Home
Class 12
BIOLOGY
During its studies on genes in drosophil...

During its studies on genes in drosophila that wen sex linked, T.H. Morgan found F, population phenotypic ratio deriated from expected 9:3:3:1. Explain. The conclusion be arrived at.

Promotional Banner

Topper's Solved these Questions

  • PRINCIPLES OF INHERITANCE AND VARIATIONS

    OSWAAL PUBLICATION|Exercise (TOPIC 2 ) (SEX DETERMINATION AND GENETIC DISORDERS (VERY SHORT ANSWER TYPE QUESTIONS))|1 Videos
  • PRINCIPLES OF INHERITANCE AND VARIATIONS

    OSWAAL PUBLICATION|Exercise (TOPIC 2 ) (SEX DETERMINATION AND GENETIC DISORDERS (VERY SHORT ANSWER TYPE QUESTIONS ))|16 Videos
  • PRINCIPLES OF INHERITANCE AND VARIATIONS

    OSWAAL PUBLICATION|Exercise (TOPIC 1 ) (MENDEL.S LAWS OF INHERITANCE (SHORT ANSWER TYPE QUESTIONS-II ))|21 Videos
  • ORGANISMS AND POPUIATIONS

    OSWAAL PUBLICATION|Exercise TOPIC :2 Multiple Choice Questions|20 Videos
  • QUESTION PAPER 2019

    OSWAAL PUBLICATION|Exercise PART-D|18 Videos

Similar Questions

Explore conceptually related problems

During the studies on genes in Drosopila that were sex-linked T.H. Morgan found F2-populabon phenotypic ratios deviated from expected 9 : 3 : 3 : 1. Explain the conclusion he arrived at.

In a typical monohybrid cross the F_(2) -population ratio is written as 3:1 for phenotype but expressed as 1:2:1 for genotype. Explain with the help of an exmaple.

In F_(2) generation, a ratio of 1:4:6:4:1 is obtained instead of 9:3:3:1, when two pairs of genes are considered, it indicates

Choose the right sequential phenomena among following during the delivery of O_(2) from blood to tissue P. Absorption of CO_(2) by the blood Q. Reaction of absorbed CO_(2) " with " H_(2)O to from H_(2)O_(3) within RBC and its conversion into H^(+) and HCO_(3)^(-) ions R. Reaction of absorbed CO_(2) " with " H_(2)O in plasma to form H_(2)CO_(3) and its conversion into H^(+) " and " HCO_(3)^(-) S. Combination of H^(+) with haem portion of HbO_(2) to release O_(2) T. Comnbination of HCO_(3)^(-) with haem portion HbO_(2) to form reduced haemoglobin and release of O_(2)

Calculate the radius and velocity of the electron in the n^(th) orbit in hydrogen atom from the following data e=1.6xx10^(-19)C, m = 9.11 xx10^(-31) , h = 6.625xx10^(-34) JS, epsilon_(0) = 8.85xx10^(-12) " Fm "^(-1) and c = 3 xx10^(8) ms^(-1)