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The Arabidopsis Aleurone Layer Responds to Nitric Oxide Gibberellin and Abscisic Acid and Is Sufficient and Necessary for Seed Dormancy

机译:拟南芥Aleurone层响应一氧化氮赤霉素和脱落酸是充足和必要的种子休眠。

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摘要

Seed dormancy is a common phase of the plant life cycle, and several parts of the seed can contribute to dormancy. Whole seeds, seeds lacking the testa, embryos, and isolated aleurone layers of Arabidopsis (Arabidopsis thaliana) were used in experiments designed to identify components of the Arabidopsis seed that contribute to seed dormancy and to learn more about how dormancy and germination are regulated in this species. The aleurone layer was found to be the primary determinant of seed dormancy. Embryos from dormant seeds, however, had a lesser growth potential than those from nondormant seeds. Arabidopsis aleurone cells were examined by light and electron microscopy, and cell ultrastructure was similar to that of cereal aleurone cells. Arabidopsis aleurone cells responded to nitric oxide (NO), gibberellin (GA), and abscisic acid, with NO being upstream of GA in a signaling pathway that leads to vacuolation of protein storage vacuoles and abscisic acid inhibiting vacuolation. Molecular changes that occurred in embryos and aleurone layers prior to germination were measured, and these data show that both the aleurone layer and the embryo expressed the NO-associated gene AtNOS1, but only the embryo expressed genes for the GA biosynthetic enzyme GA3 oxidase.
机译:种子休眠是植物生命周期的一个常见阶段,种子的几个部分可以促进休眠。整个种子,缺少睾丸的种子,胚和拟南芥(Arabidopsis thaliana)的分离的糊粉层用于设计实验中,以鉴定有助于种子休眠的拟南芥种子成分,并了解有关如何调节休眠和萌发的更多信息。种类。发现糊粉层是种子休眠的主要决定因素。但是,休眠种子的胚比非休眠种子的胚具有较小的生长潜力。通过光学和电子显微镜检查拟南芥糊粉细胞,其细胞超微结构类似于谷物糊粉细胞。拟南芥糊粉细胞对一氧化氮(NO),赤霉素(GA)和脱落酸有反应,NO在信号通路中位于GA的上游,导致蛋白质贮藏液泡的空泡化,而脱落酸抑制液泡化。测量了萌发前胚胎和糊粉层中发生的分子变化,这些数据表明糊粉层和胚层均表达了NO相关基因AtNOS1,但只有胚表达了GA生物合成酶GA3氧化酶的基因。

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