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BIO 212 Final Exam Questions and Answers Fully Solved Latest Update

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BIO 212 Final Exam Questions and Answers Fully Solved Latest Update Early inheritance worked under two assumptions about how inheritance works: Reciprocal crosses - Answers Each parent contributes equally to offspring in reciprocal crosses (supported by experiments) Early inheritance worked under two assumptions about how inheritance works: Hereditary determinants - Answers Hereditary determinants blend in offspring (not supported by experiments) Each parent contributes ________ to offspring - Answers Each parent contributes equally to offspring. (correct) Supported by reciprocal crosses, 1770s by Kolreuter Hereditary determinants blend in the offspring - Answers Incorrect. It was thought that once hereditary elements had blended they could never be separated. Gregor Mendel's studies refuted this Mendel - Answers Austrian monk His studies in physics and mathematics were a strong influence on his use of quantitative experimental methods. Over seven years, he made crosses with 24,034 plants Mendel's new theory of inheritance - Answers Published in 1866, but was largely ignored Most biologists at the time were not used to thinking in mathematical terms Even Darwin missed the significance of Mendel's work 1900 - Answers Meiosis had been observed Three plant geneticists realized that chromosomes and meiosis provided a physical explanation for Mendel's results Mendel worked with the - Answers garden pea He could control pollination and fertilization- and be sure of the parents of offspring Available, short life span from seed to seed. Produce large numbers of offspring, easily grown/cultured, different strains= different reproducible characteristics Peas= self fertile. Cross with themselves. Control from one plant to another Character - Answers Observable physical feature (e.g., flower color) Trait - Answers Form of a character (e.g., purple flowers or white flowers) Heritable trait - Answers Passed from parent to offspring Mendel looked for well-defined, true-breeding traits - Answers The observed trait is the only one present for many generations True-breeding strains - Answers were isolated by inbreeding and selection He concentrated on seven traits Mendel's crosses: Parental generation=P - Answers Pollen from one parent was transferred to the stigma of the other parent Parental generation=P Mendel's crosses: First filial generation= F1 - Answers Resulting offspring First filial generation or F1 Mendel's crosses: Second filial generation= F2 - Answers If F1 plants self pollinate, produce second filial generation or F2 Mendel's Postulates Unit Factors - Answers Traits are controlled by discrete 'unit factors' (genes) Unit Factors are present in pairs (concept of diploid before anyone had ever seen chromosomes) Mendel's Postulates Alleles - Answers There are different 'flavors of unit factors for particular traits (tall vs. dwarf are types of gene or unit factor for plant height. Alleles. Mendel's Postulates Disimilar pairs can be present - Answers One tall, one dwarf form of that gene One will be expressed, the other is masked Mendel's Postulates Dominant - Answers gene expressed Mendel's Postulates Recessive - Answers gene masked Mendel's Postulates

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BIO 212 Final Exam Questions and Answers Fully Solved Latest Update 2025-2026

Early inheritance worked under two assumptions about how inheritance works:

Reciprocal crosses - Answers Each parent contributes equally to offspring in reciprocal crosses
(supported by experiments)

Early inheritance worked under two assumptions about how inheritance works:

Hereditary determinants - Answers Hereditary determinants blend in offspring (not supported by
experiments)

Each parent contributes ________ to offspring - Answers Each parent contributes equally to
offspring. (correct)

Supported by reciprocal crosses, 1770s by Kolreuter

Hereditary determinants blend in the offspring - Answers Incorrect. It was thought that once
hereditary elements had blended they could never be separated.

Gregor Mendel's studies refuted this

Mendel - Answers Austrian monk

His studies in physics and mathematics were a strong influence on his use of quantitative
experimental methods.

Over seven years, he made crosses with 24,034 plants

Mendel's new theory of inheritance - Answers Published in 1866, but was largely ignored

Most biologists at the time were not used to thinking in mathematical terms

Even Darwin missed the significance of Mendel's work

1900 - Answers Meiosis had been observed

Three plant geneticists realized that chromosomes and meiosis provided a physical explanation
for Mendel's results

Mendel worked with the - Answers garden pea

He could control pollination and fertilization- and be sure of the parents of offspring

Available, short life span from seed to seed. Produce large numbers of offspring, easily
grown/cultured, different strains= different reproducible characteristics

Peas= self fertile. Cross with themselves. Control from one plant to another

,Character - Answers Observable physical feature (e.g., flower color)

Trait - Answers Form of a character (e.g., purple flowers or white flowers)

Heritable trait - Answers Passed from parent to offspring

Mendel looked for well-defined, true-breeding traits - Answers The observed trait is the only one
present for many generations

True-breeding strains - Answers were isolated by inbreeding and selection

He concentrated on seven traits

Mendel's crosses:

Parental generation=P - Answers Pollen from one parent was transferred to the stigma of the
other parent

Parental generation=P

Mendel's crosses:

First filial generation= F1 - Answers Resulting offspring

First filial generation or F1

Mendel's crosses:

Second filial generation= F2 - Answers If F1 plants self pollinate, produce second filial
generation or F2

Mendel's Postulates

Unit Factors - Answers Traits are controlled by discrete 'unit factors' (genes)



Unit Factors are present in pairs (concept of diploid before anyone had ever seen chromosomes)

Mendel's Postulates

Alleles - Answers There are different 'flavors of unit factors for particular traits (tall vs. dwarf are
types of gene or unit factor for plant height. Alleles.

Mendel's Postulates

Disimilar pairs can be present - Answers One tall, one dwarf form of that gene

One will be expressed, the other is masked

,Mendel's Postulates

Dominant - Answers gene expressed

Mendel's Postulates

Recessive - Answers gene masked

Mendel's Postulates

Heterozygous - Answers 2 alleles of a gene that are dissimilar

Mendel's Postulates

Homozygous - Answers 2 alleles of a gene that are the same

Mendel's Postulates

Law of Segregation - Answers During formation of sex cells (eggs and sperm= gametes) unit
factors separate (segregate)

Each gamete gets one or the other but not both

Mendel's first experiment - Answers Crossed plants differing in just one trait (P)

F1 generation are monohybrids

The monohybrids were then allowed to self pollinate to form the F2 generation

Mendel repeated this for all seven traits

Mendel's first experiment

Monohybrid cross - Answers Self pollination

Forms F2 generation

Mendel's first experiment

Recessive traits - Answers One trait of each pair disappeared in the F1 generation and
reappeared in the F2 generation

Mendel's first experiment

Dominant trait - Answers The trait that appears in the F1 generation is the dominant trait

Ratio of dominant to recessive in the F2 generation - Answers About 3:1

Reciprocal crosses yield the same results - Answers It made no difference which parent
contributed pollen

, The idea that each parent contributes equally was supported

Blending theory - Answers Not supported by Mendel's crosses

Particulate theory - Answers Mendel proposed that the heritable units were discrete particles

Each plant has two particles for each character, one from each parent

Diploid - Answers The two copies of heritable unit in an organism

Haploid - Answers During gamete production, only one copy is given to the gamete- this single
set is called haploid

Gamete vs. zygote - Answers Mendel also concluded that each gamete contains only one
particle (or unit), but the zygote contains two- because it is produced from the fusion of two
gametes

The "Particles" are now called ________ - Answers Genes

Genome - Answers The totality of all genes in an organism is the genome

Hypothesis - Answers When two strains of peas with contrasting traits are bred, their
characteristics are irreversibly blended in succeeding generations

Method - Answers Plant a true-breeding spherical seed- Parental (P) seed

Plant a true-breeding wrinkled seed Parental (P) seed

Seeds grow into plants and produce pollen- Parental (P) plants

F1 seeds are formed and grown into F1 plants

F1 plant self-pollinates

Results - Answers F2 seeds from F1 plants

3 spherical seeds, 1 wrinkled seed

Conclusion - Answers The hypothesis is rejected. There is no irreversible blending of
characteristics, and a recessive trait can reappear in succeeding generations

The true-breeding plants in the P generation had - Answers Two identical copies of the particle
(gene) for each character

Example: Spherical SS; wrinkled ss gametes from SS will have one S gametes from ss will have
one s offspring (F1) will be Ss

S is dominant; s is not expressed in F1

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