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用于植物功能基因组学的大规模体内表达的正向选择和连接独立克隆载体。

Positive-selection and ligation-independent cloning vectors for large scale in planta expression for plant functional genomics.

机构信息

Department of Plant Science, College of Agriculture and Life Sciences and Plant Genomics and Breeding Institute, Seoul National University, Seoul 151-742, Korea.

出版信息

Mol Cells. 2010 Dec;30(6):557-62. doi: 10.1007/s10059-010-0156-2. Epub 2010 Nov 26.

Abstract

Transient expression is an easy, rapid and powerful technique for producing proteins of interest in plants. Recombinational cloning is highly efficient but has disadvantages, including complicated, time consuming cloning procedures and expensive enzymes for large-scale gene cloning. To overcome these limitations, we developed new ligation-independent cloning (LIC) vectors derived from binary vectors including tobacco mosaic virus (pJL-TRBO), potato virus X (pGR106) and the pBI121 vector-based pMBP1. LIC vectors were modified to enable directional cloning of PCR products without restriction enzyme digestion or ligation reactions. In addition, the ccdB gene, which encodes a potent cell-killing protein, was introduced between the two LIC adapter sites in the pJL-LIC, pGR-LIC, and pMBP-LIC vectors for the efficient selection of recombinant clones. This new vector does not require restriction enzymes, alkaline phosphatase, or DNA ligase for cloning. To clone, the three LIC vectors are digested with SnaBI and treated with T4 DNA polymerase, which includes 3' to 5' exonuclease activity in the presence of only one dNTP (dGTP for the inserts and dCTP for the vector). To make recombinants, the vector plasmid and the insert PCR fragment were annealed at room temperature for 20 min prior to transformation into the host. Bacterial transformation was accomplished with 100% efficiency. To validate the new LIC vector systems, we were used to coexpressed the Phytophthora AVR and potato resistance (R) genes in N. benthamiana by infiltration of Agrobacterium. Coexpressed AVR and R genes in N. benthamiana induced the typical hypersensitive cell death resulting from in vivo interaction of the two proteins. These LIC vectors could be efficiently used for high-throughput cloning and laboratory-scale in planta expression. These vectors could provide a powerful tool for high-throughput transient expression assays for functional genomic studies in plants.

摘要

瞬时表达是在植物中产生感兴趣的蛋白质的一种简单、快速和强大的技术。重组克隆效率很高,但也有缺点,包括复杂、耗时的克隆程序和大规模基因克隆所需的昂贵酶。为了克服这些限制,我们开发了新的连接独立克隆(LIC)载体,这些载体源自包括烟草花叶病毒(pJL-TRBO)、马铃薯病毒 X(pGR106)和基于 pBI121 载体的 pMBP1 在内的二元载体。LIC 载体经过修改,能够在不需要限制酶消化或连接反应的情况下定向克隆 PCR 产物。此外,在 pJL-LIC、pGR-LIC 和 pMBP-LIC 载体的两个 LIC 接头之间引入了 ccdB 基因,该基因编码一种有效的细胞杀伤蛋白,用于高效选择重组克隆。这个新载体不需要限制酶、碱性磷酸酶或 DNA 连接酶进行克隆。为了克隆,三个 LIC 载体用 SnaBI 消化,并在仅有一种 dNTP(用于插入物的 dGTP 和用于载体的 dCTP)存在的情况下用 T4 DNA 聚合酶处理,该聚合酶具有 3' 到 5' 的外切核酸酶活性。为了制作重组体,在转化到宿主之前,将载体质粒和插入 PCR 片段在室温下退火 20 分钟。细菌转化的效率达到 100%。为了验证新的 LIC 载体系统,我们使用它通过农杆菌浸润在 N. benthamiana 中共表达疫霉 AVR 和马铃薯抗性(R)基因。在 N. benthamiana 中共表达 AVR 和 R 基因诱导了两种蛋白质体内相互作用导致的典型过敏细胞死亡。这些 LIC 载体可用于高通量克隆和实验室规模的体内表达。这些载体可以为植物功能基因组研究中的高通量瞬时表达测定提供有力工具。

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