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Effect of ploidy increase on transgene expression: Example from Citrus diploid cybrid and allotetraploid somatic hybrid expressing the EGFP gene

机译:倍性增加对转基因表达的影响:以表达EGFP基因的柑橘二倍体杂种和异四倍体体细胞杂种为例

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Polyploidization is an important speciation mechanism for all eukaryotes, and it has profound impacts on biodiversity dynamics and ecosystem functioning. Green fluorescent protein (GFP) has been used as an effective marker to visually screen somatic hybrids at an early stage in protoplast fusion. We have previously reported that the intensity of GFP fluorescence of regenerated embryoids was also an early indicator of ploidy level. However, little is known concerning the effects of ploidy increase on the GFP expression in citrus somatic hybrids at the plant level. Herein, allotetraploid and diploid cybrid plants with enhanced GFP (EGFP) expression were regenerated from the fusion of embryogenic callus protoplasts from 'Murcott' tangor (Citrus reticulata Blanco × Citrus sinensis (L.) Osbeck) and mesophyll protoplasts from transgenic 'Valencia' orange (C. sinensis (L.) Osbeck) expressing the EGFP gene, via electrofusion. Subsequent simple sequence repeat (SSR), chloroplast simple sequence repeat and cleaved amplified polymorphic sequence analysis revealed that the two regenerated tetraploid plants were true allotetraploid somatic hybrids possessing nuclear genomic DNA of both parents and cytoplasmic DNA from the callus parent, while the five regenerated diploid plants were cybrids containing nuclear DNA of the leaf parent and with complex segregation of cytoplasmic DNA. Furthermore, EGFP expression was compared in cells and protoplasts from mature leaves of these diploid cybrids and allotetraploid somatic hybrids. Results showed that the intensity of GFP fluorescence per cell or protoplast in diploid was generally brighter than in allotetraploid. Moreover, same hybridization signal was detected on allotetraploid and diploid plants by Southern blot analysis. By real-time RT-PCR and Western blot analysis, GFP expression level of the diploid cybrid was revealed significantly higher than that of the allotetraploid somatic hybrid. These results suggest that ploidy level conversion can affect transgene expression and citrus diploid cybrid and allotetraploid somatic hybrid represents another example of gene regulation coupled to ploidy.
机译:多倍体化是所有真核生物的重要物种形成机制,它对生物多样性动态和生态系统功能产生深远影响。在原生质体融合的早期阶段,绿色荧光蛋白(GFP)已被用作视觉筛选体细胞杂种的有效标记。我们以前曾报道过,再生胚状体的GFP荧光强度也是倍性水平的早期指标。然而,关于倍数增加对植物水平的柑橘体细胞杂种中GFP表达的影响知之甚少。在此,融合了来自'Murcott'tangor(Citrus reticulata Blanco×Citrus sinensis(L.)Osbeck)的胚性愈伤组织原生质体和来自转基因'Valencia'橙的叶肉原生质体的融合再生了具有增强的GFP(EGFP)表达的异源四倍体和二倍体混合植物。 (C. sinensis(L.)Osbeck)通过电融合表达EGFP基因。随后的简单序列重复(SSR),叶绿体简单序列重复和切割的扩增多态性序列分析表明,这两个再生的四倍体植物是真正的异源四倍体体细胞杂种,具有两个亲本的核基因组DNA和愈伤组织亲本的胞质DNA,而五个再生的二倍体植物是含有叶亲本核DNA和复杂分离的细胞质DNA的杂种。此外,比较了这些二倍体杂种和异源四倍体体细胞杂种成熟叶的细胞和原生质体中EGFP的表达。结果表明,二倍体中每个细胞或原生质体的GFP荧光强度通常比异源四倍体中的明亮。此外,通过Southern印迹分析在异源四倍体和二倍体植物上检测到相同的杂交信号。通过实时RT-PCR和蛋白质印迹分析,揭示了二倍体混合体的GFP表达水平显着高于异源四倍体体细胞杂种的GFP表达水平。这些结果表明,倍性水平转换可以影响转基因表达,柑橘二倍体杂种和异源四倍体体细胞杂种代表了与倍性相关的基因调控的另一个例子。

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