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首页> 外文期刊>Planta: An International Journal of Plant Biology >LeSPL-CNR negatively regulates Cd acquisition through repressing nitrate reductase-mediated nitric oxide production in tomato
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LeSPL-CNR negatively regulates Cd acquisition through repressing nitrate reductase-mediated nitric oxide production in tomato

机译:LESPL-CNR通过压制番茄中的硝酸还原酶介导的一氧化氮产生来负调节CD采集

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Main conclusion An SPL-type transcription factor, LeSPL-CNR, is negatively involved in NO production by modulating SlNR expression and nitrate reductase activity, which contributes to Cd tolerance. Cadmium (Cd) is a highly toxic pollutant. Identifying factors affecting Cd accumulation in plants is a prerequisite for minimizing dietary uptake of Cd from crops grown with contaminated soil. Here, we report the involvement of a SQUAMOSA PROMOTER-BINDING PROTEIN-LIKE (SPL) transcription factor LeSPL-CNR in Cd tolerance in tomato ( Solanum lycopersicum ). In comparison with the wild-type Ailsa Craig (AC) plants, the Colourless non - ripening ( Cnr ) epimutant displayed increased Cd accumulation and enhanced sensitivity to Cd, which was in well accordance with the repression of LeSPL - CNR expression. Cd stress-induced NO production was inhibited by nitrate reductase (NR) inhibitor, but not NO synthase-like enzyme inhibitor. Expression of LeSPL - CNR was negatively correlated with SlNR expression and the NR activity. We also demonstrated that LeSPL-CNR inhibited the SlNR promoter activity in vivo and bound to SlNR promoter sequence that does not contain a known SBP-binding motif. In addition, expression of an IRON - REGULATED TRANSPORTER1 , SlIRT1 , was more abundant in Cnr roots than AC roots under Cd stress. LeSPL-CNR may thus provide a molecular mechanism linking Cd stress response to regulation of NR-dependent NO production, which then contributes to Cd uptake via SlIRT1 expression in tomato.
机译:主要结论SPL型转录因子LESPL-CNR通过调节SLNR表达和硝酸还原酶活性而不产生,这有助于CD耐受性。镉(CD)是一种剧毒污染物。鉴定影响植物中CD积累的因素是最小化污染土壤种植的作物饮食摄取的先决条件。在这里,我们报告了Squamosa启动子结合蛋白样(SPL)转录因子LESPL-CNR在番茄(Solanum Lycopersicum)中的Cd耐受性。与野生型Ailsa Craig(AC)植物相比,无色非成熟(CNR)基础仿制剂展示了增加的CD积累,增强了对Cd的敏感性,这与抑制LESPL的抑制 - CNR表达。 CD应激诱导未通过硝酸还原酶(NR)抑制剂抑制生产,但不是没有合酶样酶抑制剂。 LESPL - CNR的表达与SLNR表达和NR活性呈负相关。我们还证明LESPL-CNR在体内抑制SLNR启动子活性并与不含已知的SBP结合基质的SLNR启动子序列结合。另外,在CD胁迫下的CNR根中的熨斗调节转运蛋白1的表达比CN ROOTS更丰富。因此,LESPL-CNR可以提供将Cd应激反应的分子机制与NR依赖性的调节连接,然后通过番茄中通过SLIRT1表达有助于CD吸收。

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