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Zhi-zhong SONG, Shun-ying YANG, Dong-li HAO, Guang-zhen YUE, Yan-hua SU. Cloning and identification of ammonium transporter ApAMT1;3 from the aquatic weed Alternanthera philoxeroides[J]. Pratacultural Science, 2015, 9(5): 649. DOI: 10.11829/j.issn.1001-0629.2014-0406
Citation: Zhi-zhong SONG, Shun-ying YANG, Dong-li HAO, Guang-zhen YUE, Yan-hua SU. Cloning and identification of ammonium transporter ApAMT1;3 from the aquatic weed Alternanthera philoxeroides[J]. Pratacultural Science, 2015, 9(5): 649. DOI: 10.11829/j.issn.1001-0629.2014-0406

Cloning and identification of ammonium transporter ApAMT1;3 from the aquatic weed Alternanthera philoxeroides

  • Alligatorweed (Alternanthera philoxeroides) has been recently investigated for its potential capability of phytoremediation of water eutrophication, especially for the accumulation of ammonium (NH4+) nutrient pollutes. However, molecular studies towards NH4+ uptake is largely unclear in this plant. In this study, we successfully isolated an NH4+ transporter cDNA, named ApAMT1;3, using degenerated primers and rapid amplification of cDNA end(RACE)techniques. Quantitative realtime PCR(qRTPCR)showed that ApAMT1;3 was majorly expressed in shoots, and the transcript levels were significantly enhanced in all tested organs, including roots, stems and leaves by NH4+ starvation of ApAMT1;3. Functional complementation of yeast mutant showed that ApAMT1;3 can mediate external NH4+ uptake. This study directly provide new gene resource to reveal NH4+ uptake and utilization of alligatorweed, and favorably help to investigate the mechanisms underlying NH4+ uptake and transport in aquatic plants.
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