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pXST,一种用于 TA 克隆和钝端克隆的新型载体。

pXST, a novel vector for TA cloning and blunt-end cloning.

机构信息

Hainan Key Laboratory for Sustainable Utilization of Tropical Bioresources, Institute of Tropical Agriculture and Forestry, Hainan University, Haikou, 570228, China.

Institute of Tropical Bioscience and Biotechnology, Chinese Academy of Tropical Agricultural Sciences, Haikou, 570228, People's Republic of China.

出版信息

BMC Biotechnol. 2018 Jul 13;18(1):44. doi: 10.1186/s12896-018-0456-8.

Abstract

BACKGROUND

With the rapid development of sequencing technologies, increasing amount of genomic information has been accumulated. To clone genes for further functional studies in large scale, a cheap, fast and efficient cloning vector is desired.

RESULTS

A bifunctional vector pXST has been constructed. The pXST vector harbors a XcmI-ccdB-XcmI cassette and restriction site SmaI. Digestion the vector with XcmI generates a single thymidine (T) overhang at 3' end which facilitates TA cloning, and SmaI gives blunt end that enables the blunt-end ligation. Multiple products with various sizes were amplified from cassava genome by PCR and each PCR fragment was separately cloned into a pXST using TA cloning and blunt-end ligation methods. In general, the TA cloning gave higher transformation efficiency than blunt-end ligation for inserts with all different sizes, and the transformation efficiency significantly decreased with increasing size of inserts. The highest transformation efficiency (8.6 × 10 transformants/μg) was achieved when cloning 517 bp DNA fragment using TA cloning. No significant difference observed in the positive cloning efficiency between two ligation methods and the positive cloning efficiency could reach as high as 100% especially for small inserts (e.g. 517 and 957 base pairs).

CONCLUSIONS

We describe a simple and general method to construct a novel pXST vector. We confirm the feasibility of using pXST vector to clone PCR products amplified from cassava genome with both TA cloning and blunt-end ligation methods. The pXST plasmid has several advantages over many currently available vectors in that (1) it possesses XcmI-ccdB-XcmI cassette and restriction site SmaI, enabling both TA cloning and blunt-end ligation. (2) it allows direct selection of positive recombinant plasmids in Escherichia coli through disruption of the ccdB gene. (3) it improves positive cloning efficiency by introducing the ccdB gene, reducing the possibility of self-ligation from insufficient digested plasmids. (4) it could be used by high performance and cost-effective cloning methods. Therefore, this dual function vector would offer flexible alternatives for gene cloning experiments to researchers.

摘要

背景

随着测序技术的快速发展,积累了越来越多的基因组信息。为了大规模克隆基因进行功能研究,需要一种廉价、快速、高效的克隆载体。

结果

构建了一种双功能载体 pXST。该 pXST 载体携带 XcmI-ccdB-XcmI 盒和 SmaI 限制位点。用 XcmI 消化载体可在 3'末端产生单个胸腺嘧啶(T)突出,有利于 TA 克隆,而 SmaI 产生平端,可进行平端连接。通过 PCR 从木薯基因组中扩增出各种大小的多个产物,然后分别使用 TA 克隆和平端连接方法将每个 PCR 片段克隆到 pXST 中。一般来说,TA 克隆比平端连接更适合各种大小的插入物,并且随着插入物大小的增加,转化效率显著降低。使用 TA 克隆克隆 517 bp DNA 片段时,转化效率最高(8.6×10 个转化子/μg)。两种连接方法的阳性克隆效率无显著差异,阳性克隆效率可达 100%,尤其是对于小插入物(如 517 和 957 个碱基对)。

结论

我们描述了一种构建新型 pXST 载体的简单而通用的方法。我们证实了使用 pXST 载体通过 TA 克隆和平端连接方法从木薯基因组中扩增的 PCR 产物进行克隆的可行性。与许多现有载体相比,pXST 质粒具有以下几个优点:(1)它具有 XcmI-ccdB-XcmI 盒和 SmaI 限制位点,允许 TA 克隆和平端连接。(2)它允许通过破坏 ccdB 基因在大肠杆菌中直接选择阳性重组质粒。(3)通过引入 ccdB 基因提高了阳性克隆效率,减少了由于未充分消化的质粒导致的自连接的可能性。(4)它可以通过高效且具有成本效益的克隆方法使用。因此,这种双功能载体将为研究人员提供基因克隆实验的灵活选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/719c/6045858/bd7f1d455051/12896_2018_456_Fig1_HTML.jpg

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