首页> 外文期刊>Horticulture research. >Lipidomic and transcriptomic analysis reveals reallocation of carbon flux from cuticular wax into plastid membrane lipids in a glossy “Newhall” navel orange mutant
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Lipidomic and transcriptomic analysis reveals reallocation of carbon flux from cuticular wax into plastid membrane lipids in a glossy “Newhall” navel orange mutant

机译:脂质化和转录组分析显示,在光泽“Newhall”脐橙突变体中,将碳通量与粘液膜脂质的重新分配成血压膜脂质

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Both cuticle and membrane lipids play essential roles in quality maintenance and disease resistance in fresh fruits. Many reports have indicated the modification of alternative branch pathways in epicuticular wax mutants; however, the specific alterations concerning lipids have not been clarified thus far. Here, we conducted a comprehensive, time-resolved lipidomic, and transcriptomic analysis on the “Newhall” navel orange (WT) and its glossy mutant (MT) “Gannan No. 1”. The results revealed severely suppressed wax formation accompanied by significantly elevated production of 36-carbon plastid lipids with increasing fruit maturation in MT. Transcriptomics analysis further identified a series of key functional enzymes and transcription factors putatively involved in the biosynthesis pathways of wax and membrane lipids. Moreover, the high accumulation of jasmonic acid (JA) in MT was possibly due to the need to maintain plastid lipid homeostasis, as the expression levels of two significantly upregulated lipases (CsDAD1 and CsDALL2) were positively correlated with plastid lipids and characterized to hydrolyze plastid lipids to increase the JA content. Our results will provide new insights into the molecular mechanisms underlying the natural variation of plant lipids to lay a foundation for the quality improvement of citrus fruit.
机译:角质层和膜脂质在新鲜水果中的质量维护和抗病抗性中起着重要作用。许多报道表明了凝结蜡突变体中替代分支途径的修饰;然而,到目前为止,还没有澄清脂质的具体改变。在这里,我们对“Newhall”脐橙(WT)及其光泽突变体(MT)“甘南第1号”进行了全面,时间分辨的脂质化和转录组分析。结果显示出严重抑制的蜡形成伴随着36-碳体层脂质的显着升高,随着MT的果实成熟而产生了36-碳体血浆。转录组体分析进一步确定了一系列关键官能酶和借助于蜡和膜脂质的生物合成途径的转录因子。此外,茉莉酸(JA)在MT中的高积累可能是由于需要维持体液性脂质稳态,因为两种显着上调的脂肪酶(CSDAD1和CSDALL2)的表达水平与塑性脂质呈正相关,并表征水解塑性脂质增加JA含量。我们的结果将对植物脂质自然变异的分子机制提供新的见解,为柑橘类水果的质量改善奠定基础。

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