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  • ‹ Back to In-Fusion Cloning and competition
  • In-Fusion Snap Assembly vs. GeneArt Gibson Assembly HiFi
  • In-Fusion Snap Assembly vs. NEBuilder HiFi
  • Sequence accuracy in seamless cloning
  • Choosing a seamless cloning method
  • Improving background over Gibson Assembly
  • A successful alternative to ligation cloning
  • Single- and multiple-insert cloning
  • Easy cloning into lentiviral vectors
  • Outperforming TOPO cloning
In-Fusion Cloning Product info: In-Fusion Snap Assembly kits
Learn more about choosing a seamless cloning method. Choosing a seamless cloning method
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Home › Learning centers › Cloning › In-Fusion Cloning general information › In-Fusion Cloning and competition › Improving background over Gibson Assembly

In-Fusion Cloning general information

  • In-Fusion Cloning overview
  • In-Fusion Cloning guide
  • In-Fusion Cloning and competition
    • In-Fusion Snap Assembly vs. GeneArt Gibson Assembly HiFi
    • In-Fusion Snap Assembly vs. NEBuilder HiFi
    • Sequence accuracy in seamless cloning
    • Choosing a seamless cloning method
    • Improving background over Gibson Assembly
    • A successful alternative to ligation cloning
    • Single- and multiple-insert cloning
    • Easy cloning into lentiviral vectors
    • Outperforming TOPO cloning
  • In-Fusion Cloning citations
  • Stellar Competent Cells product overview and performance data
  • EcoDry reagents and sustainability
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In-Fusion Cloning Product info: In-Fusion Snap Assembly kits
Learn more about choosing a seamless cloning method. Choosing a seamless cloning method
In-Fusion Cloning Interest Sign up for In-Fusion updates and promotions
Tech Note

In-Fusion Cloning: improving background over Gibson Assembly

Unmatched performance for precise, seamless cloning

  • Fast, single-tube cloning protocol
  • High cloning accuracy for single and multiple fragments
  • Low background—get the right clone every time
Introduction Results Conclusions References

Introduction  

Fast, easy cloning without ligation

In-Fusion Cloning kits allow ligation-independent, directional cloning of PCR products into any vector, at any site of linearization (Figure 1). The cloning reaction takes as little as 15 minutes and enables you to build even more complicated constructs in just one step (Chen et al. 2009, Lestini et al. 2013).

Figure 1. In-Fusion Cloning protocol

Figure 1. In-Fusion Cloning protocol.

How does In-Fusion technology compare with another cloning system?

At first glance, In-Fusion Cloning technology has much in common with a method developed by Gibson and colleagues (Gibson et al. 2009). Both systems:

  • Provide options that eliminate restriction digest steps
  • Have relatively fast, simple protocols with just a few steps and reagents
  • Are seamless—that is, they don't add extra bases between joined fragments
  • Allow for multiple DNA fragments to be cloned in a single reaction

However, as we've previously touched on, there are critical differences in workflow and performance between seamless cloning systems. In-Fusion technology has a faster protocol, provides lower background, and reliably demonstrates higher cloning accuracy—especially where more complex cloning projects and high-throughput workflows are concerned. Under more challenging conditions and shorter reaction times, Gibson's system demonstrates problematically high levels of background, something it has in common with more traditional ligation and TA cloning methods.

Results  

Putting In-Fusion technology to the test

In-Fusion Cloning technology was put up against Gibson's method in side-by-side experiments. In all instances, the cloning vector used pUC19, linearized with BamHI. Each cloning system was tested under the recommended conditions of its own cloning protocol, and additional testing was done with Gibson's enzyme mix for multiple-insert cloning. Gibson's method states the incubation time should be increased from 15 minutes to 60 minutes for four-fragment (three-insert) assemblies. In an effort to make a more direct comparison with In-Fusion Cloning, this multiple-insert experiment with Gibson's enzyme mix was also run at the shorter In-Fusion Cloning reaction time. All cloning reactions were then transformed into Stellar Competent Cells, and 1/10 of each reaction was plated. Colony counts and clone sequence verification were used to evaluate the results of each reaction. Sequencing data is the most precise measurement of cloning accuracy, and thus gives a much more informative analysis than simply comparing the total number of colonies. Results are shown below for both multiple-insert (Table I) and single-insert cloning (Table II).

In-Fusion Cloning Gibson's method
(short incubation)
Gibson's method
(long incubation)
Conditions Incubate at 50°C for 15 min Incubate at 50°C for 15 min Incubate at 50°C for 60 min
Vector + inserts 89 colonies 111 colonies 392 colonies
Negative control (no insert) 1 colony 39 colonies 78 colonies
Cloning accuracy 100% (26/26 correct colonies) 19% (5/26 correct colonies) 73% (19/26 correct colonies)

Table I. Results for multiple-insert cloning. Three fragments (in addition to the linearized vector backbone of 2.7 kb) were used as inserts in each reaction: MBP (1.1 kb), PROF12 (0.7 kb), and AcGFP1 (0.7 kb). Total finished plasmid size was 5.2 kb.

In-Fusion Cloning Gibson's method
Conditions Incubate at 50°C for 15 min Incubate at 50°C for 15 min
Vector + insert 635 colonies 401 colonies
Negative control (no insert) 1 colony 39 colonies
Cloning accuracy 100% (26/26 correct colonies) 96% (25/26 correct colonies)

Table II. Results for single-insert cloning. One fragment (MBP; 1.1 kb) was used as an insert in each reaction with a linearized vector backbone (2.7 kb). Total finished plasmid size was 3.8 kb.

Accuracy counts—get the right clone, every time

For single-insert reactions, In-Fusion technology showed the expected high level of cloning accuracy. Gibson's technology showed a comparable level of accuracy when using In-Fusion Cloning conditions. However, the number of colonies seen in the negative control for Gibson's method was far higher than with In-Fusion Cloning and points to a much more precise, reliable cloning mechanism when using the In-Fusion enzyme.

The background observed when using In-Fusion technology was consistently lower than that observed when using Gibson's method, regardless of the number of inserts or reaction conditions. This difference was especially striking with multiple-insert cloning, where the total number of colonies are generally reduced and false positives present a larger problem. In-Fusion Cloning's high accuracy shines under the demands of multiple-fragment cloning—the negative control reaction gave an exceptionally low colony count, and the cloning accuracy reached 100%. In contrast, Gibson's cloning method was found lacking whether it was performed using In-Fusion Cloning's conditions, or Gibson's recommended conditions (which take four times as long).

Conclusions  

In-Fusion Cloning delivers where the competition falls short

While both cloning methods provided good accuracy with single-fragment cloning, In-Fusion technology was the clear winner in terms of background, speed, and overall accuracy—especially when more complicated cloning projects were considered. In providing such a high level of cloning accuracy, In-Fusion technology reveals that the real measure of success is not in sheer numbers of colonies, but instead in the number of correct, error-free colonies. Researchers should be able to expect the right clone every time, and In-Fusion Cloning makes that possible.

We have also observed that In-Fusion technology has an additional advantage over Gibson's method with regard to maximum vector size (46 kb cosmid vs 20.5 kb plasmid). This additional flexibility means one In-Fusion reaction can take the place of a packaging system, quickly and accurately assembling a large vector that would otherwise be too unwieldy for cloning.

In-Fusion bundles provide everything needed for a cloning experiment, including a high-fidelity PCR polymerase, the cloning master mix, competent cells, and a kit to treat PCR products prior to cloning. Where the competing technology provides the bare minimum, In-Fusion Cloning kits fully equip the researcher for all steps, ensuring a high out-of-the-box success rate and allowing a direct comparison between the price per reaction with the true total cost of the experiment.

References  

Chen, C. G., Fabri, L. J., Wilson, M. J. & Panousis, C. One-step zero-background IgG reformatting of phage-displayed antibody fragments enabling rapid and high-throughput lead identification. Nucleic Acids Res. 42, e26–e26 (2014).

Gibson, D. G. et al. Enzymatic assembly of DNA molecules up to several hundred kilobases. Nat. Methods 6, 343–345 (2009).

Lestini, R. et al. Intracellular dynamics of archaeal FANCM homologue Hef in response to halted DNA replication. Nucleic Acids Res. 41, 10358–70 (2013).

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In-Fusion Snap Assembly Master Mix is designed for fast, directional cloning of one or more fragments of DNA into any vector. This proprietary master mix fuses DNA fragments (e.g., PCR-generated sequences and linearized vectors) efficiently and precisely by recognizing a 15-bp overlap at their ends. This 15-bp overlap can be engineered into the primers designed for PCR amplification of the desired sequences. In Fusion Snap Assembly Master Mix offers high efficiency, even for applications that can be challenging, including the cloning of long fragments, short oligonucleotides, and multiple fragments.

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Our products are to be used for Research Use Only. They may not be used for any other purpose, including, but not limited to, use in humans, therapeutic or diagnostic use, or commercial use of any kind. Our products may not be transferred to third parties, resold, modified for resale, or used to manufacture commercial products or to provide a service to third parties without our prior written approval.

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Performance comparison between In-Fusion Snap Assembly and NEBuilder HiFi using inverse PCR.

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Performance comparison between In-Fusion Snap Assembly and NEBuilder HiFi using inverse PCR. A single 3.8-kb insert (Panel A) or a 34.2-kb adenovirus insert (Panel B) was cloned into a 2.7-kb vector which was linearized via inverse PCR. These cloning reactions were performed in triplicate with both In-Fusion Snap Assembly and NEBuilder HiFi. Primers were designed according to the manufacturers' specifications. After transformation and plating, 20 colonies from each replicate were analyzed by Sanger sequencing (for the 3.8-kb insert) or colony PCR (for the adenovirus insert) to determine the cloning accuracy. In-Fusion Snap Assembly yielded 2X more colonies than NEBuilder HiFi.

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638944 In-Fusion® Snap Assembly Master Mix 1,000 Rxns Inquire for Quotation *

In-Fusion Snap Assembly Master Mix is designed for fast, directional cloning of one or more fragments of DNA into any vector. This proprietary master mix fuses DNA fragments (e.g., PCR-generated sequences and linearized vectors) efficiently and precisely by recognizing a 15-bp overlap at their ends. This 15-bp overlap can be engineered into the primers designed for PCR amplification of the desired sequences. In Fusion Snap Assembly Master Mix offers high efficiency, even for applications that can be challenging, including the cloning of long fragments, short oligonucleotides, and multiple fragments.

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Our products are to be used for Research Use Only. They may not be used for any other purpose, including, but not limited to, use in humans, therapeutic or diagnostic use, or commercial use of any kind. Our products may not be transferred to third parties, resold, modified for resale, or used to manufacture commercial products or to provide a service to third parties without our prior written approval.

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Performance comparison between In-Fusion Snap Assembly and NEBuilder HiFi using inverse PCR.

Performance comparison between In-Fusion Snap Assembly and NEBuilder HiFi using inverse PCR.

Performance comparison between In-Fusion Snap Assembly and NEBuilder HiFi using inverse PCR. A single 3.8-kb insert (Panel A) or a 34.2-kb adenovirus insert (Panel B) was cloned into a 2.7-kb vector which was linearized via inverse PCR. These cloning reactions were performed in triplicate with both In-Fusion Snap Assembly and NEBuilder HiFi. Primers were designed according to the manufacturers' specifications. After transformation and plating, 20 colonies from each replicate were analyzed by Sanger sequencing (for the 3.8-kb insert) or colony PCR (for the adenovirus insert) to determine the cloning accuracy. In-Fusion Snap Assembly yielded 2X more colonies than NEBuilder HiFi.

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638944: In-Fusion Snap Assembly Master Mix

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638945 In-Fusion® Snap Assembly Starter Bundle 10 Rxns USD $312.00

License Statement

ID Number  
M54 This product is covered by the claims of U.S. Patent Nos. 7,704,713 and its foreign counterparts. 

In-Fusion Snap Assembly Master Mix enables high-efficiency, high-fidelity, directional cloning of one or more PCR fragments into any vector. In addition to the cloning kit, this package includes:

- A NucleoSpin Gel and PCR Clean-Up kit: This kit is suitable for gel extraction as well as PCR purification. Kits are provided with individual purification columns.

- Stellar Competent Cells: High-efficiency competent cells are essential to the success of In-Fusion Cloning. An E. coli HST08 strain is included that provides high transformation efficiency (greater than 5 x 10^8 cfu/µg) and complements the efficiency of all In-Fusion Snap Assembly kits. Cells are provided in 100-μl aliquots in individual tubes.

- PrimeSTAR Max DNA Polymerase: This convenient 2X liquid master mix offers exceptionally accurate, efficient, and fast DNA amplification. The premix contains dNTPs and an optimized buffer, allows rapid setup of PCR reactions, and facilitates successful cloning. The polymerase master mix is provided in 625-μl aliquots.

Notice to purchaser

Our products are to be used for Research Use Only. They may not be used for any other purpose, including, but not limited to, use in humans, therapeutic or diagnostic use, or commercial use of any kind. Our products may not be transferred to third parties, resold, modified for resale, or used to manufacture commercial products or to provide a service to third parties without our prior written approval.

Documents Components Image Data

Back

Performance comparison between In-Fusion Snap Assembly and NEBuilder HiFi using inverse PCR.

Performance comparison between In-Fusion Snap Assembly and NEBuilder HiFi using inverse PCR.

Performance comparison between In-Fusion Snap Assembly and NEBuilder HiFi using inverse PCR. A single 3.8-kb insert (Panel A) or a 34.2-kb adenovirus insert (Panel B) was cloned into a 2.7-kb vector which was linearized via inverse PCR. These cloning reactions were performed in triplicate with both In-Fusion Snap Assembly and NEBuilder HiFi. Primers were designed according to the manufacturers' specifications. After transformation and plating, 20 colonies from each replicate were analyzed by Sanger sequencing (for the 3.8-kb insert) or colony PCR (for the adenovirus insert) to determine the cloning accuracy. In-Fusion Snap Assembly yielded 2X more colonies than NEBuilder HiFi.

Back

The In-Fusion cloning protocol

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638945: In-Fusion Snap Assembly Starter Bundle

638945: In-Fusion Snap Assembly Starter Bundle
638946 In-Fusion® Snap Assembly Value Bundle 50 Rxns USD $1157.00

License Statement

ID Number  
M54 This product is covered by the claims of U.S. Patent Nos. 7,704,713 and its foreign counterparts. 

In-Fusion Snap Assembly Master Mix enables high-efficiency, high-fidelity, directional cloning of one or more PCR fragments into any vector. In addition to the cloning kit, this package includes:

- A NucleoSpin Gel and PCR Clean-Up kit: This kit is suitable for gel extraction as well as PCR purification. Kits are provided with individual purification columns.

- Stellar Competent Cells: High-efficiency competent cells are essential to the success of In-Fusion Cloning. An E. coli HST08 strain is included that provides high transformation efficiency (greater than 5 x 10^8 cfu/µg) and complements the efficiency of all In-Fusion Snap Assembly kits. Cells are provided in 100-μl aliquots in individual tubes.

- PrimeSTAR Max DNA Polymerase: This convenient 2X liquid master mix offers exceptionally accurate, efficient, and fast DNA amplification. The premix contains dNTPs and an optimized buffer, allows rapid setup of PCR reactions, and facilitates successful cloning. The polymerase master mix is provided in 625-μl aliquots.

Notice to purchaser

Our products are to be used for Research Use Only. They may not be used for any other purpose, including, but not limited to, use in humans, therapeutic or diagnostic use, or commercial use of any kind. Our products may not be transferred to third parties, resold, modified for resale, or used to manufacture commercial products or to provide a service to third parties without our prior written approval.

Documents Components Image Data

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638946: In-Fusion Snap Assembly Value Bundle

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Performance comparison between In-Fusion Snap Assembly and NEBuilder HiFi using inverse PCR.

Performance comparison between In-Fusion Snap Assembly and NEBuilder HiFi using inverse PCR.

Performance comparison between In-Fusion Snap Assembly and NEBuilder HiFi using inverse PCR. A single 3.8-kb insert (Panel A) or a 34.2-kb adenovirus insert (Panel B) was cloned into a 2.7-kb vector which was linearized via inverse PCR. These cloning reactions were performed in triplicate with both In-Fusion Snap Assembly and NEBuilder HiFi. Primers were designed according to the manufacturers' specifications. After transformation and plating, 20 colonies from each replicate were analyzed by Sanger sequencing (for the 3.8-kb insert) or colony PCR (for the adenovirus insert) to determine the cloning accuracy. In-Fusion Snap Assembly yielded 2X more colonies than NEBuilder HiFi.

Back

The In-Fusion cloning protocol

The In-Fusion cloning protocol

The In-Fusion cloning protocol.

638947 In-Fusion® Snap Assembly Master Mix 10 Rxns USD $188.00

In-Fusion Snap Assembly Master Mix is designed for fast, directional cloning of one or more fragments of DNA into any vector. This proprietary master mix fuses DNA fragments (e.g., PCR-generated sequences and linearized vectors) efficiently and precisely by recognizing a 15-bp overlap at their ends. This 15-bp overlap can be engineered into the primers designed for PCR amplification of the desired sequences. In Fusion Snap Assembly Master Mix offers high efficiency, even for applications that can be challenging, including the cloning of long fragments, short oligonucleotides, and multiple fragments.

Notice to purchaser

Our products are to be used for Research Use Only. They may not be used for any other purpose, including, but not limited to, use in humans, therapeutic or diagnostic use, or commercial use of any kind. Our products may not be transferred to third parties, resold, modified for resale, or used to manufacture commercial products or to provide a service to third parties without our prior written approval.

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Performance comparison between In-Fusion Snap Assembly and NEBuilder HiFi using inverse PCR.

Performance comparison between In-Fusion Snap Assembly and NEBuilder HiFi using inverse PCR.

Performance comparison between In-Fusion Snap Assembly and NEBuilder HiFi using inverse PCR. A single 3.8-kb insert (Panel A) or a 34.2-kb adenovirus insert (Panel B) was cloned into a 2.7-kb vector which was linearized via inverse PCR. These cloning reactions were performed in triplicate with both In-Fusion Snap Assembly and NEBuilder HiFi. Primers were designed according to the manufacturers' specifications. After transformation and plating, 20 colonies from each replicate were analyzed by Sanger sequencing (for the 3.8-kb insert) or colony PCR (for the adenovirus insert) to determine the cloning accuracy. In-Fusion Snap Assembly yielded 2X more colonies than NEBuilder HiFi.

Back

The In-Fusion cloning protocol

The In-Fusion cloning protocol

The In-Fusion cloning protocol.

638948 In-Fusion® Snap Assembly Master Mix 50 Rxns USD $750.00

In-Fusion Snap Assembly Master Mix is designed for fast, directional cloning of one or more fragments of DNA into any vector. This proprietary master mix fuses DNA fragments (e.g., PCR-generated sequences and linearized vectors) efficiently and precisely by recognizing a 15-bp overlap at their ends. This 15-bp overlap can be engineered into the primers designed for PCR amplification of the desired sequences. In Fusion Snap Assembly Master Mix offers high efficiency, even for applications that can be challenging, including the cloning of long fragments, short oligonucleotides, and multiple fragments.

Notice to purchaser

Our products are to be used for Research Use Only. They may not be used for any other purpose, including, but not limited to, use in humans, therapeutic or diagnostic use, or commercial use of any kind. Our products may not be transferred to third parties, resold, modified for resale, or used to manufacture commercial products or to provide a service to third parties without our prior written approval.

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Back

638948: In-Fusion Snap Assembly Master Mix

638948: In-Fusion Snap Assembly Master Mix

Back

Performance comparison between In-Fusion Snap Assembly and NEBuilder HiFi using inverse PCR.

Performance comparison between In-Fusion Snap Assembly and NEBuilder HiFi using inverse PCR.

Performance comparison between In-Fusion Snap Assembly and NEBuilder HiFi using inverse PCR. A single 3.8-kb insert (Panel A) or a 34.2-kb adenovirus insert (Panel B) was cloned into a 2.7-kb vector which was linearized via inverse PCR. These cloning reactions were performed in triplicate with both In-Fusion Snap Assembly and NEBuilder HiFi. Primers were designed according to the manufacturers' specifications. After transformation and plating, 20 colonies from each replicate were analyzed by Sanger sequencing (for the 3.8-kb insert) or colony PCR (for the adenovirus insert) to determine the cloning accuracy. In-Fusion Snap Assembly yielded 2X more colonies than NEBuilder HiFi.

Back

The In-Fusion cloning protocol

The In-Fusion cloning protocol

The In-Fusion cloning protocol.

638949 In-Fusion® Snap Assembly Master Mix 250 Rxns USD $2979.00

In-Fusion Snap Assembly Master Mix is designed for fast, directional cloning of one or more fragments of DNA into any vector. This proprietary master mix fuses DNA fragments (e.g., PCR-generated sequences and linearized vectors) efficiently and precisely by recognizing a 15-bp overlap at their ends. This 15-bp overlap can be engineered into the primers designed for PCR amplification of the desired sequences. In Fusion Snap Assembly Master Mix offers high efficiency, even for applications that can be challenging, including the cloning of long fragments, short oligonucleotides, and multiple fragments.

Notice to purchaser

Our products are to be used for Research Use Only. They may not be used for any other purpose, including, but not limited to, use in humans, therapeutic or diagnostic use, or commercial use of any kind. Our products may not be transferred to third parties, resold, modified for resale, or used to manufacture commercial products or to provide a service to third parties without our prior written approval.

Documents Components You May Also Like Image Data

Back

Performance comparison between In-Fusion Snap Assembly and NEBuilder HiFi using inverse PCR.

Performance comparison between In-Fusion Snap Assembly and NEBuilder HiFi using inverse PCR.

Performance comparison between In-Fusion Snap Assembly and NEBuilder HiFi using inverse PCR. A single 3.8-kb insert (Panel A) or a 34.2-kb adenovirus insert (Panel B) was cloned into a 2.7-kb vector which was linearized via inverse PCR. These cloning reactions were performed in triplicate with both In-Fusion Snap Assembly and NEBuilder HiFi. Primers were designed according to the manufacturers' specifications. After transformation and plating, 20 colonies from each replicate were analyzed by Sanger sequencing (for the 3.8-kb insert) or colony PCR (for the adenovirus insert) to determine the cloning accuracy. In-Fusion Snap Assembly yielded 2X more colonies than NEBuilder HiFi.

Back

638949: In-Fusion Snap Assembly Master Mix

638949: In-Fusion Snap Assembly Master Mix

Back

The In-Fusion cloning protocol

The In-Fusion cloning protocol

The In-Fusion cloning protocol.

*You must be logged in to a Purchasing Account in order to purchase these products online, since the purchase of these products may be restricted depending on your account type. Researchers at not-for-profit accounts receive a limited use license with their purchase of the product. Researchers at for-profit accounts must obtain a license prior to purchase. For details please contact licensing@takarabio.com.


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Takara Bio USA, Inc. provides kits, reagents, instruments, and services that help researchers explore questions about gene discovery, regulation, and function. As a member of the Takara Bio Group, Takara Bio USA is part of a company that holds a leadership position in the global market and is committed to improving the human condition through biotechnology. Our mission is to develop high-quality innovative tools and services to accelerate discovery.

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