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首页> 外文期刊>Plant and cell physiology >Functional Analysis of a MATE Gene OsFRDL2 Revealed its Involvement in Al-Induced Secretion of Citrate, but a Lower Contribution to Al Tolerance in Rice
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Functional Analysis of a MATE Gene OsFRDL2 Revealed its Involvement in Al-Induced Secretion of Citrate, but a Lower Contribution to Al Tolerance in Rice

机译:MATE基因OsFRDL2的功能分析显示其参与铝诱导的柠檬酸盐分泌,但对水稻耐铝性的贡献较低

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摘要

The multidrug and toxic compound extrusion (MATE) transporters represent a large transporter family in plants, but the role of most genes in this family has not been examined. We functionally characterized a MATE family member, OsFRDL2, in rice (Oryza sativa). OsFRDL2 showed an efflux transport activity for citrate when it was expressed in both Xenopus oocytes and cultured tobacco cells. OsFRDL2 was mainly expressed in the roots and its expression was not induced by iron (Fe) deficiency, but it was rapidly up-regulated by aluminum (Al). Furthermore, the expression of OsFRDL2 was regulated by ART1, a C2H2-type zinc-finger transcription factor for Al tolerance. OsFRDL2 protein was localized at unidentified vesicles in the cytosol, but not co-localized with either mitochondria or peroxisomes when expressed in both onion epidermal cells and cultured tobacco cells. Knockout of OsFRDL2 decreased Al-induced secretion of citrate from the roots, but did not affect the internal citrate concentration. The Al-induced inhibition of root elongation was similar between the OsFRDL2 knockout line and its wild-type rice. Knockout of OsFRDL2 did not affect the translocation of Fe from the roots to the shoots. A double mutant between osfrdl2 and osfrdl4 or osfrdl1 did not further decrease the Al-induced citrate secretion and Fe translocation compared with the single mutant. Collectively, our results indicate that although OsFRDL2 is involved in the Al-induced secretion of citrate, its contribution to high Al tolerance is relatively small in rice.
机译:多药和有毒化合物挤出(MATE)转运蛋白在植物中代表着一个庞大的转运蛋白家族,但尚未对该基因中大多数基因的作用进行研究。我们在功能上表征了水稻(Oryza sativa)中一个MATE家族成员OsFRDL2。当在非洲爪蟾卵母细胞和培养的烟草细胞中表达时,OsFRDL2对柠檬酸都有外排转运活性。 OsFRDL2主要在根中表达,它的表达不是由铁(Fe)缺乏诱导的,但是它很快被铝(Al)上调。此外,OsFRDL2的表达受到ART1的调节,ART1是Al耐受的C2H2型锌指转录因子。当在洋葱表皮细胞和培养的烟草细胞中表达时,OsFRDL2蛋白位于胞质溶胶中未鉴定的囊泡中,但与线粒体或过氧化物酶体共定位。敲除OsFRDL2可减少Al诱导的根部柠檬酸盐分泌,但不影响内部柠檬酸盐浓度。 Al诱导的根伸长抑制在OsFRDL2敲除品系及其野生型水稻之间相似。 OsFRDL2的敲除不影响Fe从根到芽的转运。与单个突变体相比,osfrdl2和osfrdl4或osfrdl1之间的双突变体不会进一步降低Al诱导的柠檬酸盐分泌和Fe转运。总体而言,我们的结果表明,尽管OsFRDL2参与了Al诱导的柠檬酸盐分泌,但其对高Al耐性的贡献在水稻中却相对较小。

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