00:01
In order to answer this question, i talk about inheritance.
00:03
It is consider three independently assorting gene pairs.
00:06
You have this, this, and this.
00:12
And it is the probability of obtaining an offspring that is like this, okay, from parents that are, in the question it's just from parents that are like this.
00:30
So i don't know if the question is wrong because if both parents are like this, then all the offspring are going to be like this.
00:40
Because remember that a person or an offspring in here is one all the little from each parent.
00:45
For each gene, for example, for the a gene, this parent can only transmit excessive a to the offspring and the same this parent.
00:52
So all the offspring are going to have the homosygo excessive for a.
00:56
The same for the b gene.
00:58
This parent only has recessive b alleles.
01:00
So it means that this parent can only transmit recessive b alleles to the offspring and the same this parent here.
01:06
So all the offspring are going to be homocygolyly.
01:07
For b and the same for the c gene.
01:10
So if this is the answer or this is actually the question, then it means that 100 % of the offspring are going to have this genotype.
01:18
But if the question is different, then i'm going to use an example in order for you to be able to solve this question.
01:27
For example, let's suppose that the parents are like this.
01:32
Hitrilygo for a, heterosio for b, homozygo gase g4c, and the second parent is a c homocygous dominant for a, hydrosygocygoy for b, and homocylus dominant for c.
01:44
Like this, okay? and you want to get, let's suppose that you want to get dominant a, or the heterocygo for a, the homocygousous for a, the homocyclose for b, and the heterocycle for c...