首页> 美国卫生研究院文献>Plant Physiology >The Abundant Class III Chitinase Homolog in Young Developing Banana Fruits Behaves as a Transient Vegetative Storage Protein and Most Probably Serves as an Important Supply of Amino Acids for the Synthesis of Ripening-Associated Proteins
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The Abundant Class III Chitinase Homolog in Young Developing Banana Fruits Behaves as a Transient Vegetative Storage Protein and Most Probably Serves as an Important Supply of Amino Acids for the Synthesis of Ripening-Associated Proteins

机译:发育中的香蕉果实中的丰富的Ⅲ类几丁质酶同源物表现为一种暂时性的营养贮藏蛋白并且最有可能作为重要的氨基酸供应来合成成熟的相关蛋白。

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摘要

Analyses of the protein content and composition revealed dramatic changes in gene expression during in situ banana (Musa spp.) fruit formation/ripening. The total banana protein content rapidly increases during the first 60 to 70 d, but remains constant for the rest of fruit formation/ripening. During the phase of rapid protein accumulation, an inactive homolog of class III chitinases accounts for up to 40% (w/v) of the total protein. Concomitant with the arrest of net protein accumulation, the chitinase-related protein (CRP) progressively decreases and several novel proteins appear in the electropherograms. Hence, CRP behaves as a fruit-specific vegetative storage protein that accumulates during early fruit formation and serves as a source of amino acids for the synthesis of ripening-associated proteins. Analyses of individual proteins revealed that a thaumatin-like protein, a β-1,3-glucanase, a class I chitinase, and a mannose-binding lectin are the most abundant ripening-associated proteins. Because during the ripening of prematurely harvested bananas, similar changes take place as in the in situ ripening bananas, CRP present in immature fruits is a sufficient source of amino acids for a quasi-normal synthesis of ripening-associated proteins. However, it is evident that the conversion of CRP in ripening-associated proteins takes place at an accelerated rate, especially when climacteric ripening is induced by ethylene. The present report also includes a discussion of the accumulation of the major banana allergens and the identification of suitable promoters for the production of vaccines in transgenic bananas.
机译:对蛋白质含量和组成的分析显示,在原位香蕉(Musa spp。)果实形成/成熟期间,基因表达发生了巨大变化。香蕉的总蛋白质含量在最初的60至70 d内迅速增加,但在其余的果实形成/成熟过程中保持恒定。在蛋白质快速积累阶段,III类几丁质酶的无活性同源物占总蛋白质的40%(w / v)。伴随着净蛋白积聚的停止,几丁质酶相关蛋白(CRP)逐渐减少,电泳图中出现了几种新蛋白。因此,CRP表现为果实特有的营养贮藏蛋白,在果实早期形成过程中积累,并作为合成成熟相关蛋白的氨基酸来源。对单个蛋白质的分析表明,类索马甜蛋白,β-1,3-葡聚糖酶,Ⅰ类几丁质酶和甘露糖结合凝集素是最丰富的成熟相关蛋白质。因为在过早收获的香蕉成熟期间,发生的变化与原位成熟的香蕉相似,所以未成熟果实中存在的CRP是足够的氨基酸来源,可以正常地合成与成熟相关的蛋白质。然而,很明显,CRP在与成熟相关的蛋白质中的转化以加速的速率发生,特别是当乙烯引起更年期成熟时。本报告还讨论了主要香蕉过敏原的积累,并确定了用于在转基因香蕉中生产疫苗的合适启动子。

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