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首页> 外文期刊>Plant and cell physiology >Apple MdACS6 Regulates Ethylene Biosynthesis During Fruit Development Involving Ethylene-Responsive Factor
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Apple MdACS6 Regulates Ethylene Biosynthesis During Fruit Development Involving Ethylene-Responsive Factor

机译:苹果MdACS6调节涉及乙烯响应因子的果实发育过程中的乙烯生物合成。

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Ethylene biosynthesis in plants involves different 1-aminocyclopropane-1-carboxylic acid synthase (ACS) genes. The regulation of each ACS gene during fruit development is unclear. Here, we characterized another apple (Malus X domestica) ACS gene, MdACS6. The transcript of MdACS6 was observed not only in fruits but also in other tissues. During fruit development, MdACS6 was initiated at a much earlier stage, whereas MdACS3a and MdACS1 began to be expressed at 35 d before harvest and immediateley after harvest, respectively. Moreover, the enzyme activity of MdACS6 was significantly lower than that of MdACS3a and MdACS1, accounting for the low ethylene biosynthesis in young fruits. Overexpression of MdACS6 (MdACS6-OE) by transient assay in apple showed enhanced ethylene production, and MdACS3a was induced in MdACS6-OE fruits but not in control fruits. In MdACS6 apple fruits silenced by the virus-induced gene silencing (VIGS) system (MdACS6-AN), neither ethylene production nor MdACS3a transcript was detectable. In order to explore the mechanism through which MdACS3a was induced in MdACS6-OE fruits, we investigated the expression of apple ethylene-responsive factor (ERF) genes. The results showed that the expression of MdERF2 was induced in MdACS6-OE fruits and inhibited in MdACS6-AN fruits. Yeast one-hybrid assay showed that MdERF2 protein could bind to the promoter of MdACS3a. Moreover, down-regulation of MdERF2 in apple flesh callus led to a decrease of MdACS3a expression, demonstrating the regulation of MdERF2 on MdACS3a. The mechanism through which MdACS6 regulates the action of MdACS3a was discussed.
机译:植物中的乙烯生物合成涉及不同的1-氨基环丙烷-1-羧酸合酶(ACS)基因。果实发育过程中每个ACS基因的调控尚不清楚。在这里,我们表征了另一个苹果(Malus X domestica)ACS基因MdACS6。 MdACS6的转录本不仅在水果中而且在其他组织中均被观察到。在果实发育过程中,MdACS6在较早的阶段启动,而MdACS3a和MdACS1分别在收获前35天和收获后立即表达。此外,MdACS6的酶活性明显低于MdACS3a和MdACS1的酶活性,这说明年轻果实中乙烯的生物合成较低。通过瞬时测定法在苹果中过表达MdACS6(MdACS6-OE)显示出增加的乙烯产量,并且在MdACS6-OE果实中诱导了MdACS3a,但在对照果实中没有诱导。在被病毒诱导的基因沉默(VIGS)系统(MdACS6-AN)沉默的MdACS6苹果果实中,乙烯产量和MdACS3a转录本均不可检测。为了探索MdACS6-OE果实中诱导MdACS3a的机制,我们研究了苹果乙烯反应因子(ERF)基因的表达。结果表明,MdACS6-OE果实诱导了MdERF2的表达,而MdACS6-AN果实抑制了MdERF2的表达。酵母一杂交实验表明,MdERF2蛋白可与MdACS3a启动子结合。此外,苹果肉愈伤组织中MdERF2的下调导致MdACS3a表达的降低,表明MdERF2对MdACS3a的调节。讨论了MdACS6通过其调节MdACS3a作用的机制。

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