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pbluescript ii sk  (Addgene inc)


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    Structured Review

    Addgene inc pbluescript ii sk
    (A) A <t>pBluescript</t> II SK+ vector was chosen as a PCR template for amplifying the indicated lengths of fragments. Both PCR products, depicted in blue and red, were combined and assembled into the intact pBluescript II SK+ vector using SLIC techniques. The black lines represent the 15 bp complementary sequences of each product. (B) A schematic diagram of phosphodiester and phosphorothioate (PT) bonds used in the preparation of primer synthesis. (C) Primers for amplifying the two different regions of pBluescript II SK+ in (A) were modified with a 5’ end phosphate (P-15 mer-15 mer), a 5’ end phosphate together with five PTs (P-15 mer-5PT-10 mer), five PTs only (15 mer-5PT-10 mer), or were not modified (15 mer-15 mer). The orange braces represent the complementary sequences. (D) Transformation efficiencies were calculated by counting the number of colonies in triplicate experiments. 1×10 8 competent cells were used for transforming the mixture of 50 ng of each purified PCR product after undergoing SLIC experiments. Single asterisk; P-values lower than 0.05, double asterisk; lower than 0.01, triple asterisks; P-value lower than 0.001. All experiments were repeated three times. (E) Representative plates of (D) are shown. CFU; colony forming unit, Ctl; control, Lambda Exo; lambda exonuclease, T5 exo; T5 exonuclease.
    Pbluescript Ii Sk, supplied by Addgene inc, used in various techniques. Bioz Stars score: 93/100, based on 20 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/pbluescript ii sk/product/Addgene inc
    Average 93 stars, based on 20 article reviews
    pbluescript ii sk - by Bioz Stars, 2026-03
    93/100 stars

    Images

    1) Product Images from "DAPE cloning with modified primers for producing designated lengths of 3’ single-stranded ends in PCR products"

    Article Title: DAPE cloning with modified primers for producing designated lengths of 3’ single-stranded ends in PCR products

    Journal: PLOS ONE

    doi: 10.1371/journal.pone.0318015

    (A) A pBluescript II SK+ vector was chosen as a PCR template for amplifying the indicated lengths of fragments. Both PCR products, depicted in blue and red, were combined and assembled into the intact pBluescript II SK+ vector using SLIC techniques. The black lines represent the 15 bp complementary sequences of each product. (B) A schematic diagram of phosphodiester and phosphorothioate (PT) bonds used in the preparation of primer synthesis. (C) Primers for amplifying the two different regions of pBluescript II SK+ in (A) were modified with a 5’ end phosphate (P-15 mer-15 mer), a 5’ end phosphate together with five PTs (P-15 mer-5PT-10 mer), five PTs only (15 mer-5PT-10 mer), or were not modified (15 mer-15 mer). The orange braces represent the complementary sequences. (D) Transformation efficiencies were calculated by counting the number of colonies in triplicate experiments. 1×10 8 competent cells were used for transforming the mixture of 50 ng of each purified PCR product after undergoing SLIC experiments. Single asterisk; P-values lower than 0.05, double asterisk; lower than 0.01, triple asterisks; P-value lower than 0.001. All experiments were repeated three times. (E) Representative plates of (D) are shown. CFU; colony forming unit, Ctl; control, Lambda Exo; lambda exonuclease, T5 exo; T5 exonuclease.
    Figure Legend Snippet: (A) A pBluescript II SK+ vector was chosen as a PCR template for amplifying the indicated lengths of fragments. Both PCR products, depicted in blue and red, were combined and assembled into the intact pBluescript II SK+ vector using SLIC techniques. The black lines represent the 15 bp complementary sequences of each product. (B) A schematic diagram of phosphodiester and phosphorothioate (PT) bonds used in the preparation of primer synthesis. (C) Primers for amplifying the two different regions of pBluescript II SK+ in (A) were modified with a 5’ end phosphate (P-15 mer-15 mer), a 5’ end phosphate together with five PTs (P-15 mer-5PT-10 mer), five PTs only (15 mer-5PT-10 mer), or were not modified (15 mer-15 mer). The orange braces represent the complementary sequences. (D) Transformation efficiencies were calculated by counting the number of colonies in triplicate experiments. 1×10 8 competent cells were used for transforming the mixture of 50 ng of each purified PCR product after undergoing SLIC experiments. Single asterisk; P-values lower than 0.05, double asterisk; lower than 0.01, triple asterisks; P-value lower than 0.001. All experiments were repeated three times. (E) Representative plates of (D) are shown. CFU; colony forming unit, Ctl; control, Lambda Exo; lambda exonuclease, T5 exo; T5 exonuclease.

    Techniques Used: Plasmid Preparation, Modification, Transformation Assay, Purification, Control



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    Image Search Results


    (A) A pBluescript II SK+ vector was chosen as a PCR template for amplifying the indicated lengths of fragments. Both PCR products, depicted in blue and red, were combined and assembled into the intact pBluescript II SK+ vector using SLIC techniques. The black lines represent the 15 bp complementary sequences of each product. (B) A schematic diagram of phosphodiester and phosphorothioate (PT) bonds used in the preparation of primer synthesis. (C) Primers for amplifying the two different regions of pBluescript II SK+ in (A) were modified with a 5’ end phosphate (P-15 mer-15 mer), a 5’ end phosphate together with five PTs (P-15 mer-5PT-10 mer), five PTs only (15 mer-5PT-10 mer), or were not modified (15 mer-15 mer). The orange braces represent the complementary sequences. (D) Transformation efficiencies were calculated by counting the number of colonies in triplicate experiments. 1×10 8 competent cells were used for transforming the mixture of 50 ng of each purified PCR product after undergoing SLIC experiments. Single asterisk; P-values lower than 0.05, double asterisk; lower than 0.01, triple asterisks; P-value lower than 0.001. All experiments were repeated three times. (E) Representative plates of (D) are shown. CFU; colony forming unit, Ctl; control, Lambda Exo; lambda exonuclease, T5 exo; T5 exonuclease.

    Journal: PLOS ONE

    Article Title: DAPE cloning with modified primers for producing designated lengths of 3’ single-stranded ends in PCR products

    doi: 10.1371/journal.pone.0318015

    Figure Lengend Snippet: (A) A pBluescript II SK+ vector was chosen as a PCR template for amplifying the indicated lengths of fragments. Both PCR products, depicted in blue and red, were combined and assembled into the intact pBluescript II SK+ vector using SLIC techniques. The black lines represent the 15 bp complementary sequences of each product. (B) A schematic diagram of phosphodiester and phosphorothioate (PT) bonds used in the preparation of primer synthesis. (C) Primers for amplifying the two different regions of pBluescript II SK+ in (A) were modified with a 5’ end phosphate (P-15 mer-15 mer), a 5’ end phosphate together with five PTs (P-15 mer-5PT-10 mer), five PTs only (15 mer-5PT-10 mer), or were not modified (15 mer-15 mer). The orange braces represent the complementary sequences. (D) Transformation efficiencies were calculated by counting the number of colonies in triplicate experiments. 1×10 8 competent cells were used for transforming the mixture of 50 ng of each purified PCR product after undergoing SLIC experiments. Single asterisk; P-values lower than 0.05, double asterisk; lower than 0.01, triple asterisks; P-value lower than 0.001. All experiments were repeated three times. (E) Representative plates of (D) are shown. CFU; colony forming unit, Ctl; control, Lambda Exo; lambda exonuclease, T5 exo; T5 exonuclease.

    Article Snippet: 10 ng of pBluescript II SK+ was used as the PCR template. pX330-puro was a gift from Sandra Martha Gomes Dias (Addgene plasmid # 110403; http://n2t.net/addgene:110403 ; RRID:Addgene 110403).

    Techniques: Plasmid Preparation, Modification, Transformation Assay, Purification, Control