The following cross,$YyRr \times yyrr$ in garden pea plant,would result in the formation of

  • A
    Yellow - round and green - wrinkled seed-bearing plants in the ratio of $1:2$.
  • B
    Yellow - round,yellow - wrinkled,green - round and green - wrinkled plants in equal proportion.
  • C
    Plants with yellow - round seeds only.
  • D
    Yellow - round and green wrinkled plants in the ratio of $3:1$ respectively.

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Similar Questions

In Mendel's experiments with garden pea,round seed shape $(RR)$ was dominant over wrinkled seeds $(rr)$,and yellow cotyledon $(YY)$ was dominant over green cotyledon $(yy)$. What are the expected phenotypes of the $F_1$ generation when a homozygous round yellow plant $(RRYY)$ is crosseded with a homozygous wrinkled green plant $(rryy)$?

The genotypes of a plant variety were $TtHh, Tthh, ttHh$ and $tthh$,where $T =$ tallness and $H =$ hairy stem. Which one of the following crosses would produce progeny giving a phenotypic ratio approximately $1 : 1 : 1 : 1$?

The number of phenotypic recombinant offspring formed during the $F_2$ generation of a dihybrid cross is . . . . . . . (in $1/16$)

When a tall plant with rounded seeds $(TTRR)$ is crossed with a dwarf plant with wrinkled seeds $(ttrr)$,the ${F_1}$ generation consists of tall plants with rounded seeds. How many types of gametes will an ${F_1}$ plant produce?

Mendel's Law of Independent Assortment is proven by .....

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