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Ubiquitin-specific protease 14 (UBP14) is involved in root responses to phosphate deficiency in Arabidopsis.

机译:泛素特异性蛋白酶14(UBP14)参与了拟南芥对磷酸盐缺乏的根响应。

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摘要

A mutant isolated from a screen of EMS-mutagenized Arabidopsis lines, per1, showed normal root hair development under control conditions but displayed an inhibited root hair elongation phenotype upon Pi deficiency. Additionally, the per1 mutant exhibited a pleiotropic phenotype under control conditions, resembling Pi-deficient plants in several aspects. Inhibition of root hair elongation upon growth on low Pi media was reverted by treatment with the Pi analog phosphite, suggesting that the mutant phenotype is not caused by a lack of Pi. Reciprocal grafting experiments revealed that the mutant rootstock is sufficient to cause the phenotype. Complementation analyses showed that the PER1 gene encodes an ubiquitin-specific protease, UBP14. The mutation caused a synonymous substitution in the 12th exon of this gene, resulting in a lower abundance of the UBP14 protein, probably as a consequence of reduced translation efficiency. Transcriptional profiling of per1 and wild-type plants subjected to short-term Pi starvation revealed genes that may be important for the signaling of Pi deficiency. We conclude that UBP14 function is crucial for adapting root development to the prevailing local availability of phosphate.
机译:从EMS诱变的拟南芥(Arabidopsis )系 per1 中分离出的突变体在对照条件下显示出正常的根毛发育,但在Pi缺乏时表现出抑制的根毛伸长表型。此外, per1 突变体在对照条件下表现出多效性表型,在几个方面类似于Pi缺乏的植物。通过用Pi类似物亚磷酸酯处理恢复了在低Pi培养基上生长时对根毛伸长的抑制,这表明突变型不是由缺乏Pi引起的。相互的嫁接实验表明,突变的砧木足以引起表型。互补分析表明, PER1 基因编码一种泛素特异性蛋白酶UBP14。该突变在该基因的第12外显子上引起了同义替换,可能是翻译效率降低的结果,导致UBP14蛋白的丰度较低。短时Pi饥饿的 per1 和野生型植物的转录谱分析揭示了可能对Pi缺乏信号转导很重要的基因。我们得出的结论是,UBP14功能对于使根系发育适应当前普遍的磷酸盐可用性至关重要。

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