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Microarray analysis of gene expression profile induced by pre-storage application of oxalic acid in tomato fruit under chilling stress

机译:在冷胁迫下番茄果实中草酸预储存施用基因表达谱的微阵列分析

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To further illuminate the mechanism of oxalic acid (OA) alleviating chilling injury in tomato fruit under chilling stress, the differentially expressed genes were screened by using Affymetrix tomato GeneChip arrays after the mature-green tomato fruit were dipped in 10 mM OA solution for 10 min and then stored at 4 +/- 0.5 degrees C for 20 days. The results showed that 1,623 genes (540 up-regulated and 1,083 down-regulated genes) with more than two-fold differences in expression level were identified between OA treatment and the control. Differentially expressed genes mainly participate in signal transduction, defense, stress, primary metabolism, energy metabolism, cellwall related, transcription related, protein metabolism and carotenoid metabolism. All differentially expressed genes were annotated by Gene Ontology (GO) annotation based on biological process, molecular functions and cellular components. Based on the level of molecular function, differentially expressed genes were found to be involved in binding, catalytic activity, lyase activity and peroxidase activity, while according to biological process categorization, those genes were involved in defense response, stress response, metabolic process, oxidation-reduction process, phosphorylation and cellular process. In addition, OA treatment could obviously up-regulate 1-aminocyclopropane-1-carboxylate synthase (ACS), 1-aminocyclopropane-1-carboxylate oxidase 1 (ACO), heat shock protein (HSP) and phosphoenolpyruvate carboxylase kinase gene and succinodehydrogenase gene expression, down-regulate pathogenesis-related proteins gene, sucrose synthetase and expansin gene expression. It was suggested that OA treatment improved the chilling tolerance in postharvest tomato fruit during storage at chilling temperature, due mainly to regulate genes expression such as ethylene biosynthesis, heat shock protein, pathogenesis-related protein and energy metabolism.
机译:为了进一步照亮在寒冷的胁迫下减轻番茄果实中的草酸(OA)的机制,通过在10mM OA溶液中浸入10mM OA溶液后,通过使用亚胺番茄GeneChip阵列筛选差异表达的基因然后在4 +/- 0.5℃下储存20天。结果表明,在OA治疗和对照之间鉴定了1,623个基因(540个上调和1,083个下调基因)表达水平超过两倍以上的表达水平。差异表达的基因主要参与信号转导,防御,应力,初生代谢,能量代谢,相关,转录相关,蛋白质代谢和类胡萝卜素代谢。所有差异表达的基因都是通过基于生物过程,分子函数和细胞组分的基因本体(GO)注释来注释。基于分子函数的水平,发现差异表达基因参与结合,催化活性,裂解酶活性和过氧化物酶活性,同时根据生物过程分类,这些基因涉及防御反应,应力反应,代谢过程,氧化 - 减少过程,磷酸化和细胞过程。此外,OA治疗可明显上调1-氨基环丙烷-1-羧酸盐合酶(ACS),1-氨基环丙烷-1-羧酸氧化酶1(ACO),热休克蛋白(HSP)和磷酸丙酮酸羧化酶激酶基因和琥珀酰胺氢酶基因表达,下调病因发生相关的蛋白质基因,蔗糖合成酶和扩展蛋白基因表达。有人建议,OA治疗在冷却温度下储存期间改善了在储存过程中的降温耐受性,主要是为了调节基因表达,例如乙烯生物合成,热休克蛋白,病因相关蛋白和能量代谢。

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