File | Title | Manuscript Id |
Chapter Introduction | life11e_ch12_1.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_1_dlap.xml | 578d1f64757a2efc64000000 |
key concept 12.1 Inheritance of Genes Follows Mendelian Laws
| life11e_ch12_2.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_2_dlap.xml | 578d1f64757a2efc64000000 |
Mendel’s laws arose from controlled crosses of pea plants
| life11e_ch12_3.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_3_dlap.xml | 578d1f64757a2efc64000000 |
Mendel’s first experiments involved monohybrid crosses
| life11e_ch12_4.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_4_dlap.xml | 578d1f64757a2efc64000000 |
Mendel’s first law states that the two copies of a gene segregate
| life11e_ch12_5.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_5_dlap.xml | 578d1f64757a2efc64000000 |
Mendel verified his hypotheses by performing test crosses
| life11e_ch12_6.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_6_dlap.xml | 578d1f64757a2efc64000000 |
Mendel’s second law states that copies of different genes assort independently
| life11e_ch12_7.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_7_dlap.xml | 578d1f64757a2efc64000000 |
Probability can be used to predict inheritance
| life11e_ch12_8.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_8_dlap.xml | 578d1f64757a2efc64000000 |
Mendel’s laws can be observed in human pedigrees
| life11e_ch12_9.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_9_dlap.xml | 578d1f64757a2efc64000000 |
recap | life11e_ch12_10.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_10_dlap.xml | 578d1f64757a2efc64000000 |
key concept 12.2 Alleles Can Produce Multiple Phenotypes
| life11e_ch12_11.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_11_dlap.xml | 578d1f64757a2efc64000000 |
New alleles arise by mutation
| life11e_ch12_12.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_12_dlap.xml | 578d1f64757a2efc64000000 |
Many genes have multiple alleles
| life11e_ch12_13.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_13_dlap.xml | 578d1f64757a2efc64000000 |
Dominance is not always complete
| life11e_ch12_14.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_14_dlap.xml | 578d1f64757a2efc64000000 |
In codominance, both alleles at a locus are expressed
| life11e_ch12_15.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_15_dlap.xml | 578d1f64757a2efc64000000 |
Some alleles have multiple phenotypic effects
| life11e_ch12_16.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_16_dlap.xml | 578d1f64757a2efc64000000 |
recap | life11e_ch12_17.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_17_dlap.xml | 578d1f64757a2efc64000000 |
key concept 12.3 Genes Can Interact to Produce a Phenotype
| life11e_ch12_18.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_18_dlap.xml | 578d1f64757a2efc64000000 |
Hybrid vigor results from new gene combinations and interactions
| life11e_ch12_19.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_19_dlap.xml | 578d1f64757a2efc64000000 |
The environment affects gene action
| life11e_ch12_20.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_20_dlap.xml | 578d1f64757a2efc64000000 |
Most complex phenotypes are determined by multiple genes and the environment
| life11e_ch12_21.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_21_dlap.xml | 578d1f64757a2efc64000000 |
recap | life11e_ch12_22.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_22_dlap.xml | 578d1f64757a2efc64000000 |
key concept 12.4 Genes Are Carried on Chromosomes
| life11e_ch12_23.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_23_dlap.xml | 578d1f64757a2efc64000000 |
Linked genes are inherited together
| life11e_ch12_24.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_24_dlap.xml | 578d1f64757a2efc64000000 |
Genes can be exchanged between chromatids and mapped
| life11e_ch12_25.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_25_dlap.xml | 578d1f64757a2efc64000000 |
Linkage is revealed by studies of the sex chromosomes
| life11e_ch12_26.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_26_dlap.xml | 578d1f64757a2efc64000000 |
recap | life11e_ch12_27.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_27_dlap.xml | 578d1f64757a2efc64000000 |
key concept 12.5 Some Eukaryotic Genes Are Outside the Nucleus
| life11e_ch12_28.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_28_dlap.xml | 578d1f64757a2efc64000000 |
recap | life11e_ch12_29.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_29_dlap.xml | 578d1f64757a2efc64000000 |
key concept 12.6 Prokaryotes Can Transmit Genes by Mating
| life11e_ch12_30.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_30_dlap.xml | 578d1f64757a2efc64000000 |
Bacteria exchange genes by conjugation
| life11e_ch12_31.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_31_dlap.xml | 578d1f64757a2efc64000000 |
Bacterial conjugation is controlled by plasmids
| life11e_ch12_32.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_32_dlap.xml | 578d1f64757a2efc64000000 |
recap | life11e_ch12_33.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_33_dlap.xml | 578d1f64757a2efc64000000 |
Investigating Life | life11e_ch12_34.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_34_dlap.xml | 578d1f64757a2efc64000000 |
Chapter Summary
| life11e_ch12_35.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_35_dlap.xml | 578d1f64757a2efc64000000 |
Apply What You’ve Learned
| life11e_ch12_36.html | 578d1f64757a2efc64000000 |
DLAP questions | life11e_ch12_36_dlap.xml | 578d1f64757a2efc64000000 |