- Speed of DNA replication in mammals is 256 bp/sec, so for replication of 3X109bp DNA it will take a very long time, but it is completed within few hours because
(1) Most of DNA is intron
(2) High amount of Repetitive DNA
(3) Multiple origin of replication
(4) Only small portion is replicated in one cycle
Introduction
Mammalian genomes are large and complex, with approximately 3 billion base pairs (3 × 10^9 bp) to replicate. The replication fork speed in mammals is relatively slow—around 256 base pairs per second—which would theoretically require an impractically long time to duplicate the entire genome if replication occurred from a single origin. However, mammalian cells complete genome replication within a few hours during S phase. This efficiency is primarily due to the presence of multiple origins of replication distributed throughout the genome.
The Challenge of Replicating Large Genomes
-
The human genome size (~3 × 10^9 bp) is vast compared to bacterial genomes.
-
At a fork speed of 256 bp/sec, a single replication fork would take over 100 days to replicate the entire genome if it started from only one origin.
-
Mammalian cells complete replication in roughly 6–8 hours, highlighting the need for a more efficient strategy.
Multiple Origins of Replication: The Key to Speed
-
Mammalian chromosomes contain thousands of replication origins spaced across the genome.
-
Each origin fires independently, creating multiple replication forks that proceed simultaneously.
-
This parallel replication drastically reduces the total time required to duplicate the entire genome.
How Multiple Origins Accelerate Replication
-
Simultaneous initiation: Numerous origins activate at different times during S phase, creating replication “bubbles.”
-
Shorter replicons: The genome is divided into smaller replicons (units of replication), each replicated by forks emanating from its origin.
-
Dynamic regulation: Origin firing is tightly controlled to ensure complete and timely replication without over-replication.
Why Other Options Are Incorrect
-
Most DNA is intron:
-
The presence of introns does not affect replication speed; replication machinery copies all DNA sequences regardless of coding or non-coding status.
-
-
High amount of repetitive DNA:
-
While repetitive DNA is abundant, it does not inherently speed up replication; it may even pose challenges due to structural complexity.
-
-
Only a small portion is replicated in one cycle:
-
The entire genome must be replicated each cell cycle; partial replication would lead to genomic instability.
-
Supporting Evidence from Research
-
Studies show replication fork speed varies but is relatively slow (~1–3 kb/min in mammalian cells).
-
The number and timing of origin firing compensate for slow fork progression, ensuring complete replication within S phase.
-
Origin spacing and fork velocity are coordinated to maintain replication efficiency.
-
Early embryonic cells may use even more origins to replicate rapidly during development.
Summary Table
| Factor | Role in Mammalian DNA Replication Speed |
|---|---|
| Replication fork speed | Slow (~256 bp/sec), limiting alone |
| Multiple origins of replication | Thousands of origins firing simultaneously, enabling rapid genome duplication |
| Genome size | Large (~3 × 10^9 bp), requiring multiple origins |
| DNA composition (introns, repeats) | Does not significantly impact replication speed |
Conclusion
Mammalian cells overcome the slow replication fork speed by utilizing multiple origins of replication distributed throughout their large genomes. This strategy allows simultaneous replication at many sites, completing genome duplication within a few hours despite the inherent speed limitations of individual replication forks.
Correct Answer
(3) Multiple origin of replication



33 Comments
Manisha choudhary
July 28, 2025Done sir 👍🏻
Surbhi Rajawat
July 29, 2025Option 3 is correct because unlike prokaryotes, eukaryotes have multiple Oris which makes replication fast
Aman Choudhary
July 29, 2025Because eukaryotic cell has multiple ori
Sonam Saini
July 29, 2025Multipal origan of replication
Mansukh Kapoor
July 29, 2025The correct answer is 3rd because a genome can have multiple origin of rep
Heena
July 29, 2025Multiple ori present
Priti Khandal
July 29, 2025Yes sir 3 option is right multiple origin of Replication
Priya Khandal
July 29, 2025Multiple origin of replication third option is right
Aafreen
July 30, 2025Ans-3 present multiple origin of replication
Aafreen
July 30, 2025Ans-3
multiple origin of replication
Ajay Sharma
July 30, 2025because of multiple ori’s
Divya Mandhania
July 30, 2025Option 3 is right because unlike prokaryotes nd eukaryotes have multiple ori which makes replication fast
anurag giri
July 30, 2025Ans 3 bcoz eukaryotes have multiple origin of replication
Sonam Saini
July 30, 2025Multiple origin of sale iska matlab hai ki DNA mein different phone se replication start hota Hai jisse activity bahut fast complete Ho jaati Hai if only one base hota to DNA replication mein kafi adhik time lag jata
Dharmpal Swami
July 30, 2025Because multiple origin of replication are present in dna
Khushi Agarwal
July 30, 2025Option 3 is correct bcs in Eukaryotes divided into chromosomes, and har chromosome mein multiple replication origins hote hain isliye replication fast hota hai
Vanshika Sharma
July 30, 2025Ans is 3 bcs in eukaryotes their are several sites of ori
Manisha gujar
July 30, 2025Presence of multiple ori in DNA of eukaryotic cell
Manisha gujar
July 30, 2025Presence of multiple ori in eukaryotic cell
Ankita Pareek
July 31, 2025Due to multiple origin of replication
Manisha gujar
July 30, 2025Multiple ori present in eukaryotic cell
Swati Choudhary
July 30, 2025Multiple ori of replication helps with the fast replication.
Deepika Sheoran
July 30, 2025Option 3 is correct answer
Multiple origin of replication in eukaryotes.
shruti sharma
July 30, 2025multiple origin of replication
Anisha jakhar
July 30, 2025Eukaryotic DNA has multiple ori
Priya Dhakad
July 31, 2025The correct answer is multiple origin of replication in eukaryotes.
Diksha Chhipa
July 31, 2025Less time is required for replicating the whole dna in mammals due to presence of multiple ori of ret
Santosh Saini
July 31, 2025Eukaryotes has multiple origin(ARS) for rep.
Dipti Sharma
August 1, 2025Correct answer is eukaryotes have Multiple origin of replication.
Mahima Sharma
August 2, 2025Multiple ori present
Varsha Tatla
August 3, 2025Option 3 will be correct answer
Divyanshi Vaishnav
September 2, 2025Because of multiple origin of replication dna is formed in less time in eukaryotes
Deepika Sheoran
November 6, 2025Multiple origin of replication in Eukaryotes.