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木本草莓中 YUCCA6 黄素单加氧酶基因的生长素生物合成。

Auxin biosynthesis by the YUCCA6 flavin monooxygenase gene in woodland strawberry.

机构信息

Forestry and Fruit Tree Research Institute, Shanghai Key Laboratory of Protected Horticultural Technology, Shanghai Academy of Agricultural Sciences (SAAS), Shanghai, 201403, China; Shanghai Key Laboratory of Agricultural Genetics and Breeding, Institute of Biotechnology, SAAS, Shanghai, 201106, China.

出版信息

J Integr Plant Biol. 2014 Apr;56(4):350-63. doi: 10.1111/jipb.12150. Epub 2014 Mar 24.

Abstract

Auxin has been regarded as the main signal molecule coordinating the growth and ripening of fruits in strawberry, the reference genomic system for Rosaceae. The mechanisms regulating auxin biosynthesis in strawberry are largely elusive. Recently, we demonstrated that two YUCCA genes are involved in flower and fruit development in cultivated strawberry. Here, we show that the woodland strawberry (Fragaria vesca L.) genome harbors nine loci for YUCCA genes and eight of them encode functional proteins. Transcription pattern in different plant organs was different for all eight FvYUCs. Functionality of the FvYUC6 gene was studied in transgenic strawberry overexpressing FvYUC6, which showed typical high-auxin phenotypes. Overexpression of FvYUC6 also delayed flowering and led to complete male sterility in F. vesca. Additionally, specific repression of FvYUC6 expression by RNA interference significantly inhibited vegetative growth and reduced plant fertility. The development of leaves, roots, flowers, and fruits was greatly affected in FvYUC6-repressed plants. Expression of a subset of auxin-responsive genes was well correlated with the changes of FvYUC6 transcript levels and free indole-3-acetic acid levels in transgenic strawberry. These observations are consistent with an important role of FvYUC6 in auxin synthesis, and support a main role of the gene product in vegetative and reproductive development in woodland strawberry.

摘要

生长素被认为是草莓(蔷薇科的参考基因组系统)中协调果实生长和成熟的主要信号分子。然而,调控草莓中生长素生物合成的机制在很大程度上还不清楚。最近,我们证明了两个 YUCCA 基因参与了栽培草莓的花和果实发育。在这里,我们展示了林地草莓(Fragaria vesca L.)基因组中存在 9 个 YUCCA 基因座,其中 8 个编码功能性蛋白质。所有 8 个 FvYUCs 在不同的植物器官中的转录模式都不同。在过表达 FvYUC6 的转基因草莓中研究了 FvYUC6 基因的功能,该基因表现出典型的高生长素表型。FvYUC6 的过表达也导致了草莓的开花延迟和完全雄性不育。此外,通过 RNA 干扰特异性抑制 FvYUC6 的表达显著抑制了营养生长并降低了植物的育性。在 FvYUC6 抑制的植物中,叶片、根、花和果实的发育受到严重影响。一组生长素反应基因的表达与转基因草莓中 FvYUC6 转录本水平和游离吲哚-3-乙酸水平的变化密切相关。这些观察结果与 FvYUC6 在生长素合成中的重要作用一致,并支持该基因产物在林地草莓营养和生殖发育中的主要作用。

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