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鉴定基因揭示了它们的网络参与通过响应多激素信号调节葡萄种子败育。

Identification of Genes Reveals Their Network's Involvement in the Modulation of Seed Abortion via Responding Multi-Hormone Signals in Grapevines.

机构信息

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

出版信息

Int J Mol Sci. 2024 Sep 12;25(18):9849. doi: 10.3390/ijms25189849.

Abstract

The formation of seedless traits is regulated by multiple factors. AGLs, which belong to the MADS-box family, were reported to be important regulators in this process; however, the underlying mechanism remains elusive. Here, we identified the VvAGL sub-family genes during the seed abortion process in seedless grapevine cv. 'JingkeJing' and found 40 differentially expressed VvAGL members and 1069 interacting proteins in this process. Interestingly, almost all members and their interacting proteins involved in the tryptophan metabolic pathway (K14486) and participated in the phytohormone signalling (KO04075) pathway, including the growth hormone (IAA), salicylic acid (SA), abscisic acid (ABA), cytokinin (CTK), and ethylene signalling pathways. The promoters of AGL sub-family genes contain cis-elements in response to hormones such as IAA, ABA, CTK, SA, and ETH, implying that they might respond to multi-hormone signals and involve in hormone signal transductions. Further expression analysis revealed , , and had the highest expression at the critical period of seed abortion, and there were positive correlations between ETH--, ABA-, and SA- in promoting seed abortion but negative feedback between IAA-- and CTK-. Furthermore, many genes in the IAA, ABA, SA, CTK, and ETH pathways had a special expressional pattern in the seed, whereby we developed a regulatory network mediated by VvAGLs by responding to multihormonal crosstalk during grape seed abortion. Our findings provide new insights into the regulatory network of VvAGLs in multi-hormone signalling to regulate grape seed abortion, which could be helpful in the molecular breeding of high-quality seedless grapes.

摘要

无籽性状的形成受多种因素调控。AGL 属于 MADS 框家族,据报道在这个过程中是重要的调控因子;然而,其潜在机制尚不清楚。在这里,我们在无核葡萄品种‘京科晶’的种子败育过程中鉴定了 VvAGL 亚家族基因,发现了 40 个差异表达的 VvAGL 成员和 1069 个相互作用蛋白参与了这个过程。有趣的是,几乎所有参与色氨酸代谢途径(K14486)和植物激素信号转导(KO04075)途径的成员及其相互作用蛋白,包括生长激素(IAA)、水杨酸(SA)、脱落酸(ABA)、细胞分裂素(CTK)和乙烯信号途径,都参与了这个过程。AGL 亚家族基因的启动子包含对激素(如 IAA、ABA、CTK、SA 和 ETH)的响应顺式元件,这意味着它们可能对多激素信号做出响应,并参与激素信号转导。进一步的表达分析表明,在种子败育的关键时期,、和具有最高的表达水平,并且 ETH--、ABA-和 SA-在促进种子败育方面呈正相关,但 IAA--和 CTK-之间呈负反馈关系。此外,IAA、ABA、SA、CTK 和 ETH 途径中的许多基因在种子中有特殊的表达模式,我们通过响应多激素相互作用,在葡萄种子败育过程中构建了一个由 VvAGLs 介导的调控网络。我们的研究结果为 VvAGLs 在多激素信号转导中调控葡萄种子败育的调控网络提供了新的见解,这可能有助于高品质无核葡萄的分子育种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31c2/11432271/ddabad09400f/ijms-25-09849-g001.jpg

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