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擬南芥IbbHLH家族基因CRISPR/Cas9敲除載體的構建

2019-12-14 14:10樊玲玲馬銘悅韓毅
安徽農業科學 2019年19期
關鍵詞:擬南芥

樊玲玲 馬銘悅 韓毅

摘要 [目的]全氟辛酸(PFOA)處理能顯著誘導擬南芥Ib bHLH(Ib basic helixloophelix)家族4個轉錄因子bHLH38、bHLH39、bHLH100和bHLH101的轉錄水平。為了進一步分析這4個基因在響應PFOA中的潛在作用,利用CRISPR/Cas9技術構建了它們的共敲除載體。[方法]以野生型擬南芥基因中的外顯子為模板,設計引物,通過兩步PCR擴增法將靶向基因連接到CRISPR/Cas9載體上;將構建成功的重組質粒轉化到大腸桿菌DH5α感受態細胞中,挑取陽性菌落,PCR鑒定正確后,將其質粒轉入農桿菌GV3101感受態細胞中,再次挑取陽性菌落進行PCR鑒定正確后,提取質粒進行表達盒測序。[結果]通過兩步PCR擴增法,成功將4個靶點表達盒轉入到CRISPR/Cas9載體中,構建了bHLH38、bHLH39、bHLH100和bHLH101的雙元CRISPR/Cas9敲除載體。[結論]成功構建的Ib BHLH家族CRISPR/Cas9敲除載體,為后續擬南芥Ib BHLH家族四突突變體材料的獲得提供了可用性載體。

關鍵詞 擬南芥;Ib BHLH家族基因;載體構建;CRISPR/Cas9

中圖分類號 Q945.78文獻標識碼 A

文章編號 0517-6611(2019)19-0118-03

doi:10.3969/j.issn.0517-6611.2019.19.035

Abstract [Objective]Perfluorooctanoic acid (PFOA) treatment significantly induced the transcription levels of the Ib bHLH(Ib basic helixloophelix) family four transcription factors bHLH38, bHLH39, bHLH100 and bHLH101 of Arabidopsis thaliana. To further analyze the potential role of these four genes in response to PFOA, we used the CRISPR/Cas9 technology to construct their coknockout vector. [Method]Primers were designed using exons in the wildtype Arabidopsis thaliana genes as a template, and the target genes were ligated to the CRISPR/Cas9 vector by twostep PCR amplification. The successfully constructed recombinant plasmid was transformed into Escherichia coli DH5α, positive colonies were picked. After PCR identification, the plasmid was extracted and transferred into Agrobacterium GV3101 receptive cells, positive colonies were picked again for PCR identification. The plasmid was extracted and sequenced. [Result]Four target expression cassettes were successfully transferred into the CRISPR/Cas9 vector by twostep PCR amplification, and a binary CRISPR/Cas9 knockout vector of bHLH38, bHLH39, bHLH100 and bHLH101 was constructed. [Conclusion]The successfully constructed Ib BHLH family CRISPR/Cas9 knockout vector provides an availability vector for the subsequent Arabidopsis thaliana Ib BHLH family of tetramer mutant materials.

全氟辛酸(perfluorooctanoic acid,PFOA)是一種人工合成化合物,被廣泛應用于如油漆、紡織品和化妝品在內的各種工商業產品中。PFOA的持續使用和大量排放使其越來越多地分布于環境中。目前,幾乎在所有環境和生物基質中都能檢測到其存在[1]。環境中存在的PFOA可以經過水體和土壤進入植物,在植物體內進行富集。目前,已經在小麥、土豆、胡蘿卜等多種作物體內發現了PFOA的積累[2-3]。植物體內高濃度的PFOA會造成嚴重的生長和發育毒害[3-5],但其毒性作用機制目前尚不清楚。采用模式植物擬南芥對PFOA造成的毒性作用機制進行分析,發現PFOA會強烈誘導擬南芥bHLH Ib亞族所有4個轉錄因子bHLH38、bHLH39[6]、bHLH100和bHLH101[7]的表達。

Ib亞族的4個bHLH轉錄因子在鐵穩態中發揮重要作用,在缺鐵條件下,至少有1個與FIT形成二聚體,才能激活鐵吸收相關蛋白FRO2和IRT1的表達,促進植物根部對鐵的吸收[8]。在擬南芥的研究中發現,以上4個轉錄因子中任何一個基因的突變都不會對植物生長造成影響,但是bHLH38與bHLH100/bHLH101及bHLH39與bHLH100/bHLH101的雙基因或三基因突變,會使擬南芥出現小化和黃化的癥狀[9]。擬南芥bHLH38和bHLH39由于連鎖,所以無法通過傳統雜交手段獲得四突突變體。

[7] SIVITZ A B,HERMAND V,CURIE C,et al.Arabidopsis bHLH100 and bHLH101 control iron homeostasis via a FITindependent pathway[J].PLoS One,2012,7(9):1-12.

[8] WANG H Y,KLATTE M,JAKOBY M,et al.Iron deficiencymediated stress regulation of four subgroup Ib BHLH genes in Arabidopsis thaliana[J].Planta,2007,226(4):897-908.

[9] WANG N,CUI Y,LIU Y,et al.Requirement and functional redundancy of Ib subgroup bHLH proteins for iron deficiency responses and uptake in Arabidopsis thaliana[J].Mol Plant,2013,6(2):503-513.

[10] MA X L,ZHANG Q Y,ZHU Q L,et al.A robust CRISPR/Cas9 system for convenient,highefficiency multiplex genome editing in monocot and dicot plants[J].Molecular plant,2015,8(8):1274-1284.

[11] LIU W S,ZHU X H,LEI M G,et al.A detailed procedure for CRISPR/Cas9mediated gene editing in Arabidopsis thaliana[J].Science bulletin,2015,60:1332-1347.

[12] 曾棟昌,馬興亮,謝先榮,等.植物CRISPR/Cas9多基因編輯載體構建和突變分析的操作方法[J].中國科學,2018,48(7):783-794.

[13] LINDSTROM A B,STRYNAR M J,LIBELO E L.Polyfluorinated compounds:Past,present,and future[J].Environ Sci Technol,2011,45(19):7954-7961.

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