Properties of Real-Time PCR Assays

Key Properties of Real-Time PCR Assays Explained

Which is not a property of real-time PCR assays?
A. Incorporate dyes that bind double-stranded DNA
B. Incorporate an internal hydrolysis probe
C. Be performed at single temperature with no specialized instrumentation required
D. Be interpreted as a plus / minus result or as a quantitative result

Real-time PCR (qPCR) is a widely used technique in molecular biology that enables the detection and quantification of DNA or RNA in real-time during the amplification process. This method is highly sensitive, specific, and efficient, making it invaluable for clinical diagnostics, gene expression studies, and pathogen detection. Understanding the core properties of real-time PCR assays is essential for their successful application. This article explains the key characteristics of real-time PCR and why certain requirements, such as temperature control and specialized instrumentation, are necessary for accurate and reproducible results.


Correct Answer:

The correct answer is (C) Be performed at a single temperature with no specialized instrumentation required.


What is Real-Time PCR (qPCR)?

Real-time PCR (qPCR) is an advanced version of the conventional polymerase chain reaction (PCR) technique that enables the monitoring of DNA amplification in real-time.

How qPCR Works:

  1. Denaturation:

    • The double-stranded DNA is heated to high temperatures (94°C–98°C) to separate the strands.
  2. Annealing:

    • Primers bind to the target DNA sequence at a lower temperature (50°C–65°C).
  3. Extension:

    • DNA polymerase synthesizes a new DNA strand at an optimal temperature (72°C).
  4. Fluorescent Detection:

    • Fluorescent dyes or probes are incorporated into the reaction.
    • The increase in fluorescence signal is directly proportional to the amount of amplified DNA.

Key Properties of Real-Time PCR Assays

Real-time PCR assays are designed to provide both qualitative and quantitative information about the target DNA sequence. The following are the key properties of qPCR:

1. Incorporation of Dyes that Bind Double-Stranded DNA

  • Real-time PCR uses fluorescent dyes such as SYBR Green or EvaGreen to bind double-stranded DNA.
  • When the dye binds to the amplified DNA, it emits fluorescence, which increases as the DNA amplification progresses.
  • The fluorescence signal is monitored in real-time, providing a direct measure of DNA concentration.

2. Use of Internal Hydrolysis Probes

  • Hydrolysis probes such as TaqMan® probes are often used in qPCR for higher specificity.
  • These probes consist of a fluorescent reporter dye and a quencher dye.
  • During amplification, the probe is cleaved by the DNA polymerase, releasing the reporter dye and generating a measurable fluorescence signal.

3. Interpretation of Results as Either Plus/Minus or Quantitative

  • Real-time PCR can provide two types of results:
    • Qualitative: Determines the presence or absence of a target sequence (plus/minus result).
    • Quantitative: Measures the starting amount of DNA or RNA by comparing fluorescence signals to a standard curve.
  • This flexibility makes real-time PCR suitable for both diagnostic and research applications.

4. Single-Temperature Amplification with No Specialized Equipment

This statement is incorrect for real-time PCR because:

  • Real-time PCR requires thermal cycling to enable denaturation, annealing, and extension at different temperatures.
  • It also requires specialized real-time PCR machines with optical systems to detect and measure fluorescence.
  • Techniques such as Loop-mediated Isothermal Amplification (LAMP) can be performed at a single temperature, but real-time PCR relies on thermal cycling.

Why Option (C) is Incorrect

Real-time PCR assays cannot be performed at a single temperature because:

  • Each step of the PCR cycle (denaturation, annealing, extension) requires different temperatures for optimal activity.
  • The process depends on the thermal stability of the DNA polymerase and proper primer binding.
  • Specialized qPCR instruments with precise thermal cycling and fluorescence detection capabilities are essential for accurate results.

Explanation of Why Other Options Are Correct

(A) Incorporate dyes that bind double-stranded DNA

✅ Correct — SYBR Green and similar dyes are essential for monitoring DNA amplification in real-time.


(B) Incorporate an internal hydrolysis probe

✅ Correct — TaqMan® probes and other hydrolysis probes increase specificity and enable multiplexing in qPCR assays.


(D) Be interpreted as a plus/minus result or as a quantitative result

✅ Correct — Real-time PCR can provide both qualitative and quantitative data, depending on the experimental setup.


Advantages of Real-Time PCR Assays

1. High Sensitivity and Specificity:

  • Capable of detecting low-abundance DNA targets.
  • Sequence-specific probes ensure accurate detection.

2. Fast and Efficient:

  • Real-time monitoring allows for shorter reaction times.
  • Results can be obtained within 30–90 minutes.

3. Quantitative Capability:

  • Enables measurement of starting template concentration.
  • Useful for gene expression analysis and viral load quantification.

4. Multiplexing Potential:

  • Multiple target sequences can be amplified and detected simultaneously.
  • Reduces time and reagent costs.

Challenges of Real-Time PCR Assays

  1. Risk of Contamination:

    • Contaminants can generate false positives.
    • Proper lab handling and negative controls reduce this risk.
  2. Primer and Probe Design:

    • Poorly designed primers or probes may lead to non-specific amplification.
    • Optimal design ensures high specificity and efficiency.
  3. Instrument Sensitivity:

    • Real-time PCR machines require precise calibration.
    • Sensitivity varies among different instruments.

Applications of Real-Time PCR

🦠 1. Clinical Diagnostics:

  • Detecting pathogens (e.g., SARS-CoV-2, HIV).
  • Identifying genetic mutations associated with diseases.

🧪 2. Genetic Research:

  • Gene expression profiling.
  • SNP genotyping.

🧬 3. Forensic Science:

  • DNA fingerprinting.
  • Human identification from biological samples.

🌿 4. Agricultural and Environmental Studies:

  • Detection of genetically modified organisms (GMOs).
  • Monitoring microbial populations in soil and water.

Comparison of Real-Time PCR with Conventional PCR

Feature Real-Time PCR (qPCR) Conventional PCR
Detection Real-time fluorescence End-point gel electrophoresis
Quantification Yes No
Sensitivity High Moderate
Specificity High (with probes) Moderate
Instrument Requirement Specialized thermal cycler Standard thermal cycler

Conclusion

Real-time PCR (qPCR) is a highly sensitive and specific technique that enables real-time monitoring of DNA amplification. Its ability to provide both qualitative and quantitative results makes it ideal for clinical diagnostics, research, and forensic applications. The correct answer is (C) Be performed at a single temperature with no specialized instrumentation required because real-time PCR relies on thermal cycling and fluorescence detection, which require specialized equipment and temperature control. Understanding the key properties of real-time PCR helps optimize experimental design and ensures accurate and reproducible results.

77 Comments
  • Akshay mahawar
    March 16, 2025

    Done

  • Suman bhakar
    March 17, 2025

    Ok sir

  • Ujjwal
    March 19, 2025

    Done

  • Parul
    March 21, 2025

    Done easily sir..

  • Abhilasha
    March 25, 2025

    Done

  • Nisha
    March 27, 2025

    Done

  • karishma don
    August 24, 2025

    real time pcr requires thermal cycles to conduct denaturation, annealing and extension at different temperatures so option c is incorrect

  • Khushi Agarwal
    August 24, 2025

    Option c is correct
    Be performed at a single temperature with no specialized instrumentation required.

  • Avni
    August 24, 2025

    The correct answer is (C) Be performed at a single temperature with no specialized instrumentation required

  • Soniya Shekhawat
    August 24, 2025

    In this PCR have a following step being Denaturation , Annealing ,extension acquired different different temperature for optimum activity so option C is incorrect.

  • Neelam Sharma
    August 24, 2025

    Be performed at single temperature with no specialized instrumentation required

  • AKANKSHA RAJPUT
    August 24, 2025

    Option c is correct
    Be performed at a single temperature with no specialized instrumentation required

  • Khushi Pareek
    August 24, 2025

    For pcr different temperature is needed in different steps

  • Divya rani
    August 24, 2025

    C is wrong because we need different temperature conditions for PCR at different level or phase

  • Roopal Sharma
    August 24, 2025

    Option c is correct be performed at specialized temperature and with special instrument

  • Priyanka Choudhary
    August 24, 2025

    Be performed at a single temperature with no specialized instrumentation required will be right answer

    • Neha Yadav
      August 24, 2025

      Be performed at a single temperature with no specialized instrumentation required is not the property of real – time PCR assay

  • Dipti Sharma
    August 24, 2025

    (C) Be performed at a single temperature with no specialized instrumentation required.

  • anjani sharma
    August 24, 2025

    Real time PCR cannot be perform in same temperature as in PCR ( denaturation, annealing, extension) they all require different different temperature for amplification of DNA

  • MOHIT AKHAND
    August 24, 2025

    Done sir ✅

  • Mansukh Kapoor
    August 24, 2025

    The correct answer is option 3rd
    It is performed at a single temperature with no specialized instrumentation required this statement is not correct for rtPCR

  • Tanvi Panwar
    August 24, 2025

    Be performed at single temperature with no specialised instrumentation.

  • Heena Mahlawat
    August 24, 2025

    Pcr performed at varying temperatures for different steps

  • Arushi Saini
    August 24, 2025

    Real time PCR run on thermal cycling for denaturation anneling and extention

  • Aakanksha Sharma
    August 24, 2025

    At single temperature with no specialized instrument is wrong

  • Bharti Yadav
    August 24, 2025

    Be performed at a single temperature with no specialized instrumentation required.
    Real time PCR cannot be performed at single temperature as it requires different temperatures at denaturation, annealing, extension .

  • Sneha Kumawat
    August 24, 2025

    Be performed at single temperature with no specialised intrumentation require
    Different different temperature for denaturation, annealing and extation

  • Santosh Saini
    August 24, 2025

    Be performed at single temperature with no specialized instrumentation required , Real time PCR cannot be performed at single temperature, it requires different temperatures for different steps

  • Swati Choudhary
    August 24, 2025

    option 3rd is right

  • Mitali saini
    August 25, 2025

    The correct answer is (C) Be performed at a single temperature with no specialized instrumentation required.

  • Ayush Dubey
    August 25, 2025

    Be performed at a single temperature with no specialized instrumentation required.

  • Anjali
    August 25, 2025

    Be performed at a single temperature with no specialized instrumentation required. So c is correct

  • Dharmpal Swami
    August 25, 2025

    For RT-PCR required different types of temprature at different step of pcr

  • Surbhi Rajawat
    August 25, 2025

    Incorrect option is C. Because be it any PCR we will need specific temperature at all cycles

  • shruti sharma
    August 25, 2025

    C is incorrect Be performed at a single temperature with no specialized instrumentation required

  • Khushi Agarwal
    August 25, 2025

    Option c is wrong here about real time pcr
    Be performed at a single temperature with no specialized instrumentation required

  • Nilofar Khan
    August 25, 2025

    correct answer is (C)
    performed at a single temperature with no specialized instrumentation required

  • Pallavi Ghangas
    August 25, 2025

    Qpcr required specialised instrument and cannot be performed at single temperature

  • Payal Gaur
    August 26, 2025

    Option c because in realtime pcr specific temperature in any cycle and probe used for detection like SYBR and Taqman probe

  • Vanshika Sharma
    August 26, 2025

    Ans is c performed at a single temp with no specialzed instrumentation req

  • Rishita
    August 26, 2025

    Opt c

  • Monika jangid
    August 26, 2025

    Ans c performed at a single temp with no specialized instrumentation req

  • Minal Sethi
    August 26, 2025

    it is performed at different temperatures for different steps and requires a specialized instrument to monitor the amplification in real-time

  • Shivani
    August 26, 2025

    (C) Be performed at a single temperature with no specialized instrumentation required.

  • Aafreen Khan
    August 26, 2025

    Incorrect option is C. Because in Real-time PCR requires thermal cycling to enable denaturation, annealing, and extension at different temperatures.

  • Aman Choudhary
    August 26, 2025

    Option C is correct
    In Real – time PCR different temperatures are given in different steps

  • Seema
    August 26, 2025

    C)option is not a property of real time pcr.

  • Alec
    August 26, 2025

    option c be performed at single temperature with no specialized instrumentation requirement.

  • Surendra Doodi
    August 26, 2025

    Be performed at a single temperature with no specialized instrumentation required.

  • Muskan singodiya
    August 26, 2025

    Option c

  • Priya dhakad
    August 27, 2025

    performed at a single temp with no specialized instrumentation requirement.

  • Rakesh Dhaka
    August 27, 2025

    Option c is correct

  • Bhawna Choudhary
    August 27, 2025

    Option C is incorrect

  • Mohini
    August 27, 2025

    C)Be performed at a single temperature, and no special instrument is required.

  • Komal Sharma
    August 27, 2025

    The correct answer is (C) Be performed at a single temperature with no specialized instrumentation required because real-time PCR relies on thermal cycling and fluorescence detection, which require specialized equipment and temperature control. Understanding the key properties of real-time PCR helps optimize experimental design and ensures accurate and reproducible results.

  • Sakshi Kanwar
    August 27, 2025

    Real time PCR work on thermal cycling and work on single temperature with no specialized instrumentation required

  • Sakshi yadav
    August 27, 2025

    Be performed at a single temp. with no specialized instrumentation required.

  • Varsha Tatla
    August 28, 2025

    Option c will be correct

  • Kanica Sunwalka
    August 28, 2025

    diff temp r used for D A E

  • Deepika Sheoran
    August 28, 2025

    Option C because RT PCR required different types of temperature at different step of PCR. Single temperature with no specialized instrumentation on required..

  • Khushi Vaishnav
    August 28, 2025

    Be performed at a single temperature with no specialized instrumentation required.

  • Devika
    August 29, 2025

    C .Be performed at single temperature no specialized instrumental required

  • Parul Yadav
    August 29, 2025

    PCR assays cannot be performed at single temperature.

  • Simran Saini
    August 29, 2025

    Be performed at single temperature with no specialized instrumentation required.

  • Asha Gurzzar
    August 30, 2025

    C is incorrect be performed at single temperature with no specialized instrumentation required

  • Aartii sharma
    August 30, 2025

    Option c is incorrect be performed at single temprature with no specialized instrumentation required

  • Khushi Singh
    August 30, 2025

    Done

  • Anisha Beniwal
    August 30, 2025

    Be performed at a single temperature with no specialized instrumentation required.

  • Neeraj Sharma
    August 30, 2025

    PCR cannot be done in single temperature hence option C

  • Kajal
    August 30, 2025

    Option C is correct as in RT -PCR more than one temperature and specialised instrumentation is required

  • Sonam Saini
    August 30, 2025

    This is the right option because RT-PCR requires higher temperatures and special equipment

  • Kirti Agarwal
    August 31, 2025

    Opt c

  • Pooja Sharma Sharma
    August 31, 2025

    Be performed at a single temperature with no specialized instrumentation required it is not a property of real time PCR

  • Palak Sharma
    August 31, 2025

    Option C because RT PCR required different types of temperature at different step of PCR.

  • Kajal
    August 31, 2025

    correct answer is C- Be performed at a single temperature with no specialized instrumentation required

  • Konika Naval
    August 31, 2025

    performed at a single temperature with no specialized instrumentation required.

  • Muskan Yadav
    September 5, 2025

    Be performed at a single temperature with no specialized instrumentation required.

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