首页> 外文期刊>The Plant Cell >The Arabidopsis YELLOW STRIPE LIKE4 and 6 transporters control iron release from the chloroplast.
【24h】

The Arabidopsis YELLOW STRIPE LIKE4 and 6 transporters control iron release from the chloroplast.

机译:拟南芥YELLOW STRIPE LIKE4和6个转运蛋白控制叶绿体中铁的释放。

获取原文
获取原文并翻译 | 示例
           

摘要

In most plant cell types, the chloroplast represents the largest sink for iron, which is both essential for chloroplast metabolism and prone to cause oxidative damage. Here, we show that to buffer the potentially harmful effects of iron, besides ferritins for storage, the chloroplast is equipped with specific iron transporters that respond to iron toxicity by removing iron from the chloroplast. We describe two transporters of the YELLOW STRIPE1-LIKE family from Arabidopsis thaliana, YSL4 and YSL6, which are likely to fulfill this function. Knocking out both YSL4 and YSL6 greatly reduces the plant's ability to cope with excess iron. Biochemical and immunolocalization analyses showed that YSL6 resides in the chloroplast envelope. Elemental analysis and histochemical staining indicate that iron is trapped in the chloroplasts of the ysl4 ysl6 double mutants, which also accumulate ferritins. Also, vacuolar iron remobilization and NRAMP3/4 expression are inhibited. Furthermore, ubiquitous expression of YSL4 or YSL6 dramatically reduces plant tolerance to iron deficiency and decreases chloroplastic iron content. These data demonstrate a fundamental role for YSL4 and YSL6 in managing chloroplastic iron. YSL4 and YSL6 expression patterns support their physiological role in detoxifying iron during plastid dedifferentiation occurring in embryogenesis and senescence.
机译:在大多数植物细胞类型中,叶绿体代表铁的最大吸收池,铁既对叶绿体代谢至关重要,又容易引起氧化损伤。在这里,我们表明,为了缓冲铁的潜在有害作用,除了铁蛋白的存储外,叶绿体还配备了特定的铁转运蛋白,这些铁转运蛋白通过从叶绿体中去除铁来对铁的毒性作出反应。我们描述了拟南芥YELLOW STRIPE1-LIKE家族的两个转运蛋白,YSL4和YSL6,它们很可能实现了这一功能。剔除YSL4和YSL6会大大降低工厂应对过量铁的能力。生化和免疫定位分析表明,YSL6位于叶绿体包膜中。元素分析和组织化学染色表明,铁被困在ysl4 ysl6双重突变体的叶绿体中,后者也积累了铁蛋白。同样,液泡铁的固定和NRAMP3 / 4的表达也受到抑制。此外,YSL4或YSL6的普遍表达显着降低了植物对铁缺乏的耐受性并降低了叶绿体铁含量。这些数据证明了YSL4和YSL6在管理叶绿体铁中的基本作用。 YSL4和YSL6表达模式支持它们在胚胎发生和衰老过程中发生的质体去分化过程中对铁解毒的生理作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号