Predictions & Data for this entry

Model: stx climate: Csb migrate: phylum:
COMPLETE = 2.5 ecozone: TA food: bxM, xiHl class:
MRE = 0.117 habitat: 0iTh gender: Dg order:
SMSE = 0.046 embryo: Tv reprod: O family:

Zero-variate data

Data Observed Predicted (RE) Unit Description Reference
tg 29 29 (0.0001595) d gestation time Tynd1973
tx 186 203.1 (0.09185) d time since birth at weaning Tynd1973
tp 220 271 (0.2317) d time since birth at puberty Russ1982, AnAge
am 5037 5037 (2.892e-05) d life span WeigJone2005
Wwb 0.404 0.3988 (0.0129) g wet weight at birth Bart1956, Russ1982, AnAge
Wwx 726 694.5 (0.04343) g wet weight at weaning HaysTien1993
Wwp 1332 1187 (0.1088) g wet weight at puberty Tynd1973
Wwi 5000 5576 (0.1152) g ultimate wet weight Wiki
Ri 0.003836 0.003837 (0.0004029) #/d maximum reprod rate HindPool1990
pL 3.989e+04 4.001e+04 (0.003044) J/d average yearly milk production CorkDove1989

Uni- and bivariate data

Data Figure Independent variable Dependent variable (RE) Reference
tW time since birth wet weight (0.6762) Tynd1973

Pseudo-data at Tref = 20°C

Data Generalised animal Setonix brachyurus Unit Description
v 0.02 0.03761 cm/d energy conductance
kap 0.8 0.8767 - allocation fraction to soma
kap_R 0.95 0.95 - reproduction efficiency
p_M 18 34.18 J/d.cm^3 vol-spec som maint
k_J 0.002 0.002 1/d maturity maint rate coefficient
kap_G 0.8 0.8015 - growth efficiency
t_0 0 21.32 d time at start development

Discussion

  • 90 percent of milk production originates from upregulation

Bibliography

Citation