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首页> 外文期刊>Plant and cell physiology >Genomic and Transcriptomic Compilation of Chloroplast Ionic Transporters of Physcomitrella patens. Study of NHAD Transporters in Na+ and K+ Homeostasis
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Genomic and Transcriptomic Compilation of Chloroplast Ionic Transporters of Physcomitrella patens. Study of NHAD Transporters in Na+ and K+ Homeostasis

机译:PhyscomatraLla叶绿体离子转运蛋白的基因组和转录组汇编。 Na +和K +稳态奈瑟转运蛋白的研究

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K+ is widely used by plant cells, whereas Na+ can easily reach toxic levels during plant growth, which typically occurs in saline environments; however, the effects and functions in the chloroplast have been only roughly estimated. Traditionally, the occurrence of ionic fluxes across the chloroplast envelope or the thylakoid membranes has been mostly deduced from physiological measurements or from knowledge of chloroplast metabolism. However, many of the proteins involved in these fluxes have not yet been characterized. Based on genomic and RNA sequencing (RNA-seq) analyses, we present a comprehensive compilation of genes encoding putative ion transporters and channels expressed in the chloroplasts of the moss Physcomitrella patens, with a special emphasis on those related to Na+ and K+ fluxes. Based on the functional characterization of nhad mutants, we also discuss the putative role of NHAD transporters in Na+ homeostasis and osmoregulation of this organelle and the putative contribution of chloroplasts to salt tolerance in this moss. We demonstrate that NaCl does not affect the chloroplast functionality in Physcomitrella despite significantly modifying expression of ionic transporters and cellular morphology, specifically the chloroplast ultrastructure, revealing a high starch accumulation. Additionally, NHAD transporters apparently do not play any essential roles in salt tolerance.
机译:K +被植物细胞广泛使用,而Na +在植物生长过程中可以容易地达到毒性水平,这通常会在盐水环境中发生;然而,叶绿体中的效果和功能仅粗略估计。传统上,横跨叶绿体封套或囊体膜的发生的发生主要从生理测量或叶绿体代谢知识中推导出来。然而,尚未表征了这些助熔剂中涉及的许多蛋白质。基于基因组和RNA测序(RNA-SEQ)分析,我们展示了编码预测离子转运蛋白的基因综合汇编,并且在苔藓Physcometrella的叶绿体中表达的通道,特别强调与Na +和K +助焊剂相关的那些。基于奈瑟突变体的功能表征,我们还讨论了Nahad转运蛋白在Na +稳态和渗透细胞器中的渗透性的推定作用以及叶绿体在该苔藓中耐盐的推定贡献。我们证明,尽管显着修饰了离子转运蛋白和细胞形态的表达,但特别是叶绿体超微结构,揭示了高淀粉积累,因此NaCl不会影响Physcomitrella中的叶绿体官能团。此外,NHAD转运仪显然不会在耐盐性中发挥任何必要的作用。

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