首页> 外文期刊>Plant and cell physiology >AtC3H17, a Non-Tandem CCCH Zinc Finger Protein, Functions as a Nuclear Transcriptional Activator and Has Pleiotropic Effects on Vegetative Development, Flowering and Seed Development in Arabidopsis
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AtC3H17, a Non-Tandem CCCH Zinc Finger Protein, Functions as a Nuclear Transcriptional Activator and Has Pleiotropic Effects on Vegetative Development, Flowering and Seed Development in Arabidopsis

机译:AtC3H17,一种非串联CCCH锌指蛋白,具有核转录激活功能,对拟南芥的营养发育,开花和种子发育具有多效性

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摘要

Despite increasing reports that CCCH zinc finger proteins function in plant development and stress responses, the functions and molecular aspects of many CCCH zinc finger proteins remain uncharacterized. Here, we characterized the biological and molecular functions of AtC3H17, a unique Arabidopsis gene encoding a non-tandem CCCH zinc finger protein. AtC3H17 was ubiquitously expressed throughout the life cycle of Arabidopsis plants and their organs. The rate and ratio of seed germination of atc3h17 mutants were slightly slower and lower, respectively, than those of the wild type (WT), whereas AtC3H17-overexpressing transgenic plants (OXs) showed an enhanced germination rate. atc3h17 mutant seedlings were smaller and lighter than WT seedlings while AtC3H17 OX seedlings were larger and heavier. In regulation of flowering time, atc3h17 mutants showed delayed flowering, whereas AtC3H17 OXs showed early flowering compared with the WT. In addition, overexpression of AtC3H17 affected seed development, displaying abnormalities compared with the WT. AtC3H17 protein was localized to the nucleus and showed transcriptional activation activity in yeast and Arabidopsis protoplasts. The N-terminal region of AtC3H17, containing a conserved EELR-like motif, was necessary for transcriptional activation activity, and the two conserved glutamate residues in the EELR-like motif played an important role in transcriptional activation activity. Real-time PCR and transactivation analyses showed that AtC3H17 might be involved in seed development via transcriptional activation of OLEO1, OLEO2 and CRU3. Our results suggest that AtC3H17 has pleiotropic effects on vegetative development such as seed germination and seedling growth, flowering and seed development, and functions as a nuclear transcriptional activator in Arabidopsis.
机译:尽管越来越多的报道表明CCCH锌指蛋白在植物发育和胁迫响应中起作用,但许多CCCH锌指蛋白的功能和分子方面仍未表征。在这里,我们表征了AtC3H17的生物学和分子功能,AtC3H17是编码非串联CCCH锌指蛋白的独特拟南芥基因。 AtC3H17在拟南芥植物及其器官的整个生命周期中普遍表达。 atc3h17突变体的种子发芽率和发芽率分别比野生型(WT)慢和低,而过表达AtC3H17的转基因植物(OXs)的发芽率却更高。 atc3h17突变苗比野生苗更小,更轻,而AtC3H17 OX苗更大,更重。在开花时间的调控中,与野生型相比,atc3h17突变体显示出延迟开花,而AtC3H17 OXs显示出早期开花。此外,AtC3H17的过表达影响种子发育,与野生型相比表现出异常。 AtC3H17蛋白位于核内,并在酵母和拟南芥原生质体中显示出转录激活活性。 AtC3H17的N端区域包含一个保守的EELR样基序,是转录激活活性所必需的,而EELR样的基序中的两个保守的谷氨酸残基在转录激活活性中起着重要的作用。实时PCR和反式激活分析表明,AtC3H17可能通过OLEO1,OLEO2和CRU3的转录激活参与种子发育。我们的结果表明,AtC3H17对营养发育具有多效作用,例如种子发芽和幼苗生长,开花和种子发育,并在拟南芥中起核转录激活剂的作用。

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