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Transcript profiling of sucrose synthase genes involved in sucrose metabolism among four carrot ( Daucus carota L.) cultivars reveals distinct patterns

机译:蔗糖合成酶基因的转录物分析涉及四个胡萝卜(Daucus Carota L.)品种中蔗糖代谢的基因揭示了截然不同的图案

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Carrot which contains lots of nutrients has a large demand around the world. The soluble sugar content in fleshy root of carrot directly influences its taste and quality. Sucrose, as an important member of soluble sugar, is the main product of photosynthesis in higher plants and it plays pivotal roles in physiological processes including energy supply, signal transduction, transcriptional regulation, starch and cellulose synthesis, and stress tolerance. Sucrose synthase is a key enzyme involved in sucrose metabolism and is closely related to sucrose content. However, the molecular mechanism involved in sucrose metabolism in carrot has lagged behind. Here, carrot roots of five developmental stages from four carrot cultivars were collected, and the contents of soluble sugar and sucrose in different stages and cultivars were surveyed. Three DcSus genes (DcSus1, DcSus2, and DcSus3), with lengths of 2427?bp, 2454?bp and 2628?bp, respectively, were identified and cloned in carrot. Phylogenetic analysis from the deduced amino acid sequences suggested that three DcSus were clustered into three distinct groups (SUSI, II and III). Results of enzymatic profiles demonstrated that the DcSus activities showed decrease trends during taproot development. Correlation analysis indicated that the DcSus activity showed negative correlation with soluble sugar content and strong negative correlation with sucrose concentration. Quantitative real-time PCR analysis showed that the expression profiles of the DcSus genes are significantly different in carrot tissues (root, leaf blade, and petiole), and the expression levels of the DcSus genes in the leaf blade were much higher than that in the root and petiole. The expression profiles of DcSus genes showed strong negative correlation with both sucrose content and soluble sugar content. During carrot root development, the soluble sugar content and sucrose content showed increasing trends, while DcSus activities had persisting declinations, which may be due to the decreasing expression levels of genes encoding sucrose synthase. Our data demonstrate that synthesis of sucrose in carrot tissue is closely related with DcSus genes. The results from our study would not only provide effective insights of sucrose metabolism in carrot, but also are beneficial for biologists to improve carrot quality.
机译:包含大量营养素的胡萝卜在世界各地的需求很大。胡萝卜肉质根茎中的可溶性糖含量直接影响其味道和质量。作为可溶性糖的重要成员的蔗糖是高等植物中光合作用的主要产物,并且它在生理过程中发挥枢轴作用,包括能量供应,信号转导,转录调节,淀粉和纤维素合成,以及应力耐受性。蔗糖合成酶是参与蔗糖代谢的关键酶,与蔗糖含量密切相关。然而,在胡萝卜中蔗糖代谢中涉及的分子机制落后。这里,收集了来自四种胡萝卜品种的五个发育阶段的胡萝卜根,调查了不同阶段和品种中可溶性糖和蔗糖的含量。三种DCSUS基因(DCSUS1,DCSUS2和DCSUS3),分别为2427μl≤BP,2454磅和2628磅(2628磅),并克隆在胡萝卜中。来自推导的氨基酸序列的系统发育分析表明,将三种DCSU分成三个不同的基团(Susi,II和III)。酶促谱的结果表明,DCSUS活动在纺织根发育过程中显示出趋势。相关分析表明,DCSUS活性与可溶性糖含量和蔗糖浓度的强负相关性显示出负相关性。定量实时PCR分析表明,DCSU基因的表达谱在胡萝卜组织(根,叶片和叶柄)中显着不同,叶片中DCSU基因的表达水平远高于根和叶柄。 DCSUS基因的表达谱显示出与蔗糖含量和可溶性糖含量强的负相关性。在胡萝卜根部发育期间,可溶性糖含量和蔗糖含量显示出增加的趋势,而DCSUS活性持续下降,这可能是由于编码蔗糖合成酶的基因的表达水平降低。我们的数据表明,胡萝卜组织中蔗糖的合成与DCSUS基因密切相关。我们研究的结果不仅为胡萝卜提供了有效的蔗糖新陈代谢的见解,而且有利于生物学家改善胡萝卜质量。

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