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1.
Kiwifruit is an important fruit crop; however, technologies for its functional genomic and molecular improvement are limited. The clustered regulatory interspaced short palindromic repeats (CRISPR)/CRISPR‐associated protein (Cas) system has been successfully applied to genetic improvement in many crops, but its editing capability is variable depending on the different combinations of the synthetic guide RNA (sgRNA) and Cas9 protein expression devices. Optimizing conditions for its use within a particular species is therefore needed to achieve highly efficient genome editing. In this study, we developed a new cloning strategy for generating paired‐sgRNA/Cas9 vectors containing four sgRNAs targeting the kiwifruit phytoene desaturase gene (AcPDS). Comparing to the previous method of paired‐sgRNA cloning, our strategy only requires the synthesis of two gRNA‐containing primers which largely reduces the cost. We further compared efficiencies of paired‐sgRNA/Cas9 vectors containing different sgRNA expression devices, including both the polycistronic tRNA‐sgRNA cassette (PTG) and the traditional CRISPR expression cassette. We found the mutagenesis frequency of the PTG/Cas9 system was 10‐fold higher than that of the CRISPR/Cas9 system, coinciding with the relative expressions of sgRNAs in two different expression cassettes. In particular, we identified large chromosomal fragment deletions induced by the paired‐sgRNAs of the PTG/Cas9 system. Finally, as expected, we found both systems can successfully induce the albino phenotype of kiwifruit plantlets regenerated from the G418‐resistance callus lines. We conclude that the PTG/Cas9 system is a more powerful system than the traditional CRISPR/Cas9 system for kiwifruit genome editing, which provides valuable clues for optimizing CRISPR/Cas9 editing system in other plants.  相似文献   

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目的:构建表达Cas9蛋白的亲骨转移人乳腺癌细胞株,并研究Cas9蛋白的表达对细胞生物学性质和超微结构的影响,为利用CRISPR/Cas9技术研究乳腺癌骨转移分子机制提供实验基础。方法:通过慢病毒载体介导Cas9蛋白基因转染亲骨转移人乳腺癌细胞株MDA-MB-231BO,通过G418筛选转染细胞,采用流式细胞术、Western blot、免疫细胞化学验证Cas9基因转染是否成功;运用实时无标记动态细胞分析技术和细胞划痕实验检测Cas9蛋白表达对细胞增殖及迁移的影响;透射电镜观察Cas9蛋白表达对细胞超微结构的影响。结果:成功构建稳定表达Cas9蛋白的亲骨转移人乳腺癌细胞株MDA-MB-231BO-Cas9,Cas9蛋白的表达对细胞的增殖、迁移和超微结构无明显影响。结论:MDA-MB-231BO-Cas9细胞可用于CRISPR/Cas9技术进一步研究。  相似文献   

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CRISPR/Cas9核酸酶作为一种新的基因组靶向编辑技术,已成功应用于多种动植物基因组修饰研究. CRISPR/Cas9作用后的阳性细胞筛选和富集是该技术的关键之一. 本研究以鸡EAV-HP(endogenous avian retrovirus-HP)基因和MSTN(myostatin)基因为例,从靶位点的选择、表达载体构建、双基因报告载体构建和核酸酶活性验证4个方面,系统研究了CRISPR/Cas9核酸酶技术平台. 结果表明,利用寡聚核苷酸直接退火方法,构建表达载体和报告载体的阳性率分别高达100%和89.5%. 报告载体的PuroR(puromycin resistant gene)和eGFP(enhanced green fluorescent protein)基因的成功表达表明,构建的CRISPR/Cas9系统能有效切割靶序列,并用于后续阳性克隆的筛选和富集. 本方法摒弃了传统分子克隆的PCR扩增和酶切处理目标基因的方法,而是利用寡聚核苷酸直接退火获得含有黏性末端的目标DNA,简化了载体构建过程,低成本且快速获得CRISPR/Cas9基因组靶向编辑系统.  相似文献   

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肌肉生长抑制素 (myostatin,Mstn)基因失活可引起哺乳动物的肌肉增生,但其调控机制尚不清楚,且缺乏可靠的试验材料验证Mstn相关分子通路的变化。本研究所用PK3108细胞系是在野生型PK15细胞系的基础上成功靶向敲除一条等位基因,在其靶位点敲入标记基因,敲除了204 bp的外显子3序列, LoxP锚定在其标记基因两侧。利用Cre/LoxP重组酶删除系统删除插入PK3108Mstn靶位点的标记,借助流式细胞仪和荧光蛋白甄别得到无标记的过渡型细胞系PK3108-2。将Cas9/sgRNA表达载体和供体DNA共转染PK3108-2,借助G418抗性筛选和倒置荧光显微镜挑选出仅带阳性标记的克隆L18,对其基因组进行PCR产物凝胶电泳与PCR产物测序,证明克隆L18在预设位点发生同源重组;对其蛋白质进行Western 印迹实验表明,Mstn被成功地敲除失活。综上结果证明,本研究实现了双等位基因的精准敲除,构建了Mstn双敲除梯度回复表达细胞系。本研究为揭示Mstn的作用机制提供理想的实验材料,也为双等位基因的敲除提供了可借鉴的技术路线。  相似文献   

6.
CRISPR/Cas9-Mediated Genome Editing in Soybean Hairy Roots   总被引:1,自引:0,他引:1  
As a new technology for gene editing, the CRISPR (clustered regularly interspaced short palindromic repeat)/Cas (CRISPR-associated) system has been rapidly and widely used for genome engineering in various organisms. In the present study, we successfully applied type II CRISPR/Cas9 system to generate and estimate genome editing in the desired target genes in soybean (Glycine max (L.) Merrill.). The single-guide RNA (sgRNA) and Cas9 cassettes were assembled on one vector to improve transformation efficiency, and we designed a sgRNA that targeted a transgene (bar) and six sgRNAs that targeted different sites of two endogenous soybean genes (GmFEI2 and GmSHR). The targeted DNA mutations were detected in soybean hairy roots. The results demonstrated that this customized CRISPR/Cas9 system shared the same efficiency for both endogenous and exogenous genes in soybean hairy roots. We also performed experiments to detect the potential of CRISPR/Cas9 system to simultaneously edit two endogenous soybean genes using only one customized sgRNA. Overall, generating and detecting the CRISPR/Cas9-mediated genome modifications in target genes of soybean hairy roots could rapidly assess the efficiency of each target loci. The target sites with higher efficiencies can be used for regular soybean transformation. Furthermore, this method provides a powerful tool for root-specific functional genomics studies in soybean.  相似文献   

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The CRISPR/Cas9 system has been proven as a revolutionary genome engineering tool. In most cases, single guide RNA (sgRNA) targeting sites have been designed as GN19NGG or GGN18NGG, because of restriction of the initiation nucleotide for RNA Pol III promoters. Here, we demonstrate that the U6 promoter from a lepidopteran model insect, Bombyx mori, effectively expressed the sgRNA initiated with any nucleotide bases (adenine, thymine, guanine or cytosine), which further expands the CRISPR targeting space. A detailed expansion index in the genome was analysed when N20NGG was set as the CRISPR targeting site instead of GN19NGG, and revealed a significant increase of suitable targets, with the highest increase occurring on the Z sex chromosome. Transfection of different types of N20NGG sgRNAs targeting the enhanced green fluorescent protein (EGFP) combined with Cas9, significantly reduced EGFP expression in the BmN cells. An endogenous gene, BmBLOS2, was also disrupted by using various types of N20NGG sgRNAs, and the cleavage efficiency of N20NGG sgRNAs with different initial nucleotides and GC contents was evaluated in vitro. Furthermore, transgenic silkworms expressing Cas9 and sgRNAs targeting the BmBLOS2 gene were generated with many types of mutagenesis. The typical transparent skin phenotype in knock-out silkworms was stable and inheritable, suggesting that N20NGG sgRNAs function sufficiently in vivo. Our findings represent a renewal of CRISPR/Cas9 target design and will greatly facilitate insect functional genetics research.  相似文献   

9.
目的:通过针对人源mir-505基因,设计不同sgRNA,从而利用CRIPSR系统对mir-505基因位点进行编辑,并探讨CRISPR系统对靶点的剪切效率的影响因素。方法:针对人源mir-505基因设计两条具有不同GC%的sgRNA,随后分别将其构建入41824-sgRNA表达载体和42230-Cas9蛋白/sgRNA共表达载体,并将表达载体利用脂质体转染法转染入人类细胞,通过T7E1assay检测不同CRISPR系统对靶点剪切效率的影响。结果:对靶点的剪切与Cas9蛋白和sgRNA的剂量成正比;当sgRNA与Cas9蛋白共传递时,也能够明显提高靶点的剪切效率;而较低的sgRNA的GC%会降低其对靶点的剪切效率。结论:本研究利用CRISPR系统靶向人源细胞的mir-505基因,使得mir-505基因发生突变。CRISPR系统对靶点的剪切效率和sgRNA和Cas9蛋白的剂量、sgRNA是否和Cas9蛋白共传递以及sgRNA的GC%有关。  相似文献   

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The CRISPR/Cas9 system has been developed as an easy-handle and multiplexable approach for engineering eukaryotic genomes by zygote microinjection of Cas9 and sgRNA, while preparing Cas9 for microinjection is laborious and introducing inconsistency into the experiment. Here, we describe a modified strategy for gene targeting through using oocyte-specific Cas9 transgenic mouse. With this mouse line, we successfully achieve precise gene targeting by injection of sgRNAs only into one-cell-stage embryos. Through comprehensive analysis, we also show allele complexity and off-target mutagenesis induced by this strategy is obviously lower than Cas9 mRNA/sgRNA injection. Thus, injection of sgRNAs into oocyte-specific Cas9 transgenic mouse embryo provides a convenient, efficient and reliable approach for mouse genome editing.  相似文献   

13.
目的:利用CRISPR/Cas9基因编辑技术构建生物节律基因NPAS2敲除的HepG2肝癌细胞系,并初步探讨NPAS2基因敲除对肝癌细胞凋亡的影响。方法:利用sgRNA在线设计工具,针对NPAS2设计两条sgRNA;利用PX459质粒构建分别含有两条sgRNA的敲除载体PX459-sgRNA1;PX459-sgRNA2;利用T7核酸内切酶I检测两条sgRNA活性;将活性较高的打靶载体瞬时转染HepG2细胞,经过药物筛选,克隆化培养及基因测序后得到NPAS2敲除的HepG2肝癌细胞系;利用Western blot检测NPAS2蛋白的表达和凋亡相关蛋白Caspase3的活化;利用流式细胞仪检测敲除细胞系的凋亡水平。结果:成功构建了针对NPAS2的打靶载体;并筛选得到了活性较高的打靶载体;经过药物筛选和克隆化培养得到的NPAS2敲除肝癌细胞系未检测到NPAS2蛋白的表达;进一步发现NPAS2敲除的肝癌细胞Caspase3明显活化,凋亡水平显著升高。结论:利用CRISPR/Cas9基因编辑技术成功构建了NPAS2基因敲除的HepG2肝癌细胞系,并发现NPAS2敲除可以促进肝癌细胞凋亡,为进一步研究生物节律基因NPAS2及其它相关基因在肝癌发生发展中的作用机制提供了有力的工具。  相似文献   

14.
研究一种蛋白质在神经元中的功能,最有效的方法之一是在该基因敲除动物的神经元中确认其表型.传统的用胚胎干细胞建立基因敲除动物模型的方法虽然稳定,但是复杂、耗时.近几年来,一种新型基因组编辑技术——CRISPR/Cas9,能够在不分裂的神经元中高效特异地敲除目的基因.本文研究了用CRISPR/Cas9系统敲除突触结合蛋白Ⅰ(synaptotagminⅠ,Syt1)基因后的小鼠海马培养神经元的电生理学特性.我们设计并构建了Syt1单导向RNA(Syt1 sgRNA)的慢病毒载体质粒,并用编码Cas9和Syt1 sgRNA的慢病毒感染培养的小鼠海马神经元,急性敲除神经元中Syt1基因(Syt1 sgRNA组),并用不靶向任何基因的Scramble sgRNA感染神经元作为阴性对照(Scramble组).通过全细胞膜片钳的方法检测单动作电位诱发的兴奋性突触后电流(single AP-eEPSC)、微小兴奋性突触后电流(mEPSCs)、高糖反应测量的即刻可释放囊泡池(RRP)以及10 Hz串刺激测量的囊泡释放概率(P_r).结果显示,Syt1 sgRNA组神经元丧失了Syt1的功能,并且与Syt1敲除(Syt1 KO)小鼠神经元的突触传递表型相似,而Scramble组神经元的各参数和野生型(WT)小鼠神经元相比没有显著性差异.本文为CRISPR/Cas9技术应用于神经元中基因的急性修饰提供了依据.  相似文献   

15.
作为新型的基因组编辑工具,碱基编辑技术结合了CRISPR/Cas系统的定位功能和碱基脱氨酶的编辑功能,可实现特定位点的碱基突变,具有不产生双链DNA断裂,无需外源模板且不依赖染色体DNA同源重组的优势。目前,研究者们已在重要的工业生产菌株谷氨酸棒杆菌(Corynebacterium glutamicum)中开发了多种碱基编辑工具,并实现了两基因和三基因的同时编辑。文中针对谷氨酸棒杆菌中基于CRISPR/Cas9的多位点碱基编辑系统中存在的不足(多重sgRNA结构烦琐、重复序列干扰、更换靶点困难等),采用多种策略进行优化,并比较碱基编辑效率:首先优化基于单独启动子/终止子的多重sgRNA表达框,通过构建框架质粒,并结合Golden Gate连接方法,加速靶点更换,避免重复序列干扰,虽然该方法 sgRNA结构烦琐,但编辑效率最高;同时,开发基于Type ⅡCRISPR crRNA阵列、tRNA加工的多重gRNA表达框,这两种形式均只需要一个启动子和一个终止子序列,极大地简化了表达框结构,虽然编辑效率均出现下降,但仍具有一定的实用性。该研究丰富了谷氨酸棒杆菌的基因组编辑工具,为该菌株的遗传改...  相似文献   

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目的:CRISPR/Cas9系统在斑马鱼的反向遗传学中的到了广泛应用,但突变基因的表型观察往往需要在突变鱼系的F1中进行,费时较长。LHX9作为LIM家族的一种转录因子,在胚胎早期的泌尿生殖嵴中有广泛分布;且LHX9基因敲除的小鼠存在性腺发育不良。本研究拟通过一种新的CRISPR/Cas9基因编辑技术,采用四条sgRNA对LHX9基因进行VASA转基因斑马鱼的基因敲除,以观察该基因缺陷对斑马鱼性腺发育的影响。方法:利用新的CRISPR/Cas9技术,设计四条针对斑马鱼LHX9基因3号外显子的20bp的sgRNA,通过非克隆体外转录得到靶位点的四条sgRNA。将以上靶位点的四条sgRNA与Cas9核酸酶蛋白同时注射入单细胞期的斑马鱼胚胎内,利用PCR鉴定突变型类型和突变比例。通过对LHX9基因突变体的VASA转基因斑马鱼进行荧光观察,发现LHX9基因缺陷的斑马鱼性腺发育的情况。结果:靶向Exon 3的四条sgRNA可成功编辑斑马鱼LHX9基因,敲除效率高达82%,Sanger测序发现产生10种不同的移码突变类型。通过该方法对VASA转基因斑马鱼的LHX9基因进行编辑,发现LHX9基因突变导致dph6的的斑马鱼原始生殖细胞增殖和迁移受到影响。结论:基于4条sgRNA注射的CRISPR/Cas9技术,可以快速地产生具有突变表型的G0斑马鱼,具有应用潜力。LHX9基因敲除导致原始生殖细胞的发育和迁移受到影响,提示该基因参与了斑马鱼早期性腺的发育。  相似文献   

17.
CRISPR/Cas技术能高效进行基因组定点编辑,但不同细菌来源或人工改造的Cas9以及Cpf1等核酸酶识别的PAM (protospacer adjacent motif)有差异,因此不同的基因编辑核酸酶可能采用不同类型的sgRNAs(small guide RNAs)。MicroRNAs (miRNAs)是一类调控性的小分子非编码RNAs,为了研究miRNA前体中是否可能存在特异性高的sgRNAs靶点,本文利用本课题组前期开发的生物信息学软件CRISPR-offinder,对靶向28 645条miRNA前体的11种不同类型sgRNA的丰度及特异性进行了分析,并利用CRISPR/Cas9慢病毒技术构建了猪miR-302/367基因簇敲除细胞系,对构建的猪miRNA敲除细胞系的效率进行了检测。结果表明,每个miRNA前体中平均存在约8种不同类型sgRNA的靶点;通过评估靶向猪miRNA前体sgRNA的脱靶效应,发现其中特异性高的sgRNA仅占18.2%;通过CRISPR/Cas9慢病毒技术成功构建了猪miR-302/367基因簇敲除细胞系,发现通过该技术构建miRNA敲除细胞系的效率为40%。本研究为利用CRISPR/Cas技术靶向敲除miRNA提供了重要资源。  相似文献   

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目的:利用成簇的、规律间隔的短回文重复序列/Cas9核酸酶(CRISPR/Cas9)基因编辑技术构建亚甲基四氢叶酸脱氢酶1(methylenetetrahydrofolate dehydrogenase 1, MTHFD1))基因敲除人胚肾(HEK-293)稳定细胞系。方法:利用在线软件筛选出评分最高的3条针对MTHFD1基因的单向导RNA (sg RNA),然后合成sg RNA序列并将其插入到含有GFP标签的质粒中;重组质粒转染HEK-293细胞后通过流式细胞仪分选出已被转入sg RNA的单细胞,通过测序确认单克隆细胞系中MTHFD1的DNA序列突变状态;最后应用实时荧光定量多聚核苷酸链式反应(real-time quantitative Polymerase Chain Reaction, RT-q PCR)和蛋白质印迹(Western blot)方法检测单克隆细胞中MTHFD1的m RNA和蛋白表达水平。结果:重组载体中含有正确的sg RNA序列;测序结果显示该细胞系中MTHFD1基因发生了单个碱基插入突变和6个碱基的缺失突变;RT-qPCR结果显示单克隆细胞系中MTHFD1在m RNA水平显著降低;Western blot检测成功构建MTHFD1蛋白缺失的HEK-293细胞。结论:本研究利用CRISPR/Cas9技术成功构建的MTHFD1敲除HEK-293细胞系。  相似文献   

19.
Systems based on the clustered, regularly interspaced, short palindromic repeat (CRISPR) and CRISPR-associated proteins (Cas) have revolutionized genome editing in many organisms, including plants. Most CRISPR-Cas strategies in plants rely on genetic transformation using Agrobacterium tumefaciens to supply the gene editing reagents, such as Cas nucleases or the synthetic guide RNA (sgRNA). While Cas nucleases are constant elements in editing approaches, sgRNAs are target-specific and a screening process is usually required to identify those most effective. Plant virus-derived vectors are an alternative for the fast and efficient delivery of sgRNAs into adult plants, due to the virus capacity for genome amplification and systemic movement, a strategy known as virus-induced genome editing. We engineered Potato virus X (PVX) to build a vector that easily expresses multiple sgRNAs in adult solanaceous plants. Using the PVX-based vector, Nicotiana benthamiana genes were efficiently targeted, producing nearly 80% indels in a transformed line that constitutively expresses Streptococcus pyogenes Cas9. Interestingly, results showed that the PVX vector allows expression of arrays of unspaced sgRNAs, achieving highly efficient multiplex editing in a few days in adult plant tissues. Moreover, virus-free edited progeny can be obtained from plants regenerated from infected tissues or infected plant seeds, which exhibit a high rate of heritable biallelic mutations. In conclusion, this new PVX vector allows easy, fast and efficient expression of sgRNA arrays for multiplex CRISPR-Cas genome editing and will be a useful tool for functional gene analysis and precision breeding across diverse plant species, particularly in Solanaceae crops.  相似文献   

20.
With the widespread use of clustered regularly interspaced palindromic repeats (CRISPR)/CRISPR-associated nuclease (Cas) technologies in plants, large-scale genome editing is increasingly needed. Here, we developed a geminivirus-mediated surrogate system, called Wheat Dwarf Virus-Gate (WDV-surrogate), to facilitate high-throughput genome editing. WDV-Gate has two parts: one is the recipient callus from a transgenic rice line expressing Cas9 and a mutated hygromycin-resistant gene (HygM) for surrogate selection; the other is a WDV-based construct expressing two single guide RNAs (sgRNAs) targeting HygM and a gene of interest, respectively. We evaluated WDV-Gate on six rice loci by producing a total of 874 T0 plants. Compared with the conventional method, the WDV-Gate system, which was characterized by a transient and high level of sgRNA expression, significantly increased editing frequency (66.8% vs. 90.1%), plantlet regeneration efficiency (2.31-fold increase), and numbers of homozygous-edited plants (36.3% vs. 70.7%). Large-scale editing using pooled sgRNAs targeting the SLR1 gene resulted in a high editing frequency of 94.4%, further demonstrating its feasibility. We also tested WDV-Gate on sequence knock-in for protein tagging. By co-delivering a chemically modified donor DNA with the WDV-Gate plasmid, 3xFLAG peptides were successfully fused to three loci with an efficiency of up to 13%. Thus, by combining transiently expressed sgRNAs and a surrogate selection system, WDV-Gate could be useful for high-throughput gene knock-out and sequence knock-in.  相似文献   

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