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首页> 外文期刊>Plant signaling & behavior >PtHSFA4a gene play critical roles in the adaptation of Arabidopsis thaliana plants to high-Zinc stress
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PtHSFA4a gene play critical roles in the adaptation of Arabidopsis thaliana plants to high-Zinc stress

机译:Pthsfa4a基因在拟南芥植物的适应中发挥着关键作用,以高锌胁迫

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摘要

Heat shock transcription factors (HSFs) play pivotal roles in various abiotic stresses. However, only one of the studies on HSFs that participated in excess zinc (Zn) stress in our previous study in Populus ussuriensis. Here, overexpression of P. trichocarpa PtHSFA4a gene in Arabidopsis thaliana significantly improved excess Zn tolerance. It was found that PtHSFA4a-OE lines have higher seed germination rate than wild type (WT) when exposed to excess Zn. Also, PtHSFA4a-OE lines exhibit high viability and stronger root growth than WT in soil. PtHSFA4a reduced the intracellular concentration of free zinc ion of roots when overexpressed in A. thaliana. Our data indicate PtHSFA4a is the candidate gene to act as positive regulators in the resistance to excess Zn, extending our knowledge of excess Zn tolerance transcription factors
机译:热冲击转录因子(HSFS)在各种非生物应激中起着枢转作用。 然而,在我们以前参与过多的锌(Zn)胁迫的HSF的研究中只有一种研究,我们在我们之前的杨树患者中的研究中胁迫。 这里,拟南芥中P.Trichocarpa Pthsfa 4a基因的过表达显着提高了过多的抗抗抗性。 发现当暴露于过量的Zn时,Pthsfa4a-Oe系具有比野生型(wt)更高的种子萌发率。 此外,PTHSFA4A-OE线表现出高可活力和较强的根生长,而不是土壤中的WT。 Pthsfa4a在A.拟南芥过表达时减少了根的自由锌离子的细胞内浓度。 我们的数据表明Pthsfa4a是候选基因,以抵抗过量Zn的抗性,延长了多余的抗血清耐受转录因子的知识

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