首页> 美国卫生研究院文献>Journal of Experimental Botany >Overexpression of UV-DAMAGED DNA BINDING PROTEIN 1 links plant development and phytonutrient accumulation in high pigment-1 tomato
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Overexpression of UV-DAMAGED DNA BINDING PROTEIN 1 links plant development and phytonutrient accumulation in high pigment-1 tomato

机译:紫外线损伤的DNA结合蛋白1的过表达与高色素1番茄中的植物发育和植物营养素积累相关

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摘要

Fruits of tomato plants carrying the high pigment-1 mutations hp-1 and hp-1w are characterized by an increased number of plastids coupled with enhanced levels of functional metabolites. Unfortunately, hp-1 mutant plants are also typified by light-dependent retardation in seedling and whole-plant growth and development, which limits their cultivation. These mutations were mapped to the gene encoding UV-DAMAGED DNA BINDING PROTEIN 1 (DDB1) and, recently, fruit-specific RNA interference studies have demonstrated an increased number of plastids and enhanced carotenoid accumulation in the transgenic tomato fruits. However, whole-plant overexpression of DDB1, required to substantiate its effects on seedling and plant development and to couple them with fruit phenotypes, has heretofore been unsuccessful. In this study, five transgenic lines constitutively overexpressing normal DDB1 in hp-1 mutant plants were analysed. Eleven-day-old seedlings, representing these lines, displayed up to ∼73- and ∼221-fold overexpression of the gene in hypocotyls and cotyledons, respectively. This overexpression resulted in statistically significant reversion to the non-mutant developmental phenotypes, including more than a full quantitative reversion. This reversion of phenotypes was generally accompanied by correlated responses in chlorophyll accumulation and altered expression of selected light signalling genes: PHYTOCHROME A, CRYPTOCHROME 1, ELONGATED HYPOCOTYL 5, and the gene encoding CHLOROPHYLL A/B-BINDING PROTEIN 4. Cumulatively, these results provide the missing link between DDB1 and its effects on tomato plant development.
机译:带有高色素1突变hp-1和hp-1 w 的番茄植株的果实的特征是,质体数量增加,功能代谢产物水平提高。不幸的是,hp-1突变植物的特征还在于幼苗和整个植物生长和发育中的光依赖性延迟,这限制了它们的种植。这些突变被定位到编码UV-DAMAGED DNA BINDING蛋白质1(DDB1)的基因上,最近,水果特异的RNA干扰研究表明,在转基因番茄果实中质体数量增加,类胡萝卜素积累增加。然而,迄今为止,证实DDB1对幼苗和植物发育的影响并使其与果实表型结合所需的整个植物的过表达一直没有成功。在这项研究中,分析了在hp-1突变植物中组成型过表达正常DDB1的五个转基因品系。代表这些品系的11天大的幼苗分别在下胚轴和子叶中显示了该基因最多约73倍和221倍的过表达。这种过度表达导致统计学上显着地转变为非突变发育表型,包括超过完全定量的转变。这种表型的逆转通常伴随着叶绿素积累的相关响应和选定的光信号基因的表达改变:PHYTOCHROME A,CRYPTOCHROME 1,ELONGATED HYPOCOTYL 5和编码CHLOROPHYLL A / B-BINDING PROTEIN 4的基因。 DDB1与番茄植株发育之间缺少联系。

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