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桃基因组中 ARF(生长素反应因子)基因家族的全基因组鉴定及其表达分析。

Genome-wide identification of the ARF (auxin response factor) gene family in peach and their expression analysis.

机构信息

College of Bioscience and Resources Environment, Beijing University of Agriculture, Beijing, 102206, China.

College of Plant Science and Technology, Beijing University of Agriculture, Beijing, 102206, China.

出版信息

Mol Biol Rep. 2020 Jun;47(6):4331-4344. doi: 10.1007/s11033-020-05525-0. Epub 2020 May 19.

Abstract

Auxin response factors (ARFs) are important transcription factors to relay auxin signaling. From the Genome Database for Rosaceae (GDR), we identified 17 peach ARF genes (PpARFs) encoding the proteins with three conserved domains. Their gene structure and functional domains were analyzed. Their transcriptional response to exogenous auxin treatment was tested and confirmed. We also expressed PpARF-GFP fusion reporters in tobacco leaves and observed their nuclear localization by fluorescence microscopy. It has been known that ARFs are widely involved in fruit development. We compared the expression pattern of all PpARFs in different tissues including the fruits at different developmental stages of two peach cultivars, "melting" and "stony hard". We found eight PpARFs were more highly expressed in the "melting" peaches compared to "stony hard" peaches, while three PpARFs were more highly expressed in "stony hard" peaches. Among them, the expression difference of PpARF4, PpARF7 and PpARF12 was large, and their function in regulating fruit development and fruit quality was discussed. Our work provides a basis for further exploring the mechanisms underlying auxin regulated peach fruit ripening.

摘要

生长素响应因子(ARFs)是一种重要的转录因子,可传递生长素信号。从蔷薇科基因组数据库(GDR)中,我们鉴定了 17 个桃 ARF 基因(PpARFs),它们编码具有三个保守结构域的蛋白质。分析了它们的基因结构和功能域。测试并证实了它们对外源生长素处理的转录响应。我们还在烟草叶片中表达了 PpARF-GFP 融合报告基因,并通过荧光显微镜观察到它们的核定位。已知 ARFs 广泛参与果实发育。我们比较了两个桃品种(“融溶”和“石坚”)不同发育阶段果实等不同组织中所有 PpARFs 的表达模式。我们发现 8 个 PpARFs 在“融溶”桃中的表达水平高于“石坚”桃,而 3 个 PpARFs 在“石坚”桃中的表达水平更高。其中,PpARF4、PpARF7 和 PpARF12 的表达差异较大,并讨论了它们在调节果实发育和果实品质中的功能。我们的工作为进一步探索生长素调控桃果实成熟的机制提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb44/7295738/1ed736742b48/11033_2020_5525_Fig1_HTML.jpg

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