Lelièvre J M, Tichit L, Dao P, Fillion L, Nam Y W, Pech J C, Latché A
INRA Station de Technologie des Produits Végétaux, Avignon, France.
Plant Mol Biol. 1997 Mar;33(5):847-55. doi: 10.1023/a:1005750324531.
Passe-Crassane pears require a 3-month chilling treatment at 0 degrees C to be able to produce ethylene and ripen autonomously after subsequent rewarming. The chilling treatment strongly stimulated ACC oxidase activity, and to a lesser extent ACC synthase activity. At the same time, the levels of mRNAs hybridizing to ACC synthase and ACC oxidase probes increased dramatically. Fruit stored at 18 degrees C immediately after harvest did not exhibit any of these changes, while fruit that had been previously chilled exhibited a burst of ethylene production associated with high activity of ACC oxidase and ACC synthase upon rewarming. ACC oxidase mRNA strongly accumulated in rewarmed fruits, while ACC synthase mRNA level decreased. The chilling-induced accumulation of ACC synthase and ACC oxidase transcripts was strongly reduced when ethylene action was blocked during chilling with 1-methylcyclopropene (1-MCP). Upon rewarming ACC synthase and ACC oxidase transcripts rapidly disappeared in 1-MCP-treated fruits. A five-week treatment of non-chilled fruits with the ethylene analog propylene led to increased expression of ACC oxidase and to ripening. However, ethylene synthesis, ACC synthase activity and ACC synthase mRNAs remained at very low level. Our data indicate that ACC synthase gene expression is regulated by ethylene only during, or after chilling treatment, while ACC oxidase gene expression can be induced separately by either chilling or ethylene.
帕塞 - 克拉萨讷梨需要在0摄氏度下进行3个月的冷藏处理,以便能够产生乙烯并在随后升温后自主成熟。冷藏处理强烈刺激了ACC氧化酶的活性,并在较小程度上刺激了ACC合酶的活性。与此同时,与ACC合酶和ACC氧化酶探针杂交的mRNA水平急剧增加。收获后立即储存在18摄氏度的果实没有表现出任何这些变化,而之前经过冷藏的果实在升温时表现出乙烯产量的激增,同时伴随着ACC氧化酶和ACC合酶的高活性。ACC氧化酶mRNA在升温的果实中强烈积累,而ACC合酶mRNA水平下降。当在冷藏期间用1 - 甲基环丙烯(1 - MCP)阻断乙烯作用时,冷藏诱导的ACC合酶和ACC氧化酶转录本的积累被强烈减少。在升温时,ACC合酶和ACC氧化酶转录本在1 - MCP处理的果实中迅速消失。用乙烯类似物丙烯对未冷藏的果实进行为期五周的处理导致ACC氧化酶表达增加并成熟。然而,乙烯合成、ACC合酶活性和ACC合酶mRNA水平仍处于非常低的水平。我们的数据表明,ACC合酶基因表达仅在冷藏处理期间或之后受乙烯调节,而ACC氧化酶基因表达可以由冷藏或乙烯单独诱导。