Q.50 In analogy with central dogma of biology, how will you arrange the following omics in a correct sequence: A. Metabolomics B. Proteomics C. Genomics D. Transcriptomics E. Phenotype or Phenomics Choose the correct answer from the options given below: B, C, D, E, A C, B, D, A, E C, D, B, A, E C, E, B, A, D

Q.50 In analogy with central dogma of biology, how will you arrange the following omics in a correct sequence:

A. Metabolomics
B. Proteomics
C. Genomics
D. Transcriptomics
E. Phenotype or Phenomics

Choose the correct answer from the options given below:

  1. B, C, D, E, A
  2. C, B, D, A, E
  3. C, D, B, A, E
  4. C, E, B, A, D

    The central dogma of molecular biology (DNA → RNA → Protein → Phenotype) extends to omics levels as Genomics → Transcriptomics → Proteomics → Metabolomics → Phenomics/Phenotype.

    The correct sequence is C, D, B, A, E.

    Option Breakdown

    Each option tests alignment with the information flow from genome to observable traits.

    • B, C, D, E, A: Starts with Proteomics (wrong; proteins follow transcripts).

    • C, B, D, A, E: Genomics before Proteomics (skips Transcriptomics).

    • C, D, B, A, E: Correct—Genomics (DNA), Transcriptomics (RNA), Proteomics (proteins), Metabolomics (small molecules), Phenotype/Phenomics (traits).

    • C, E, B, A, D: Places Phenotype too early (before proteins/metabolites).

    Omics Sequence Central Dogma Explained

    The omics sequence central dogma mirrors DNA → RNA → Protein → Metabolism → Traits, ranking high-throughput studies from genetic blueprint to cellular outcomes. Genomics (C) sequences DNA first, followed by Transcriptomics (D) for RNA expression, Proteomics (B) for proteins, Metabolomics (A) for metabolites, and Phenomics/Phenotype (E) for observable traits.

    Central Dogma Analogy Details

    This flow ensures systematic analysis: genomic variations drive transcript changes, which alter proteins, influencing metabolites and phenotypes.

    Omics Level Biological Analog Role in Flow
    Genomics (C) DNA Genetic code origin.
    Transcriptomics (D) RNA Gene expression readout.
    Proteomics (B) Proteins Functional molecules.
    Metabolomics (A) Metabolites Biochemical products.
    Phenomics (E) Phenotype Final traits/outcomes.

    Applications in Research

    Systems biology uses this omics sequence central dogma for integrative studies, like cancer genomics linking mutations to phenotypic drug response.

    Exam Strategy

    For competitive exams, recall C-D-B-A-E as the unbreakable flow; mismatches like starting with B or E are traps.

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