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首页> 外文期刊>BMC Plant Biology >Transcriptome analysis unravels spatiotemporal modulation of phytohormone-pathway expression underlying gibberellin-induced parthenocarpic fruit set in San Pedro-type fig ( Ficus carica L.)
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Transcriptome analysis unravels spatiotemporal modulation of phytohormone-pathway expression underlying gibberellin-induced parthenocarpic fruit set in San Pedro-type fig ( Ficus carica L.)

机译:转录组分析揭示了赤霉素诱导的无花果(Ficus carica L.)设置的赤霉素诱导的单性结实的植物激素途径表达的时空调节。

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Gibberellin (GA) treatments can induce parthenocarpy in the main crop of San Pedro-type figs, the native non-parthenocarpic fruit, however, the underlying mechanism is still largely unclear. In our study, GA3 was applied to San Pedro-type fig main crop at anthesis. Sharply increased GA3 content was detected in both female flowers and receptacle, along with significantly decreased indole-3-acetic acid (IAA), zeatin and abscisic acid (ABA) levels in female flowers, and increased zeatin peak intensity and earlier ABA peak in receptacles. Transcriptome comparison between control and treatment groups identified more differentially expressed genes (DEGs) in receptacles than in female flowers 2 and 4?days after treatment (DAT); 10 DAT, the number of DEGs became similar in the two tissues. Synchronized changing trends of phytohormone-associated DEGs were observed in female flowers and receptacles with fruit development. Modulation of ethylene and GA signaling and auxin metabolism by exogenous GA3 occurred mainly 2 DAT, whereas changes in auxin, cytokinin and ABA signaling occurred mainly 10 DAT. Auxin-, ethylene- and ABA-metabolism and response pathways were largely regulated in the two tissues, mostly 2 and 10 DAT. The major components altering fig phytohormone metabolic and response patterns included downregulated GA2ox, BAS1, NCED and ACO, and upregulated ABA 8′-h and AUX/IAA. Thus GA-induced parthenocarpy in fig is co-modulated by the female flowers and receptacle, and repression of ABA and ethylene biosynthesis and GA catabolism might be the main forces deflecting abscission and producing fig parthenocarpy.
机译:赤霉素(GA)处理可以在San Pedro型无花果的主要农作物(天然的非无果皮的果实)中诱导单性结实,但是,其潜在机理仍不清楚。在我们的研究中,GA3应用于花期的San Pedro型无花果主要农作物。雌花和容器中的GA3含量均显着增加,雌花中吲哚-3-乙酸(IAA),玉米蛋白和脱落酸(ABA)的水平显着降低,并且容器中的玉米蛋白峰强度增加且ABA峰更早。对照组和治疗组之间的转录组比较发现,在处理后2天和4天(DAT),雌花中的差异表达基因(DEGs)比雌花中的差异更大。 10 DAT时,两个组织中DEG的数量变得相似。在雌花和具有果实发育的容器中观察到了与植物激素相关的DEG的同步变化趋势。外源GA3对乙烯和GA信号和植物生长素代谢的调节主要发生在2 DAT,而生长素,细胞分裂素和ABA信号的变化主要发生在10 DAT。生长素,乙烯和ABA的代谢和反应途径在两个组织中受到很大的调节,大部分为2和10 DAT。改变无花果植物激素代谢和反应模式的主要成分包括下调GA2ox,BAS1,NCED和ACO,上调ABA 8'-h和AUX / IAA。因此,GA诱导的无花果单性结实是由雌花和花托共同调节的,ABA抑制和乙烯的生物合成以及GA分解代谢可能是阻止脱落并产生无花果单性结实的主要力量。

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