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Ectopic Expression of Apple F3′H Genes Contributes to Anthocyanin Accumulation in the Arabidopsis tt7 Mutant Grown Under Nitrogen Stress

机译:苹果F3H基因的异位表达有助于氮胁迫下拟南芥tt7突变体中花色苷的积累

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摘要

Three genes encoding flavonoid 3′-hydroxylase (F3′H) in apple (Malus × domestica), designated MdF3′HI, MdF3′HIIa, and MdF3′HIIb, have been identified. MdF3′HIIa and MdF3′HIIb are almost identical in amino acid sequences, and they are allelic, whereas MdF3′HI has 91% nucleotide sequence identity in the coding region to both MdF3′HIIa and MdF3′HIIb. MdF3′HI and MdF3′HII genes are mapped onto linkage groups 14 and 6, respectively, of the apple genome. Throughout the development of apple fruit, transcriptional levels of MdF3′H genes along with other anthocyanin biosynthesis genes are higher in the red-skinned cv Red Delicious than that in the yellow-skinned cv Golden Delicious. Moreover, patterns of MdF3′H gene expression correspond to accumulation patterns of flavonoids in apple fruit. These findings suggest that MdF3′H genes are coordinately expressed with other genes in the anthocyanin biosynthetic pathway in apple. The functionality of these apple F3′H genes has been demonstrated via their ectopic expression in both the Arabidopsis (Arabidopsis thaliana) transparent testa7-1 (tt7) mutant and tobacco (Nicotiana tabacum). When grown under nitrogen-deficient conditions, transgenic Arabidopsis tt7 seedlings expressing apple F3′H regained red color pigmentation and significantly accumulated both 4′-hydrylated pelargonidin and 3′,4′-hydrylated cyanidin. When compared with wild-type plants, flowers of transgenic tobacco lines overexpressing apple F3′H genes exhibited enhanced red color pigmentation. This suggests that the F3′H enzyme may coordinately interact with other flavonoid enzymes in the anthocyanin biosynthesis pathway.
机译:已经鉴定出苹果(Malus×domestica)中编码类黄酮3'-羟化酶(F3'H)的三个基因,分别命名为MdF3'HI,MdF3'HIIa和MdF3'HIIb。 MdF3'HIIa和MdF3'HIIb的氨基酸序列几乎相同,并且是等位基因,而MdF3'HI在MdF3'HIIa和MdF3'HIIb的编码区具有91%的核苷酸序列同一性。 MdF3'HI和MdF3'HII基因分别定位在苹果基因组的连接基团14和6上。在整个苹果果实的发育过程中,红皮简历“红色美味”中的MdF3'H基因以及其他花色苷生物合成基因的转录水平高于黄皮简历“金色美味”中的MdF3'H基因的转录水平。此外,MdF3'H基因表达的模式与苹果果实中类黄酮的积累模式相对应。这些发现表明,MdF3'H基因与苹果花色苷生物合成途径中的其他基因协同表达。这些苹果F3'H基因的功能已通过其在拟南芥( Arabidopsis thaliana transtest testa7-1 tt7 >)突变体和烟草(烟草> )。当在缺氮条件下生长时,表达苹果 F3'H 的转基因拟南芥 tt7 幼苗恢复了红色色素沉着,并显着积累了4'-羟基化的pelargonidin和3',4' -氢化花青素。与野生型植物相比,过量表达苹果 F3'H 基因的转基因烟草系的花呈现出增强的红色色素沉着。这表明F3'H酶可能与花青素生物合成途径中的其他类黄酮酶协同作用。

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