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miR3633a 通过响应赤霉素来调控葡萄种胚败育。

miR3633a- Module Conducts Grape Seed-Embryo Abortion in Response to Gibberellin.

机构信息

College of Horticulture, Nanjing Agricultural University, Nanjing 210095, China.

Department of Plant Biology, Faculty of Biological Science, Tarbiat Modares University, Tehran P.O. Box 14115-111, Iran.

出版信息

Int J Mol Sci. 2022 Aug 7;23(15):8767. doi: 10.3390/ijms23158767.

Abstract

Seedlessness is one of the important quality and economic traits favored by grapevine consumers, which are mainly affected by phytohormones, especially gibberellin (GA). GA is widely utilized in seedless berry production and could effectively induce grape seed embryo abortion. However, the molecular mechanism underlying this process, like the role of RNA silencing in the biosynthesis pathway of GA remains elusive. Here, () as the last key enzyme in GA biosynthesis was predicated as a potential target gene for miR3633a, and two of them were identified as a GA response in grape berries. We also analyzed the promoter regions of encoding GA biosynthesis and found the hormone-responsive elements to regulate grape growth and development. The cleavage interaction between VvmiR3633a and was validated by RLM-RACE and the transient co-transformation technique in tobacco in vivo. Interestingly, during GA-induced grape seed embryo abortion, exogenous GA promoted the expression of VvmiR3633a, thereby mainly repressing the level of in seed embryos. We also observed a negative correlation between down-regulated / and up-regulated /, of which GA inactivation was greater than GA synthesis, inhibited active GA content, accompanied by the reduction of VvSOD and VvCAT expression levels and enzymatic activities. These series of changes might be the main causes of grape seed embryo abortion. In conclusion, we have preliminarily drawn a schematic mode of GA-mediated VvmiR3633a and related genes regulatory network during grape seed abortion induced by exogenous GA. Our findings provide novel insights into the GA-responsive roles of the VvmiR3633a- module in the modulation of grape seed-embryo abortion, which has implications for the molecular breeding of high-quality seedless grape berries.

摘要

无核化是葡萄消费者青睐的重要品质和经济性状之一,主要受植物激素,特别是赤霉素(GA)的影响。GA 广泛应用于无核浆果生产,能有效诱导葡萄种子胚珠败育。然而,这一过程的分子机制,如 RNA 沉默在 GA 生物合成途径中的作用仍不清楚。在这里,()作为 GA 生物合成的最后一个关键酶,被预测为 miR3633a 的潜在靶基因,其中两个被鉴定为葡萄浆果中 GA 的响应基因。我们还分析了编码 GA 生物合成的启动子区域,发现了调节葡萄生长和发育的激素响应元件。VvmiR3633a 与 之间的切割相互作用通过 RLM-RACE 和体内瞬时共转化技术在烟草中得到验证。有趣的是,在 GA 诱导葡萄种子胚珠败育过程中,外源 GA 促进了 VvmiR3633a 的表达,从而主要抑制了种子胚中 的水平。我们还观察到下调的 / 和上调的 / 之间呈负相关,其中 GA 失活大于 GA 合成,抑制活性 GA 含量,同时伴随着 VvSOD 和 VvCAT 表达水平和酶活性的降低。这些变化可能是葡萄种子胚珠败育的主要原因。总之,我们初步描绘了外源性 GA 诱导葡萄种子败育过程中 GA 介导的 VvmiR3633a 及相关基因调控网络的示意模式。我们的研究结果为 VvmiR3633a 模块在 GA 调节葡萄种子胚珠败育中的作用提供了新的见解,为高品质无核葡萄浆果的分子育种提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b40c/9369392/7089475287ee/ijms-23-08767-g001.jpg

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