 2013 .
[17] K. Bienefeld,et al. Standard methods for rearing and selection of Apis mellifera queens , 2013, Journal of Apicultural Research.
[18] K. Bienefeld,et al. First estimate of genetic parameters for the Syrian honey bee Apis mellifera syriaca , 2012, Apidologie.
[19] A. Pakdel,et al. NEW APPROACH FOR ESTIMATING OF HERITABILITY IN HONEYBEE POPULATION , 2011 .
[20] J. Woolliams,et al. The Accuracy of Genomic Selection in Norwegian Red Cattle Assessed by Cross-Validation , 2009, Genetics.
[21] L. P. Oddo,et al. Botanical species giving unifloral honey in Europe , 2004 .
[22] Jeffrey W. Harris,et al. Selecting honey bees for resistance to Varroa jacobsoni , 1999 .
[23] K. Bienefeld,et al. Genetic Correlations among Several Colony Characters in the Honey Bee (Hymenoptera: Apidae) Taking Queen and Worker Effects into Account , 1991 .
[24] K. Bienefeld,et al. Heritabilities for several colony traits in the honeybee (Apis mellifera carnica) , 1990 .