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水稻卵形家族蛋白2(OFP2)改变激素稳态和血管系统发育。

Rice Ovate Family Protein 2 (OFP2) alters hormonal homeostasis and vasculature development.

作者信息

Schmitz Aaron J, Begcy Kevin, Sarath Gautam, Walia Harkamal

机构信息

Department of Agronomy and Horticulture, University of Nebraska-Lincoln, Lincoln, NE 68583, United States.

USDA-ARS, University of Nebraska-Lincoln, Lincoln, NE 68583, United States.

出版信息

Plant Sci. 2015 Dec;241:177-88. doi: 10.1016/j.plantsci.2015.10.011. Epub 2015 Oct 21.

Abstract

OFP (Ovate Family Protein) is a transcription factor family found only in plants. In dicots, OFPs control fruit shape and secondary cell wall biosynthesis. OFPs are also thought to function through interactions with KNOX and BELL transcription factors. Here, we have functionally characterized OsOFP2, a member of the OFP subgroup associated with regulating fruit shape. OsOFP2 was found to localize to the nucleus and to the cytosol. A putative nuclear export signal was identified within the OVATE domain and was required for the localization of OsOFP2 to distinct cytosolic spots. Rice plants overexpressing OsOFP2 were reduced in height and exhibited altered leaf morphology, seed shape, and positioning of vascular bundles in stems. Transcriptome analysis indicated disruptions of genes associated with vasculature development, lignin biosynthesis, and hormone homeostasis. Reduced expression of the gibberellin biosynthesis gene GA 20-oxidase 7 coincided with lower gibberellin content in OsOFP2 overexpression lines. Also, we found that OsOFP2 was expressed in plant vasculature and determined that putative vascular development KNOX and BELL proteins interact with OsOFP2. KNOX and BELL genes are known to suppress gibberellin biosynthesis through GA20ox gene regulation and can restrict lignin biosynthesis. We propose that OsOFP2 could modulate KNOX-BELL function to control diverse aspects of development including vasculature development.

摘要

卵形家族蛋白(OFP)是一种仅在植物中发现的转录因子家族。在双子叶植物中,OFP控制果实形状和次生细胞壁生物合成。OFP也被认为通过与KNOX和BELL转录因子相互作用发挥功能。在此,我们对与调控果实形状相关的OFP亚组成员OsOFP2进行了功能鉴定。发现OsOFP2定位于细胞核和细胞质。在OVATE结构域内鉴定出一个假定的核输出信号,该信号是OsOFP2定位于不同细胞质斑点所必需的。过表达OsOFP2的水稻植株高度降低,叶片形态、种子形状以及茎中维管束的位置发生改变。转录组分析表明与脉管系统发育、木质素生物合成和激素稳态相关的基因受到破坏。赤霉素生物合成基因GA 20-氧化酶7的表达降低与OsOFP2过表达株系中赤霉素含量降低相一致。此外,我们发现OsOFP2在植物脉管系统中表达,并确定假定的参与维管发育的KNOX和BELL蛋白与OsOFP2相互作用。已知KNOX和BELL基因通过GA20ox基因调控抑制赤霉素生物合成,并能限制木质素生物合成。我们提出,OsOFP2可以调节KNOX-BELL功能,以控制包括脉管系统发育在内的多个发育方面。

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