Compare the Difference Between Similar Terms

之间的区别

Home / Science & Nature / Science / Biology / 遗传学 /之间的区别Wobble and Degeneracy

之间的区别Wobble and Degeneracy

December 17, 2019Posted byDr.Samanthi

Thekey differencebetween wobble and degeneracy is thatwobble refers to the hypothesis that explains the non-Watson and crick pairing duringcodon and anticodonbinding betweenmRNA and tRNA. Meanwhile, the degeneracy of the codon is the ability to produce a singleamino acid从多个密码子。

The central dogma of molecular biology explains the process in which the expression of functional proteins takes place. And, this process is a sequence of different steps, including the replication of the genetic material followed by the transcription of the DNA sequence into the mRNA sequence and translation of the mRNA sequence into an amino acid sequence.

In translation, the concepts of the wobble hypothesis and the degeneracy of the codon play important roles. Wobble refers to the ability of single tRNA to recognize more than one codon. It gives rise to the degeneracy of codons. Degeneracy is the phenomenon in which one amino acid may be specified by more than one codon. In simple words, degeneracy refers to the existence of multiple codes for a single amino acid.

CONTENTS

1.Overview and Key Difference
2.What is Wobble
3.What is Degeneracy
4.Similarities Between Wobble and Degeneracy
5.Side by Side Comparison – Wobble vs Degeneracy in Tabular Form
6.Summary

What is Wobble?

The wobble hypothesis is an important hypothesis that explains the non-Watson Crick base pairing that takes place during the translation process. Here, the translation is the molecular process that converts the mRNA codon into an amino acid sequence. According to this hypothesis, the first base of the tRNA anticodon is capable of pairing with the third base of the codon in the mRNA strand by non-Watson and Crick pairing pattern. Thus, they do not follow the conventional adenine-uracil binding or cytosine-guanine binding patterns. It is known as the wobbling pattern of the base 1 of the anticodon and the base 3 of the codon.

Key Difference - Wobble vs Degeneracy

Figure 01: Wobble Base Pairing

The wobble pairings include Adenine and inosine pairing instead of uracil. Uracil pairs with Adenine, Guanine and Inosine. Likewise, Guanine and cytosine are also capable of pairing with inosine. Thus, inosine in tRNA is one of the unusual bases that undergo wobble base pairing.

The wobble base pair binding is less strong as it does not necessarily follow Watson and Crick complementary binding. Furthermore, this concept gives rise to the principle of the degeneracy of the genetic code.

What is Degeneracy?

Degeneracy of the genetic code refers to the redundancy of the genetic code. Thus, there can be many base pair combinations specifying a single amino acid. Generally, the codon of organisms consists of three nucleotide bases. In the concept of degeneracy, these three base combinations may alter although they give rise to the same amino acid. Besides, there are more than 20 codons even though there are only 20 amino acids in nature. Hence, degeneracy explains the existence of multiple codons for a specific amino acid.

之间的区别Wobble and Degeneracy

Figure 02: Degeneracy

In degeneracy, the third base may alter between two codons. Thus, glutamic acid is specified by both the codons GAA and GAG, while leucine is specified by the codons UUA, UUG, CUU, CUC, CUA and CUG.

Therefore, the concept of degeneracy is very important in mutation rates. Due to this, point mutations that take place in the genome can be tolerated and still appear to be silenced. Thus, this type of point mutations does not result in a mutation or alteration of the amino acid sequence. However, if the point mutations lead to an alternation of the amino acid encoded, it might cause severe genotypic and phenotypic changes.

What are the Similarities Between Wobble and Degeneracy?

  • Both are important hypotheses that are put forward to explain the central dogma of life in relation to the translation process.
  • Moreover, both processes play an important role in translating the three base pair codon language to the 20 amino acid sequence.
  • These processes also help the evolutionary patterns of organisms.

What is the Difference Between Wobble and Degeneracy?

The key difference between wobble and degeneracy is primarily the fact that wobbling results in the degeneracy of the genetic code. Wobbling refers to the follow of non-Watson and Crick pairing between the codon’s 3rdbase and the anticodon’s 1stbase. In contrast, degeneracy is the ability of many triplet codon combinations to encode a single amino acid.

The below infographic summarizes the difference between wobble and degeneracy.

之间的区别Wobble and Degeneracy in Tabular Form

总结——摆动和简并度

Wobble hypothesis and degeneracy of the genetic code are two important concepts in the phenomenon of translation. Here, the translation is the process of converting triplet codons into amino acids. In the binding of the codon to the anticodon, the discovery of non-Watson and Crick base pairing refers to the wobble hypothesis. The wobbling of bases between the codon and the anticodon is described by this. In contrast, the degeneracy of the genetic code that results in the wobbling process is the phenomenon where a single amino acid is encoded by many different codons. So, this is the summary of the difference between wobble and degeneracy.

Reference:

1. Griffiths, Anthony JF. “Genetic Code.”介绍Genetic Analysis. 7th Edition., U.S. National Library of Medicine, 1 Jan. 1970,Available here.

Image Courtesy:

1. “Wobble” By Fdardel – Own work(CC BY-SA 3.0)via Commons Wikimedia
2. “ELLIPTICAL GENETIC CODE Ian” By Doug Youvan, Frank Layden – Own work derived from File:Hydropathy_Molar_Volume_Genetic_Code_2.png(CC BY-SA 4.0)viaCommons Wikimedia

Related posts:

之间的区别YAC and M13 Phage Vector之间的区别YAC and M13 Phage Vector 之间的区别Euploidy and Aneuploidy之间的区别Euploidy and Aneuploidy 之间的区别Homoplasy and Homology之间的区别Homoplasy and Homology 之间的区别XX and XY Chromosomes之间的区别XX and XY Chromosomes 之间的区别Maternal and Paternal DNA Testing之间的区别Maternal and Paternal DNA Testing

Filed Under:遗传学

About the Author:Dr.Samanthi

Dr.Samanthi Udayangani holds a B.Sc. Degree in Plant Science, M.Sc. in Molecular and Applied Microbiology, and PhD in Applied Microbiology. Her research interests include Bio-fertilizers, Plant-Microbe Interactions, Molecular Microbiology, Soil Fungi, and Fungal Ecology.

Leave a ReplyCancel reply

Your email address will not be published.Required fields are marked*

Request Article

Featured Posts

之间的区别Coronavirus and Cold Symptoms

之间的区别Coronavirus and Cold Symptoms

之间的区别Coronavirus and SARS

之间的区别Coronavirus and SARS

之间的区别Coronavirus and Influenza

之间的区别Coronavirus and Influenza

之间的区别Coronavirus and Covid 19

之间的区别Coronavirus and Covid 19

You May Like

之间的区别Em Dash and En Dash

之间的区别Goals and Targets

之间的区别Goals and Targets

之间的区别Digital Camera and Camcorder

之间的区别UberXL and UberSuv

之间的区别UberXL and UberSuv

之间的区别Variolation and Vaccination

之间的区别Variolation and Vaccination

Latest Posts

  • What is the Difference Between Solution Suspension and Emulsion
  • What is the Difference Between Constipation and Diarrhea
  • What is the Difference Between Soil Texture and Soil Structure
  • What is the Difference Between Appendicitis and Crohn’s Disease
  • What is the Difference Between Vacuum Pump and Compressor
  • What is the Difference Between Soil and Clay
  • Home
  • Vacancies
  • About
  • Request Article
  • Contact Us

Copyright © 2010-2018之间的区别. All rights reserved.Terms of Useand Privacy Policy:Legal.