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Genome-Wide Identification Expression and Functional Analysis of the Alkaline/Neutral Invertase Gene Family in Pepper

机译:辣椒中碱性/中性转化酶基因家族的全基因组鉴定表达和功能分析

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摘要

Alkalineeutral invertase (NINV) proteins irreversibly cleave sucrose into fructose and glucose, and play important roles in carbohydrate metabolism and plant development. To investigate the role of NINVs in the development of pepper fruits, seven NINV genes (CaNINV1–7) were identified. Phylogenetic analysis revealed that the CaNINV family could be divided into α and β groups. CaNINV1–6 had typical conserved regions and similar protein structures to the NINVs of other plants, while CaNINV7 lacked amino acid sequences at the C-terminus and N-terminus ends. An expression analysis of the CaNINV genes in different tissues demonstrated that CaNINV5 is the dominant NINV in all the examined tissues (root, stem, leaf, bud, flower, and developmental pepper fruits stage). Notably, the expression of CaNINV5 was found to gradually increase at the pre-breaker stages, followed by a decrease at the breaker stages, while it maintained a low level at the post-breaker stages. Furthermore, the invertase activity of CaNINV5 was identified by functional complementation of the invertase-deficient yeast strain SEY2102, and the optimum pH of CaNINV5 was found to be ~7.5. The gene expression and enzymatic activity of CaNINV5 suggest that it might be the main NINV enzyme for hydrolysis of sucrose during pepper fruit development.
机译:碱性/中性转化酶(NINV)蛋白不可逆地将蔗糖裂解为果糖和葡萄糖,并在碳水化合物代谢和植物发育中发挥重要作用。为了研究NINV在辣椒果实发育中的作用,鉴定了七个NINV基因(CaNINV1–7)。系统发育分析表明,CaNINV家族可分为α和β组。 CaNINV1-6具有典型的保守区和与其他植物的NINV相似的蛋白质结构,而CaNINV7在C端和N端缺少氨基酸序列。 CaNINV基因在不同组织中的表达分析表明,CaNINV5是所有检查的组织(根,茎,叶,芽,花和发育辣椒果实阶段)中的主要NINV。值得注意的是,发现CaNINV5的表达在破碎前阶段逐渐增加,随后在破碎前阶段降低,而在破碎后阶段维持低水平。此外,通过对缺乏转化酶的酵母菌株SEY2102进行功能互补来鉴定CaNINV5的转化酶活性,并且发现CaNINV5的最佳pH为约7.5。 CaNINV5的基因表达和酶活性表明,它可能是辣椒果实发育过程中蔗糖水解的主要NINV酶。

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