首页> 外文期刊>Plant Growth Regulation: An International Journal on Natural and Synthetic Regulators >Expression and activities of ethylene biosynthesis enzymes during ripening of banana fruits and effect of 1-MCP treatment
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Expression and activities of ethylene biosynthesis enzymes during ripening of banana fruits and effect of 1-MCP treatment

机译:香蕉果实成熟过程中乙烯生物合成酶的表达,活性及1-MCP处理的影响

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摘要

The respiratory climacteric, ethylene evolution and activities and expression of ethylene biosynthesis enzymes show a characteristic pattern in banana during ethylene induced ripening. A unique biphasic respiratory climacteric with a 10 and 6 fold increment in respiration rates on days 2 and 6 respectively after ethylene treatment is preceded by ethylene evolution on days 1 and 4 with 8.3 and 6.93 fold increments respectively. This represents a unique feature of ripening in banana. While ACC synthase transcript accumulation matched the respiratory climacteric, the ACC synthase activity and ACC oxidase transcript accumulation showed a different pattern. The most significant observation was the effect of 1-MCP on ACC content and in vitro ACC oxidase activity. Though 1-MCP treated fruit did not show any respiratory climacteric or burst in ethylene production, it did not inhibit completely ACC accumulation and in vitro ACC oxidase activity. No transcript accumulation of ACC synthase was observed at any time in 1-MCP treated fruits, whereas a basal level of ACC oxidase transcript was detected throughout. It is concluded that ethylene induced ripening of banana is characteristically different from that of other climacteric fruits and that ethylene biosynthesis may have more than one mechanisms operating during ripening which are tightly controlled at various levels. [References: 19]
机译:香蕉在乙烯诱导的成熟过程中,呼吸更年期,乙烯的进化以及乙烯生物合成酶的活性和表达表现出特征性的模式。乙烯处理后,独特的双相呼吸更年期分别在第2天和第6天的呼吸速率增加了10倍和6倍,而在第1天和第4天的乙烯放出分别有8.3和6.93倍的增加。这代表了香蕉成熟的独特特征。虽然ACC合酶转录本积累与呼吸更年期相符,但ACC合酶活性和ACC氧化酶转录本积累表现出不同的模式。最重要的观察结果是1-MCP对ACC含量和体外ACC氧化酶活性的影响。尽管用1-MCP处理的果实在乙烯生产中没有显示出任何呼吸更年期或爆裂,但它并没有完全抑制ACC积累和体外ACC氧化酶活性。在任何时候,在1-MCP处理的果实中均未观察到ACC合酶的转录本积累,而整个过程中均检测到基本水平的ACC氧化酶转录本。结论是,乙烯诱导的香蕉成熟与其他更年期水果特征不同,乙烯的生物合成在成熟过程中可能具有不止一种作用机制,并且在各种水平上都受到严格控制。 [参考:19]

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