首页> 美国卫生研究院文献>Journal of Experimental Botany >Identification of a Mg-protoporphyrin IX monomethyl ester cyclase homologue EaZIP differentially expressed in variegated Epipremnum aureum ‘Golden Pothos’ is achieved through a unique method of comparative study using tissue regenerated plants
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Identification of a Mg-protoporphyrin IX monomethyl ester cyclase homologue EaZIP differentially expressed in variegated Epipremnum aureum ‘Golden Pothos’ is achieved through a unique method of comparative study using tissue regenerated plants

机译:通过使用组织再生植物的独特对比研究可以鉴定在杂色表生金黄色葡萄球菌金丝瓜中差异表达的镁原卟啉IX单甲酯环化酶同源物EaZIP。

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摘要

Variegated plants provide a valuable tool for studying chloroplast biogenesis by allowing direct comparison between green and white/yellow sectors within the same leaf. While variegated plants are abundant in nature, the mechanism of leaf variegation remains largely unknown. Current studies are limited to a few mutants in model plant species, and are complicated by the potential for cross-contamination during dissection of leaf tissue into contrasting sectors. To overcome these obstacles, an alternative approach was explored using tissue-culture techniques to regenerate plantlets from unique sectors. Stable green and pale yellow plants were developed from a naturally variegated Epipremnum aureum ‘Golden Pothos’. By comparing the gene expression between green and pale yellow plants using suppression subtractive hybridization in conjunction with homologous sequence search, nine down-regulated and 18 up-regulated genes were identified in pale yellow plants. Transcript abundance for EaZIP (Epipremnum aureum leucine zipper), a nuclear gene homologue of tobacco NTZIP and Arabidopsis CHL27, was reduced more than 4000-fold in qRT-PCR analysis. EaZIP encodes the Mg-protoporphyrin IX monomethyl ester cyclase, one of the key enzymes in the chlorophyll biosynthesis pathway. Examination of EaZIP expression in naturally variegated ‘Golden Pothos’ confirmed that EaZIP transcript levels were correlated with leaf chlorophyll contents, suggesting that this gene plays a major role in the loss of chlorophyll in the pale yellow sectors of E. aureum ‘Golden Pothos’. This study further suggests that tissue-culture regeneration of plantlets from different coloured sectors of variegated leaves can be used to investigate the underlying mechanisms of variegation.
机译:杂色植物通过直接比较同一叶内绿色和白色/黄色部分,为研究叶绿体生物发生提供了有价值的工具。虽然杂色植物自然丰富,但叶杂色的机制仍不清楚。目前的研究仅限于模型植物物种中的少数突变体,并且由于将叶片组织解剖成不同的扇形区期间交叉污染的可能性而变得复杂。为了克服这些障碍,探索了一种替代方法,使用组织培养技术从独特的领域再生小植株。稳定的绿色和淡黄色植物是从自然杂色的表皮金黄色葡萄球菌“金Pothos”中培育出来的。通过抑制消减杂交和同源序列搜索比较绿色和浅黄色植物之间的基因表达,在浅黄色植物中鉴定出9个下调基因和18个上调基因。在qRT-PCR分析中,烟草NTZIP和拟南芥CHL27的核基因同源物EaZIP(金黄色亮氨酸亮氨酸拉链)的转录本丰度降低了4000倍以上。 EaZIP编码Mg-原卟啉IX单甲酯环化酶,这是叶绿素生物合成途径中的关键酶之一。对自然杂色的“金尾草”中EaZIP表达的检查证实,EaZIP转录本水平与叶片叶绿素含量相关,表明该基因在金黄色葡萄球菌“金尾草”的淡黄色部分中叶绿素的丧失中起主要作用。这项研究进一步表明,从杂色叶片的不同颜色的扇叶的小苗的组织培养再生可用于研究杂色的潜在机制。

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