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首页> 外文期刊>Trees. Structure and Function >Differential expression of genes encoding phenylpropanoid enzymes in an apricot cultivar (Prunus armeniaca L.) with cleavable endocarp
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Differential expression of genes encoding phenylpropanoid enzymes in an apricot cultivar (Prunus armeniaca L.) with cleavable endocarp

机译:用可切割的endocarp编码苯丙醇酶(Prunus armeniaca L.)中苯丙醇酶酶的基因的差异表达

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Key message Phenylpropanoid pathway related genes were identified and analyzed by co-expression network and expression pattern. NST1 may regulate the expression of CAD to affect the lignin deposition of 'Liehe' apricot endocarp. Apricot (Prunus Armeniaca L.) is a typical Rosaceae stone fruit tree. The extensive lignification of its endocarp is an important metabolic event during fruit ripening. There are abundant apricot germplasm resources in China, including a special apricot cultivar, 'Liehe' (LE), which has a thin, soft, cleavable endocarp with a hardness 45.84% that of the 'Jinxihong' (JG) apricot (with normal hardened-endocarp). To understand the molecular mechanisms behind the LE phenotype, differentially expressed genes (DEGs) encoding key enzymes involved in phenylpropanoid biosynthesis were mined from transcriptome data by the co-expression network and expression patterns. DEGs encoding key enzymes involved in phenylpropanoid biosynthesis were significantly down-regulated in LE, and the activity of these enzymes exhibited similar results. NST1 (NAC secondary wall thickening promoting factor 1) expression levels in LE were only 13.7%, 2.8%, 9.4%, and 82.5% that in JG at 9, 15, 21, and 30 days after full bloom (DAFB), respectively. CAD (Cinnamyl alcohol dehydrogenase) expression levels in LE were 1.3%, 0.7%, 0.2% and 2.7% that in JG at 15, 21, 30, 49 DAFB, respectively. CAD activity in LE was 46.4% and 63.6% that in JG at 42 and 49 DAFB, respectively. We thus used homologous cloning to determine the sequence differences of CAD and NST1 in LE and JG. Our results will help understand the molecular mechanisms underlying endocarp cleavage in LE apricot and provide a useful reference for further investigation of lignification during endocarp development. NST1 may regulate CAD which involved in the phenylpropanoid pathway and affect lignin deposition in LE endocarp.
机译:通过共表达网络和表达模式鉴定并分析了关键消息苯丙烷丙烷途径相关基因。 NST1可以调节CAD的表达,影响'Liehe'杏Endocarp的木质素沉积。杏(Prunus armeniaca l)是典型的蔷薇科石果树。果实成熟期间,其Endocarp的广泛瘫痪是一种重要的代谢事件。中国有丰富的杏地生殖器资源,包括一种特殊的杏品种,'Liehe'(Le),具有薄,柔软,可切割的内圆锥,硬度为45.84%的'金西宏'(JG)杏(正常硬化) -Endocarp)。为了了解Le表型背后的分子机制,通过共表达网络和表达模式从转录组数据中挖出含有苯丙醇化生物合成的关键酶的差异表达基因(DEGS)。编码参与苯丙烷化生物合成的关键酶的DEGS在LE中显着下调,并且这些酶的活性表现出类似的结果。 NST1(NAC二级壁增厚因子1)LE中的表达水平仅为9,15,21和30天的JG中的13.7%,2.8%,9.4%和82.5%,盛开(DAFB)后30天。 LE中的CAD(肉桂醇脱氢酶)表达水平分别为1.3%,0.7%,0.2%和2.7%,分别为15,21,31,30,49ADB的JG。 LE中的CAD活动分别为46.4%和63.6%,分别为42和49张DAFB。因此,我们使用同源克隆来确定CAD和NST1在LE和JG中的序列差异。我们的结果将有助于了解Le杏仁乳头裂解的分子机制,并在Endocarp发育过程中进一步调查瘫痪的有用参考。 NST1可以调节参与苯丙砜途径的CAD,并影响Le Endocarp中的木质素沉积。

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