4.7 Article

A Critical Role of AMT2;1 in Root-To-Shoot Translocation of Ammonium in &ITArabidopsis&IT

期刊

MOLECULAR PLANT
卷 10, 期 11, 页码 1449-1460

出版社

CELL PRESS
DOI: 10.1016/j.molp.2017.10.001

关键词

nitrogen uptake; nitrogen translocation; ammonium assimilation; xylem loading; ammonia transport; ammonium influx

资金

  1. National Natural Science Foundation of China [31471934, 31430095]
  2. Deutsche Forschungsgemeinschaft, Bonn, Germany [WI1728/4-2, WI1728/16-1]

向作者/读者索取更多资源

Ammonium uptake in plant roots is mediated by AMT/MEP/Rh-type ammonium transporters. Out of five AMTs being expressed in Arabidopsis roots, four AMT1-type transporters contribute to ammonium uptake, whereas no physiological function has so far been assigned to the only homolog belonging to the MEP sub-family, AMT2;1. Based on the observation that under ammonium supply, the transcript levels of AMT2;1 increased and its promoter activity shifted preferentially to the pericycle, we assessed the contribution of AMT2;1 to xylem loading. When exposed to N-15-labeled ammonium, amt2;1 mutant lines translocated less tracer to the shoots and contained less ammonium in the xylem sap. Moreover, in an amt1;1 amt1;2 amt1;3 amt2;1 quadruple mutant (qko), co-expression of AMT2;1 with either AMT1;2 or AMT1;3 significantly enhanced N-15 translocation to shoots, indicating a cooperative action between AMT2;1 and AMT1 transporters. Under N deficiency, proAMT2;1-GFP lines showed enhanced promoter activity predominantly in cortical root cells, which coincided with elevated ammonium influx conferred by AMT2;1 at millimolar substrate concentrations. Our results indicate that in addition to contributing moderately to root uptake in the low-affinity range, AMT2;1 functions mainly in root-to-shoot translocation of ammonium, depending on its cell-type-specific expression in response to the plant nutritional status and to local ammonium gradients.

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