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algol [13]
2 years ago
4

In roses, red flowers and long stems are dominant traits. A rose plant that is homozygous for both red flowers and long stems is

crossed with a rose plant that is heterozygous for red flowers and homozygous for short stems. What percentage of the offspring will exhibit red, long-stemmed
flowers?

Biology
2 answers:
disa [49]2 years ago
5 0

Answer: Percentage of the offspring that will exhibit red, long-stemmed

flowers is 100%.

As per the information in the question, red flowers and long stems are dominant traits whereas short stem is a recessive trait. Dominant trait ( depicted by capital letter allele) is the one that masks the expression of receesive trait ( depicted by small letter allele).

Let us consider the genotypes of parents as-

RRLL (having same alleles, that is homozygous for both red flowers and long stems) and

Rrll ( having different allele for red flowers that is heterozygous for red flowers and homozygous for short stems).

The gametes produced are-

RRLL will produce RL and RL gametes

Rrll will produce Rl, Rl, rl, rl gametes.

When they are allowed to cross, they will produce 100% offspring that will exhibit red, long-stemmed  flowers.

Refer punnet square.

jeka57 [31]2 years ago
4 0
The answer is 100%.

This is an example of Mendelian dihybrid cross (<span>a cross between two different traits).
If:
R - (dominant) allele for red flowers
r - (recessive) allele for non-red flowers
S - (dominant) allele for long stems
s - </span><span>(recessive) allele for short stems.

Then:
RRSS - a</span><span> rose plant that is homozygous for both red flowers (RR) and long stems (SS)
Rrss - </span>a rose plant <span>that is heterozygous for red flowers (Rr) and homozygous for short stems (ss)

The cross will be like:
Parents:        RRSS        x        Rrss

Since it is not easy to represent all of the offspring, the Punnett square can be used, or we can take a look separately on traits:
</span>
I trait:
Parents:            RR        x        <span>Rr
</span>Offspring:    RR       RR      Rr       Rr
There are only dominant homozygous (RR) and heterozygous (rr). All of the offspring will have red flowers because the trait is dominant.

II trait:
Parents:            SS        x        <span>ss
</span>Offspring:     Ss<span>       Ss      Ss       Ss</span>
<span>There are only heterozygous (Ss). All of the offspring will have long stems the trait is dominant.
</span>
When we match these two traits, all of the offspring will have red long stemmed flowers. 
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I hope this helped,

have a great day.

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