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首页> 外文期刊>Plant physiology >The Nitrate Transporter MtNPF6.8 (MtNRT1.3) Transports Abscisic Acid and Mediates Nitrate Regulation of Primary Root Growth in Medicago truncatula
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The Nitrate Transporter MtNPF6.8 (MtNRT1.3) Transports Abscisic Acid and Mediates Nitrate Regulation of Primary Root Growth in Medicago truncatula

机译:硝酸盐转运蛋白MtNPF6.8(MtNRT1.3)转运脱落酸并介导截草苜蓿根系生长的硝酸盐调节。

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摘要

Elongation of the primary root during postgermination of Medicago truncatula seedlings is a multigenic trait that is responsive to exogenous nitrate. A quantitative genetic approach suggested the involvement of the nitrate transporter MtNPF6.8 (for Medicago truncatula NITRATE TRANSPORTER1/PEPTIDE TRANSPORTER Family6.8) in the inhibition of primary root elongation by high exogenous nitrate. In this study, the inhibitory effect of nitrate on primary root elongation, via inhibition of elongation of root cortical cells, was abolished in npf6.8 knockdown lines. Accordingly, we propose that MtNPF6.8 mediates nitrate inhibitory effects on primary root growth in M. truncatula. pMtNPF6.8:GUS promoter-reporter gene fusion in Agrobacterium rhizogenes-generated transgenic roots showed the expression of MtNPF6.8 in the pericycle region of primary roots and lateral roots, and in lateral root primordia and tips. MtNPF6.8 expression was insensitive to auxin and was stimulated by abscisic acid (ABA), which restored the inhibitory effect of nitrate in npf6.8 knockdown lines. It is then proposed that ABA acts downstream of MtNPF6.8 in this nitrate signaling pathway. Furthermore, MtNPF6.8 was shown to transport ABA in Xenopus spp. oocytes, suggesting an additional role of MtNPF6.8 in ABA root-to-shoot translocation. (NO3-)-N-15 -influx experiments showed that only the inducible component of the low-affinity transport system was affected in npf6.8 knockdown lines. This indicates that MtNPF6.8 is a major contributor to the inducible component of the low-affinity transport system. The short-term induction by nitrate of the expression of Nitrate Reductase1 (NR1) and NR2 (genes that encode two nitrate reductase isoforms) was greatly reduced in the npf6.8 knockdown lines, supporting a role of MtNPF6.8 in the primary nitrate response in M. truncatula.
机译:run藜苜蓿幼苗发芽过程中初级根的伸长是对外源硝酸盐敏感的多基因性状。定量遗传学方法表明硝酸盐转运蛋白MtNPF6.8(对于截齿苜蓿NITRATE TRANSPORTER1 / PEPTIDE TRANSPORTER Family6.8)参与了高外源硝酸盐对初级根伸长的抑制作用。在这项研究中,在npf6.8敲除品系中取消了硝酸盐通过抑制根皮层细胞的伸长而对原根伸长的抑制作用。因此,我们建议MtNPF6.8介导硝酸盐对截叶芒草根生长的抑制作用。在发根农杆菌产生的转基因根中,pMtNPF6.8:GUS启动子-报告基因融合表明,MtNPF6.8在原根和侧根的周缘区域以及侧根原基和尖端表达。 MtNPF6.8表达对植物生长素不敏感,并受到脱落酸(ABA)的刺激,这恢复了硝酸盐对npf6.8敲除系的抑制作用。然后提出了ABA在该硝酸盐信号途径中在MtNPF6.8的下游起作用。此外,显示MtNPF6.8在非洲爪蟾属物种中运输ABA。卵母细胞,提示MtNPF6.8在ABA从根到茎的易位中具有额外的作用。 (NO3-)-N-15-内流实验表明,低亲和力转运系统的可诱导成分在npf6.8敲除系中受到影响。这表明MtNPF6.8是低亲和力转运系统可诱导成分的主要贡献者。在npf6.8敲低品系中,硝酸盐对硝酸盐还原酶1(NR1)和NR2(编码两个硝酸盐还原酶同工型的基因)的表达的短期诱导大大降低,支持了MtNPF6.8在初级硝酸盐响应中的作用。在M. truncatula。

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