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栽培草莓中 HANABA TARANU 的过表达延迟开花,并导致花和果实发育缺陷。

Overexpression of HANABA TARANU in cultivated strawberry delays flowering and leads to defective flower and fruit development.

机构信息

College of Horticulture, China Agricultural University, Beijing 100193, PR China.

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

出版信息

Plant Sci. 2022 Aug;321:111307. doi: 10.1016/j.plantsci.2022.111307. Epub 2022 May 16.

Abstract

Cultivated strawberry is one of the most important horticultural crops in the world, and the fruit yields and economic benefits are largely dependent on the quality of floral initiation and floral organ development. However, the underlying regulatory mechanisms controlling these processes in strawberry are largely unknown. In this study, the function of a GATA transcription factor gene, HANABA TARANU (HAN), in floral initiation and floral organ development was characterized in strawberry. FaHAN is expressed in four whorls of the floral organs. Overexpression (OE) of FaHAN in the strawberry cultivar 'Benihoppe' delayed flowering by at least one week by affecting key genes, such as TERMINAL FLOWER 1, APETALA 1…and increased the number of runners. FaHAN-OE plants also showed malformed floral organs, especially the deformed stigmas with disordered arrangement. Several key genes for pistil apical development such as STYLISH, YUCCA 1, and auxin-related genes such as GH3.5, PIN-FORMED 1, which play important roles in pistil primordium development in many plant species, were all down-regulated in FaHAN-OE plants. Further observations showed that the fruit deformity rate was nearly 4-fold higher than in control plants. Together, this study provides a new approach for exploring floral initiation and floral organ development in strawberry.

摘要

培育的草莓是世界上最重要的园艺作物之一,其果实产量和经济效益在很大程度上取决于花的起始和花器官发育的质量。然而,草莓中控制这些过程的潜在调控机制在很大程度上尚不清楚。在本研究中,我们对草莓中一个 GATA 转录因子基因 HANABA TARANU(HAN)在花的起始和花器官发育中的功能进行了研究。FaHAN 在花器官的四个轮中表达。在草莓品种‘Benihoppe’中过表达 FaHAN 通过影响关键基因,如 TERMINAL FLOWER 1、APETALA 1……至少延迟开花一周,并增加匍匐茎的数量。FaHAN-OE 植株还表现出花器官畸形,特别是柱头畸形,排列紊乱。几个关键基因参与雌蕊顶端发育,如 STYLISH、YUCCA 1 和生长素相关基因,如 GH3.5、PIN-FORMED 1,它们在许多植物物种的雌蕊原基发育中都起着重要作用,在 FaHAN-OE 植株中均下调。进一步观察表明,果实畸形率比对照植株高近 4 倍。综上所述,本研究为探索草莓的花的起始和花器官发育提供了新的途径。

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