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首页> 外文期刊>Phytochemistry >Systematized biosynthesis and catabolism regulate citrulline accumulation in watermelon
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Systematized biosynthesis and catabolism regulate citrulline accumulation in watermelon

机译:系统化的生物合成和分解代谢调节西瓜中的瓜氨酸积累

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摘要

Citrulline, a non-protein amino acid, is present in large amounts in watermelon (Citrullus lanatus (Thunb.) Matsum. & Nakai Cucurbitaceae) fruits. Amino acid profiling of various tissues of cv. Charleston Gray during plant development confirmed progressive accumulation of citrulline only in the fruit flesh and rind tissues. Citrulline content was positively correlated with precursor (omithine) and by-product (arginine) amino acids during fruit ripening. Genetic variation in the partitioning of citrulline and related amino acids in the flesh and rind tissues was confirmed in a sub-set of watermelon cultivars. No correlation was established between morphological fruit traits (size and rind properties) and citrulline content. To understand the regulation of citrulline accumulation, we investigated the expression of genes associated with its biosynthesis and catabolism in flesh and rind tissues during fruit development. The expression of ornithine carbamoyltransferase (OTC) involved in the ultimate step of citrulline synthesis remained steady in both tissues. The expression of N-acetylornithine aminotransferase (N-AOA) involved in the production of N-acetylornithine and N-acetylornithine deacetylase (AOD-3) involved in ornithine synthesis coincided with increasing accumulation of citrulline in flesh and rind tissues during fruit development. Down-regulation N-acetylornithine-glutamate acetyltransferase (N-AOGA) suggests the subordinate role of the non-cyclic pathway in citrulline synthesis. Eccentricity between citrulline accumulation and expression of carbamoyl phosphate synthases (CPS-1, CPS-2) during fruit development suggest that the localized synthesis of carbamoyl phosphates may not be required for citrulline synthesis. Most genes involved in citrulline break-down (Argininosuccinate synthases - ASS-1, ASS-2, and ASS-3, Argininosuccinate lyases - ASL-1, Ornithine decarboxylase - ODC, Arginine decarboxylase - ADC) were consistently down-regulated during fruit development.
机译:瓜氨酸,一种非蛋白质氨基酸,在西瓜(Citrullus Lanatus(Thunb)matsum中存在大量。& nakai cucurbitaceae)。 CV各种组织的氨基酸分析。植物开发期间的Charleston Gray确认了仅在果肉和外皮组织中的柑橘类逐渐积累。在果实成熟过程中,瓜氨酸含量与前体(偶氮)和副产物(精氨酸)氨基酸呈正相关。在塑料和RIND组织中瓜氨酸和相关氨基酸分配的遗传变异在一组西瓜品种中得到证实。在形态果实性状(尺寸和外皮属性)和瓜氨酸含量之间没有建立相关性。为了了解瓜氨酸积累的调节,我们研究了在果实发育过程中肉体和外皮组织中的生物合成和分解代谢相关的基因的表达。在两种组织中涉及癌症合成的最终步骤中涉及的鸟氨酸氨基甲酰转移酶(OTC)的表达保持稳定。参与N-乙酰甘氨酸氨基转移酶(N-AOA)的表达涉及鸟氨酸合成的N-乙酰甘氨酸和N-乙酰甘氨酸脱乙酰酶(AOD-3)的脱乙酰酶(AOD-3)恰逢果实发育过程中瓜氨酸中瓜氨酸的积累。下调N-乙酰甘氨酸 - 谷氨酸乙酰转移酶(N-AOGA)表明非循环途径在瓜氨酸合成中的从属作用。在果实显影期间瓜谷氨酸磷酸盐合成酶(CPS-1,CPS-2)之间的偏心率表明瓜氨酸合成可能不需要鉴定氨基酰磷酸酯的局部合成。大多数参与瓜氨酸分解的基因(AginInosuciate合成酶 - ASS-1,ASS-2和ASS-3,AginInosuccinate粘酶 - ASL-1,鸟氨酸脱羧酶 - ODC,精氨酸脱羧酶 - ADC)在水果发育过程中始终如一地下调。

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