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Synthesis of polygalacturonase during tomato fruit ripening.聚半乳糖醛酸酶在番茄果实成熟过程中的合成。
Planta. 1982 Jun;155(1):64-7. doi: 10.1007/BF00402933.
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Cell Wall Dissolution in Ripening Kiwifruit (Actinidia deliciosa) : Solubilization of the Pectic Polymers.猕猴桃果实软化过程中的细胞壁溶解:果胶聚合物的溶解。
Plant Physiol. 1992 Jan;98(1):71-81. doi: 10.1104/pp.98.1.71.
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Molecular size and separability features of pea cell wall polysaccharides : implications for models of primary wall structure.豌豆细胞壁多糖的分子大小与可分离性特征:对初生壁结构模型的启示
Plant Physiol. 1992 Jan;98(1):357-68. doi: 10.1104/pp.98.1.357.
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Cell Wall Metabolism in Ripening Fruit : V. Analysis of Cell Wall Synthesis in Ripening Tomato Pericarp Tissue Using a d-[U-C]Glucose Tracer and Gas Chromatography-Mass Spectrometry.成熟果实中的细胞壁代谢:V. 使用d-[U-C]葡萄糖示踪剂和气相色谱-质谱法分析成熟番茄果皮组织中的细胞壁合成
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Molecular cloning of tomato pectin methylesterase gene and its expression in rutgers, ripening inhibitor, nonripening, and never ripe tomato fruits.番茄果胶甲酯酶基因的分子克隆及其在罗格斯番茄、成熟抑制型番茄、非成熟型番茄和永不成熟型番茄果实中的表达
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Ultrastructure of tomato fruit ripening and the role of polygalacturonase isoenzymes in cell wall degradation.番茄果实成熟的超微结构及多聚半乳糖醛酸酶同工酶在细胞壁降解中的作用。
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beta-Galactosidases in Ripening Tomatoes.成熟番茄中的β-半乳糖苷酶。
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The Structure of Plant Cell Walls: III. A Model of the Walls of Suspension-cultured Sycamore Cells Based on the Interconnections of the Macromolecular Components.植物细胞壁的结构:III. 基于大分子成分相互连接的悬浮培养梧桐细胞壁模型。
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快速成熟甜瓜果实细胞壁分解的时间顺序

Temporal sequence of cell wall disassembly in rapidly ripening melon fruit.

作者信息

Rose JK, Hadfield KA, Labavitch JM, Bennett AB

出版信息

Plant Physiol. 1998 Jun;117(2):345-61. doi: 10.1104/pp.117.2.345.

DOI:10.1104/pp.117.2.345
PMID:9625688
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC34955/
Abstract

The Charentais variety of melon (Cucumis melo cv Reticulatus F1 Alpha) was observed to undergo very rapid ripening, with the transition from the preripe to overripe stage occurring within 24 to 48 h. During this time, the flesh first softened and then exhibited substantial disintegration, suggesting that Charentais may represent a useful model system to examine the temporal sequence of changes in cell wall composition that typically take place in softening fruit. The total amount of pectin in the cell wall showed little reduction during ripening but its solubility changed substantially. Initial changes in pectin solubility coincided with a loss of galactose from tightly bound pectins, but preceded the expression of polygalacturonase (PG) mRNAs, suggesting early, PG-independent modification of pectin structure. Depolymerization of polyuronides occurred predominantly in the later ripening stages, and after the appearance of PG mRNAs, suggesting the existence of PG-dependent pectin degradation in later stages. Depolymerization of hemicelluloses was observed throughout ripening, and degradation of a tightly bound xyloglucan fraction was detected at the early onset of softening. Thus, metabolism of xyloglucan that may be closely associated with cellulose microfibrils may contribute to the initial stages of fruit softening. A model is presented of the temporal sequence of cell wall changes during cell wall disassembly in ripening Charentais melon.

摘要

观察到夏朗德甜瓜品种(甜瓜品种网纹F1阿尔法)成熟速度非常快,从未成熟阶段到过熟阶段的转变在24至48小时内发生。在此期间,果肉首先变软,然后出现大量解体,这表明夏朗德甜瓜可能是一个有用的模型系统,用于研究软化果实中细胞壁成分变化的时间顺序。细胞壁中果胶的总量在成熟过程中减少很少,但其溶解度发生了很大变化。果胶溶解度的最初变化与紧密结合的果胶中半乳糖的损失同时发生,但在多聚半乳糖醛酸酶(PG)mRNA表达之前,这表明果胶结构的早期、不依赖PG的修饰。多聚糖醛酸的解聚主要发生在成熟后期,且在PG mRNA出现之后,这表明后期存在依赖PG的果胶降解。在整个成熟过程中都观察到半纤维素的解聚,并且在软化开始时就检测到紧密结合的木葡聚糖部分的降解。因此,可能与纤维素微纤丝密切相关的木葡聚糖代谢可能有助于果实软化的初始阶段。本文提出了成熟夏朗德甜瓜细胞壁分解过程中细胞壁变化时间顺序的模型。