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首页> 外文期刊>Plant and cell physiology >Two Genes Encoding a Bacterial-Type ATP-Binding Cassette Transporter are Implicated in Aluminum Tolerance in Buckwheat
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Two Genes Encoding a Bacterial-Type ATP-Binding Cassette Transporter are Implicated in Aluminum Tolerance in Buckwheat

机译:编码细菌型ATP结合盒转移器的两个基因涉及荞麦的铝耐受性

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摘要

Buckwheat (Fagopyrum esculentum Moench) shows high tolerance to aluminum (Al) toxicity, but the molecular mechanisms underlying its high Al tolerance are poorly understood. Here, we functionally characterized two genes (FeSTAR1 and FeSTAR2), which encode a nucleotide-binding domain and a membrane domain, respectively, of a bacterial-type ATP-binding cassette (ABC) transporter. The expression of FeSTAR1 and FeSTAR2 was induced by Al in both roots and leaves with higher expression in the roots. Spatial and tissue-specific expression analysis showed that the Al-induced expression of these two genes was found in both the root tips and basal root regions with higher expression in the root outer cell layers. The expression was neither induced by other metals including Cd and La nor by low pH and phosphorus-deficiency. FeSTAR1 and FeSTAR2 were present in a single copy in the genome, but the Al-induced transcript copy number of FeSTAR1 and FeSTAR2 was much higher than their homologous genes in rice and Arabidopsis. FeSTAR1 and FeSTAR2 form a complex when co-expressed in onion epidermal cells. Introduction of FeSTAR1 and FeSTAR2 into Arabidopsis mutants atstar1 and als3/atstar2, respectively, rescued the sensitivity of the mutants to Al. Taken together, our results indicate that FeSTAR1 and FeSTAR2 are involved in Al tolerance and that their high expression level may contribute to high Al tolerance in buckwheat.
机译:荞麦(Fagopyrum Esculentum moench)对铝(Al)毒性的高耐受性,但其高耐受性的分子机制尚不清楚。这里,我们在功能上表征了两种基因(Festar1和Festar2),它们分别为细菌型ATP结合盒(ABC)转运物分别编码核苷酸结合结构域和膜结构域。在根部和叶片中,在根系中诱导Festar1和Festar2的表达,并在根中具有更高的表达。空间和组织特异性表达分析表明,在根尖端和基底根部区域中发现了这两个基因的Al诱导的表达,具有较高的根外细胞层。表述既不被其他金属诱导,包括CD和La,也不是低pH和磷缺乏。 Festar1和Festar2存在于基因组中的单一副本中,但Festar1和Festar2的Al诱导的转录物拷贝数远高于水稻和拟南芥的同源基因。 Festar1和Festar2在洋葱表皮细胞中共同表达时形成一个复杂的复合物。 STERAR1和FESTAR2分别引入STAR1和ALS3 / ATSTAR2的拟南芥突变体,救出了突变体对Al的敏感性。我们的结果表明,Festar1和Festar2参与了Al耐受性,并且它们的高表达水平可能有助于荞麦的高耐受性。

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