New Zealand Institute of Plant and Food Research, Auckland 1142, New Zealand.
Plant Physiol. 2010 May;153(1):294-305. doi: 10.1104/pp.109.151092. Epub 2010 Mar 17.
Fruit softening in apple (Malus x domestica) is associated with an increase in the ripening hormone ethylene. Here, we show that in cv Royal Gala apples that have the ethylene biosynthetic gene ACC OXIDASE1 suppressed, a cold treatment preconditions the apples to soften independently of added ethylene. When a cold treatment is followed by an ethylene treatment, a more rapid softening occurs than in apples that have not had a cold treatment. Apple fruit softening has been associated with the increase in the expression of cell wall hydrolase genes. One such gene, POLYGALACTURONASE1 (PG1), increases in expression both with ethylene and following a cold treatment. Transcriptional regulation of PG1 through the ethylene pathway is likely to be through an ETHYLENE-INSENSITIVE3-like transcription factor, which increases in expression during apple fruit development and transactivates the PG1 promoter in transient assays in the presence of ethylene. A cold-related gene that resembles a COLD BINDING FACTOR (CBF) class of gene also transactivates the PG1 promoter. The transactivation by the CBF-like gene is greatly enhanced by the addition of exogenous ethylene. These observations give a possible molecular mechanism for the cold- and ethylene-regulated control of fruit softening and suggest that either these two pathways act independently and synergistically with each other or cold enhances the ethylene response such that background levels of ethylene in the ethylene-suppressed apples is sufficient to induce fruit softening in apples.
苹果(Malus x domestica)的果实软化与成熟激素乙烯的增加有关。在这里,我们表明,在 cv Royal Gala 苹果中,抑制乙烯生物合成基因 ACC OXIDASE1,冷处理会使苹果在不添加乙烯的情况下预先软化。当冷处理后再进行乙烯处理时,苹果的软化速度比未经冷处理的苹果更快。苹果果实软化与细胞壁水解酶基因表达的增加有关。这样的一个基因,多聚半乳糖醛酸酶 1(PG1),在乙烯和冷处理后都会增加表达。PG1 通过乙烯途径的转录调控可能是通过一个 ETHYLENE-INSENSITIVE3 样转录因子,该转录因子在苹果果实发育过程中表达增加,并在乙烯存在的瞬时测定中激活 PG1 启动子。一个类似于 COLD BINDING FACTOR(CBF)类基因的冷相关基因也能激活 PG1 启动子。CBF 样基因的转录激活在外源乙烯的添加下大大增强。这些观察结果为果实软化的冷和乙烯调控提供了可能的分子机制,并表明这两个途径可能独立或协同作用,或者冷增强了乙烯的反应,使得乙烯抑制苹果中的背景乙烯水平足以诱导苹果果实软化。