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首页> 外文期刊>Frontiers in Plant Science >Genomic Identification and Expression Analysis of the Phosphate Transporter Gene Family in Poplar
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Genomic Identification and Expression Analysis of the Phosphate Transporter Gene Family in Poplar

机译:杨树磷酸盐转运蛋白基因家族的基因组鉴定与表达分析

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摘要

Inorganic phosphate is one of key macronutrients essential for plant growth. The acquisition and distribution of phosphate are mediated by phosphate transporters functioning in various physiological and biochemical processes. In the present study, we comprehensively evaluated the phosphate transporter (PHT) gene family in the latest release of the Populus trichocarpa genome (version 3.0; Phytozome 11.0) and a total of 42 PHT genes were identified which formed five clusters: PHT1, PHT2, PHT3, PHT4 , and PHO . Among the 42 PHT genes, 41 were localized to 15 Populus chromosomes. Analysis of these genes led to identification of 5–14 transmembrane segments, most of which were conserved within the same cluster. We identified 234 putative cis elements in the 2-kb upstream regions of the 42 PHT genes, many of which are related to development, stress, or hormone. Tissue-specific expression analysis of the 42 PtPHT genes revealed that 25 were highly expressed in the roots of P. tremula , suggesting that most of them might be involved in Pi uptake. Some PtPHT genes were highly expressed in more than six of the twelve investigated tissues of P. tremula , while the expression of a few of them was very low in all investigated tissues. In addition, the expression of the PtPHT genes was verified by quantitative real-time PCR in four tissues of P. simonii. Transcripts of 7 PtPHT genes were detected in all four tested tissues of P. simonii . Most PtPHT genes were expressed in the roots of P. simonii at high levels. Further, PtPHT1.2 and PtPHO9 expression was increased under drought conditions, irrespective of the phosphate levels. In particular, PtPHT1.2 expression was significantly induced by approximately 90-fold. However, the transcriptional changes of some PtPHT genes under drought stress were highly dependent on the phosphate levels. These results will aid in elucidation of the functions of PtPHT in the growth, development, and stress response of the poplar plant.
机译:无机磷酸盐是植物生长必不可少的关键常量营养素之一。磷酸盐的获取和分布是由在各种生理和生化过程中起作用的磷酸盐转运蛋白介导的。在本研究中,我们全面评估了最新发布的毛果杨基因组(版本3.0;植保体11.0)中的磷酸盐转运蛋白(PHT)基因家族,共鉴定出42个PHT基因,它们形成了五个簇:PHT1,PHT2, PHT3,PHT4和PHO。在42个PHT基因中,有41个位于15个胡杨染色体上。对这些基因的分析导致鉴定出5–14个跨膜区段,其中大部分都保存在同一簇中。我们在42个PHT基因的2 KB上游区域中发现了234个推定的顺式元件,其中许多与发育,压力或激素有关。对42个PtPHT基因的组织特异性表达分析表明,25个在银耳假单胞菌的根中高度表达,这表明它们中的大多数可能与Pi的吸收有关。在P.tremula的十二种被调查组织中的六种中,有一些PtPHT基因高表达,而在所有被调查的组织中,其中一些的表达却很低。另外,通过定量实时PCR在P. simonii的四个组织中验证了PtPHT基因的表达。在4个被检测的小亚游孢的组织中检测到7个PtPHT基因的转录产物。大多数PtPHT基因在小叶拟南芥的根中高水平表达。此外,在干旱条件下,无论磷酸盐水平如何,PtPHT1.2和PtPHO9的表达均增加。特别地,PtPHT1.2表达被显着诱导约90倍。然而,一些PtPHT基因在干旱胁迫下的转录变化高度依赖于磷酸盐水平。这些结果将有助于阐明PtPHT在杨树植物生长,发育和胁迫响应中的功能。

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