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Development of a new vector using Soybean yellow common mosaic virus for gene function study or heterologous protein expression in soybeans

机译:利用大豆黄普通花叶病毒开发新载体进行大豆基因功能研究或异源蛋白质表达

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A new vector using Soybean yellow common mosaic virus (SYCMV) was constructed for gene function study or heterologous protein expression in soybeans. The in vitro transcript with a 5' cap analog m7GpppG from an SYCMV full-length infectious vector driven by a T7 promoter infected soybeans (pSYCMVT7-full). The symptoms observed in the soybeans infected with either the sap from SYCMV-infected leaves or pSYCMVT7-full were indistinguishable, suggesting that the vector exhibits equivalent biological activity as the virus itself. To utilize the vector further, a DNA-based vector driven by the Cauliflower mosaic virus (CaMV) 35S promoter was constructed. The complete sequence of the SYCMV genome was inserted into a binary vector flanked by a CaMV 35S promoter at the 5' terminus of the SYCMV genome and a cis-cleaving ribozyme sequence followed by a nopaline synthase terminator at the 3' terminus of the SYCMV genome (pSYCMV-full). The SYCMV-derived vector was tested for use as a virus-induced gene silencing (VIGS) vector for the functional analysis of soybean genes. VIGS constructs containing either a fragment of the Phytoene desaturase (PDS) gene (pSYCMV-PDS1) or a fragment of the small subunit of ribulose-1,5-bisphosphate carboxylase/oxygenase (RbcS) gene (pSYCMV-RbcS2) were constructed. Plants infiltrated with each vector using the Agrobacterium-mediated inoculation method exhibited distinct symptoms, such as photo-bleaching in plants infiltrated with pSYCMV-PDS1 and yellow or pale green coloring in plants infiltrated with pSYCMV-RbcS2. In addition, down-regulation of the transcripts of the two target genes was confirmed via northern blot analysis. Particle bombardment and direct plasmid DNA rubbing were also confirmed as alternative inoculation methods. To determine if the SYCMV vector can be used for the expression of heterologous proteins in soybean plants, the vector encoding amino acids 135-160 of VP1 of Foot-and-mouth disease virus (FMDV) serotype O1 Campos (O1C) was constructed (pSYCMV-FMDV). Plants infiltrated with pSYCMV-FMDV were only detected via western blotting using the O1C antibody. Based on these results, we propose that the SYCMV-derived vector can be used for gene function study or expression of useful heterologous proteins in soybeans. (C) 2015 Elsevier B.V. All rights reserved.
机译:利用大豆黄普通花叶病毒(SYCMV)构建了一种新载体,用于大豆的基因功能研究或异源蛋白表达。来自由T7启动子驱动的SYCMV全长感染性载体的5'帽类似物m7GpppG的体外转录本感染了大豆(pSYCMVT7-full)。在被SYCMV感染的叶子汁液或pSYCMVT7-full感染的大豆中观察到的症状是无法区分的,表明该载体表现出与病毒本身相同的生物学活性。为了进一步利用该载体,构建了由花椰菜花叶病毒(CaMV)35S启动子驱动的基于DNA的载体。将SYCMV基因组的完整序列插入一个二元载体中,该载体的侧翼是SYCMV基因组5'端的CaMV 35S启动子和一个顺式切割核酶序列,然后是SYCMV基因组3'端的胭脂碱合酶终止子(pSYCMV已满)。测试了SYCMV衍生的载体用作病毒诱导的基因沉默(VIGS)载体,用于大豆基因的功能分析。构造了含有番茄苯去饱和酶(PDS)基因片段(pSYCMV-PDS1)或核糖-1,5-双磷酸羧化酶/加氧酶(RbcS)基因小亚基片段(pSYCMV-RbcS2)的VIGS构建体。使用农杆菌介导的接种方法用每种载体浸润的植物表现出明显的症状,例如在用pSYCMV-PDS1浸润的植物中发生光漂白,而在用pSYCMV-RbcS2浸润的植物中呈黄色或淡绿色。另外,通过RNA印迹分析证实了两个靶基因的转录物的下调。还证实了粒子轰击和直接质粒DNA摩擦是替代接种方法。为了确定SYCMV载体是否可用于大豆植物中的异源蛋白表达,构建了编码口蹄疫病毒(FMDV)血清型O1 Campos(O1C)VP1氨基酸135-160的载体(pSYCMV -FMDV)。仅使用O1C抗体通过Western印迹检测到被pSYCMV-FMDV浸润的植物。根据这些结果,我们建议将SYCMV衍生的载体用于基因功能研究或在大豆中表达有用的异源蛋白质。 (C)2015 Elsevier B.V.保留所有权利。

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