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草莓基因FaGAST通过抑制细胞伸长影响植物生长。

The strawberry gene FaGAST affects plant growth through inhibition of cell elongation.

作者信息

de la Fuente José I, Amaya Iraida, Castillejo Cristina, Sánchez-Sevilla José F, Quesada Miguel A, Botella Miguel A, Valpuesta Victoriano

机构信息

Departamento de Biología Molecular y Bioquímica, Universidad de Málaga, 29071 Málaga, Spain.

出版信息

J Exp Bot. 2006;57(10):2401-11. doi: 10.1093/jxb/erj213. Epub 2006 Jun 27.

Abstract

The strawberry (Fragaria x ananassa) FaGAST gene encodes a small protein with 12 cysteine residues conserved in the C-terminal region similar to a group of proteins identified in other species with diverse assigned functions such as cell division, elongation, or elongation arrest. This gene is expressed in the fruit receptacle, with two peaks during ripening at the white and the red-ripe stages, both coincident with an arrest in the growth pattern. Expression is also high in the roots but confined to the cells at the end of the elongation zone. Exogenous application of gibberellin increased the transcript level of the FaGAST gene in strawberry fruits. Ectopic expression of FaGAST in transgenic Fragaria vesca under the control of the CaMV-35S promoter caused both delayed growth of the plant and fruits with reduced size. The same growth defect was observed in Arabidopsis thaliana plants overexpressing FaGAST. In addition, the transgenic plants exhibited late flowering and low sensitivity to exogenous gibberellin. Taken together, the expression pattern, the regulation by gibberellin, and the transgenic phenotypes point to a role for FaGAST in arresting cell elongation during strawberry fruit ripening.

摘要

草莓(Fragaria x ananassa)的FaGAST基因编码一种小蛋白,其C端区域有12个半胱氨酸残基保守,类似于在其他物种中鉴定出的一组具有多种指定功能的蛋白,如细胞分裂、伸长或伸长停滞。该基因在果实花托中表达,在成熟过程中有两个峰值,分别出现在白色和红熟阶段,均与生长模式的停滞同时发生。在根中表达也很高,但仅限于伸长区末端的细胞。外源施用赤霉素可提高草莓果实中FaGAST基因的转录水平。在CaMV-35S启动子控制下,FaGAST在转基因野草莓中的异位表达导致植株和果实生长延迟且尺寸减小。在过表达FaGAST的拟南芥植株中也观察到了相同的生长缺陷。此外,转基因植株表现出开花延迟和对外源赤霉素的低敏感性。综上所述,表达模式、赤霉素的调控以及转基因表型表明FaGAST在草莓果实成熟过程中阻止细胞伸长方面发挥作用。

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