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The P1 plant has a dominant leaf, while the F1 plant does not. Since the P2 plant has more dominant alleles, when it is bred with a plant that has a recessive allele, the F1 plant would have all dominant alleles.
Plants are living organisms. That means they need to reproduce in order to pass on their genes to future generations. Plants can create offspring through either sexual or asexual reproduction.
The P1 plants are homozygous with the recessive alleles for anthocyanin expresion (anl). Anthocyanin expression is suppressed, and the stems appear bright green. The F1 plants are the result of crossing the P1 and P2 plants. They are heterozygous with both a dominant and a recessive allele for anthocyanin expression.
Baby plants are similar to their parents in a number of ways. They have similar features including leaf shape, color, and appearance. The plants will have the same parts as their offspring which are used for the same functions. Many baby plants are just miniature versions of their parents.
Baby plants are similar to their parents in a number of ways. They have similar features including leaf shape, color, and appearance. The plants will have the same parts as their offspring which are used for the same functions. Many baby plants are just miniature versions of their parents.
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The Life Cycle of Fast Plants The life cycle for Fast Plants is extremely short; under ideal growing conditions of continuous light, water and nutrition, plants will produce harvestable seeds approximately 40 days after planting. A day or two after planting and watering, the tiny seed germinates.
Rapid plant movement encompasses movement in plant structures occurring over a very short period, usually under one second.
The genotype of the wild type is ANL/ANL. The yellow-green gene (ygr) in Wisconsin Fast Plants\u2122 determines whether the leaves will be yellow-green or green in color. In the homozygous, recessive form (ygr/ygr), the leaves appear a pale, yellow-green color (which is the \u201cyellow-green leaf\u201d phenotype).
Children often look like some combination of their parents. This is because each parent gives the child some of themselves {gene}. A child is made from the information found in the cells of the parents. These characteristics are called genes.
The P1 plants are homozygous with the recessive alleles for anthocyanin expresion (anl). Anthocyanin expression is suppressed, and the stems appear bright green. The F1 plants are the result of crossing the P1 and P2 plants. They are heterozygous with both a dominant and a recessive allele for anthocyanin expression.

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