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首页> 外文期刊>BMC Plant Biology >Involvement of ethylene biosynthesis and signalling in fruit set and early fruit development in zucchini squash (Cucurbita pepo L.)
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Involvement of ethylene biosynthesis and signalling in fruit set and early fruit development in zucchini squash (Cucurbita pepo L.)

机译:乙烯生物合成和信号传导参与西葫芦(Cucurbita pepo L.)的坐果和果实早期发育

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Background We have identified a kind of parthenocarpy in zucchini squash which is associated with an incomplete andromonoecy, i.e. a partial conversion of female into bisexual flowers. Given that andromonoecy in this and other cucurbit species is caused by a reduction of ethylene production in the female flower, the associated parthenocarpic development of the fruit suggested the involvement of ethylene in fruit set and early fruit development. Results We have compared the production of ethylene as well as the expression of 13 ethylene biosynthesis and signalling genes in pollinated and unpollinated ovaries/fruits of two cultivars, one of which is parthenocarpic (Cavili), while the other is non-parthenocarpic (Tosca). In the latter, unpollinated ovaries show an induction of ethylene biosynthesis and ethylene signal transduction pathway genes three days after anthesis, which is concomitant with the initiation of fruit abortion and senescence. Fruit set and early fruit development in pollinated flowers of both cultivars and unpollinated flowers of Cavili is coupled with low ethylene biosynthesis and signalling, which would also explain the partial andromonoecy in the parthenocarpic genotype. The reduction of ethylene production in the ovary cosegregates with parthenocarpy and partial andromonoecy in the selfing progeny of Cavili. Moreover, the induction of ethylene in anthesis (by ethephon treatments) reduced the percentage of bisexual parthenocarpic flowers in Cavili, while the inhibition of ethylene biosynthesis or response (by AVG and STS treatments) induces not only andromonoecy but also the parthenocarpic development of the fruit in both cultivars. Conclusions Results demonstrate that a reduction of ethylene production or signalling in the zucchini flower is able to induce fruit set and early fruit development, and therefore that ethylene is actively involved in fruit set and early fruit development. Auxin and TIBA treatments, inducing fruit set and early fruit development in this species, also inhibit ethylene production and the expression of ethylene biosynthesis and response genes. A model is presented that discusses the crosstalk between ethylene and auxin in the control of fruit set and early fruit development in zucchini squash.
机译:背景技术我们已经确定了西葫芦南瓜中的一种单性结实,其与不完整的雄性生殖有关,即雌性部分转化为双性花。鉴于该葫芦科植物和其他葫芦科植物的雌雄同体性是由雌花中乙烯产量的降低引起的,因此该果实的单性结实发育表明乙烯参与了坐果和果实早期发育。结果我们比较了两个栽培品种的授粉和未授粉卵巢/果实中乙烯的产生以及13个乙烯生物合成和信号转导基因的表达,其中一个是单性结实(Cavili),另一个是非巴氏结实(Tosca) 。在后者中,未授粉的卵巢在花期三天后显示出对乙烯生物合成和乙烯信号转导途径基因的诱导,这与果实流产和衰老的开始同时发生。 Cavili的授粉花和未授粉花的坐果和早期果实发育都伴随着低的乙烯生物合成和信号传导,这也可以解释单性结实基因型的部分雄激素。卡维利自交后代的单性结实和部分雄激素异生导致卵巢中的乙烯产量降低。此外,花粉中乙烯的诱导(通过乙烯利处理)降低了Cavili中双性单性结实花的百分比,而乙烯生物合成或响应的抑制(通过AVG和STS处理)不仅诱导了雄雄同株,还诱导了水果的单性结实发育。在两个品种中。结论结果表明,西葫芦花中乙烯的产生或信号的减少能够诱导结实和果实早期发育,因此乙烯积极参与结实和果实早期发育。生长素和TIBA处理可诱导该树种的坐果和早期果实发育,也抑制乙烯的产生以及乙烯生物合成和响应基因的表达。提出了一个模型,该模型讨论了在西葫芦南瓜中控制乙烯和生长素在坐果和早期果实发育中的串扰。

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