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参与种皮和胚乳发育的基因的共表达促进了葡萄种子败育。

The co-expression of genes involved in seed coat and endosperm development promotes seed abortion in grapevine.

机构信息

College of Horticulture, Northwest A & F University, Yangling, 712100, Shaanxi, People's Republic of China.

Key Laboratory of Horticultural Plant Biology and Germplasm Innovation in Northwest China, Ministry of Agriculture, College of Horticulture, Northwest A & F University, Yangling, 712100, Shaanxi, People's Republic of China.

出版信息

Planta. 2021 Sep 28;254(5):87. doi: 10.1007/s00425-021-03728-8.

Abstract

The seed coat gene VviAGL11 coordinates with endosperm development genes FIS2, PHERESE1 and IKU2 and functions as the key regulator in seed development and abortion processes in grapevine. Seed development is essential for the reproduction of flowering plants. Seed abortion is a specific characteristic that produces seedless berries and is often observed in cultivated grapevines. Although seedlessness is an important trait for table and dried grapevine production, the mechanism of seed abortion remains poorly understood. This research aimed to analyze the co-expression of the seed coat development gene VviAGL11 and the endosperm development genes FERTILIZATION INDEPENDENT SEED2 (FIS2), PHERESE1 and HAIKU2 (IKU2) that regulate seedless fruit development in grapevine. The transcript levels of VviAGL11, FIS2, PHERESE1 and IKU2 all decreased during seed abortion in the seedless grape 'Thompson Seedless' plants, compared to those of the seeded grape 'Pinot Noir'. The transcript levels of the salicylic acid (SA)-dependent defense response genes EDS1, NPR1, NDR1 and SID2 were higher in 'Thompson Seedless' than 'Pinot Noir' during seed development. Also, WRKY3, WRKY6 and WRKY52, which participate in the SA pathway, were higher expressed in 'Thompson Seedless' than in 'Pinot Noir', indicating that SA-dependent defense responses may regulate seed abortion. The genes related to synthesis and metabolism of gibberellic acid (GA) and abscisic acid (ABA) also showed differential expression between 'Thompson Seedless' and 'Pinot Noir'. Exogenous applications of plant growth regulators (PGRs) to inflorescences of three stenospermocarpy grapevines before flowering showed that GA was critical prominently in seed development. Therefore, the co-expression of seed coat and endosperm development-related genes, SA pathway genes, and genes for the synthesis and metabolism of GA together enhance seed abortion in seedless grapes.

摘要

种皮基因 VviAGL11 与胚乳发育基因 FIS2、 PHERESE1 和 IKU2 协同作用,作为葡萄种子发育和败育过程中的关键调控因子。种子发育对于有花植物的繁殖至关重要。种子败育是一种产生无核浆果的特定特征,在栽培的葡萄中经常观察到。尽管无核是用于鲜食和葡萄干生产的重要特性,但种子败育的机制仍知之甚少。本研究旨在分析与种皮发育基因 VviAGL11 以及胚乳发育基因 FERTILIZATION INDEPENDENT SEED2 (FIS2)、 PHERESE1 和 HAIKU2 (IKU2) 共同表达的情况,这些基因调节葡萄中的无核果实发育。与有核葡萄‘Pinot Noir’相比,无核葡萄‘Thompson Seedless’植株的种子败育过程中,VviAGL11、FIS2、 PHERESE1 和 IKU2 的转录水平均降低。在种子发育过程中,‘Thompson Seedless’中水杨酸(SA)依赖的防御反应基因 EDS1、 NPR1、 NDR1 和 SID2 的转录水平高于‘Pinot Noir’。此外,参与 SA 途径的 WRKY3、WRKY6 和 WRKY52 在‘Thompson Seedless’中的表达高于‘Pinot Noir’,表明 SA 依赖的防御反应可能调节种子败育。与赤霉素(GA)和脱落酸(ABA)合成和代谢相关的基因在‘Thompson Seedless’和‘Pinot Noir’之间也表现出差异表达。在开花前向三个闭花授粉葡萄品种的花序上施用植物生长调节剂(PGRs)表明,GA 在种子发育中起着至关重要的作用。因此,种皮和胚乳发育相关基因、SA 途径基因以及 GA 合成和代谢相关基因的共同表达增强了无核葡萄中的种子败育。

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