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Short Communication

Rice reduces Mn uptake in response to Mn stress

, , , , &
Article: e1422466 | Received 22 Nov 2017, Accepted 21 Dec 2017, Published online: 16 Jan 2018

References

  • Ueno D, Sasaki A, Yamaji N, Miyaji T, Fujii Y, Takemoto Y, Moriyama S, Che J, Moriyama Y, Iwasaki K, et al. A polarly localized transporter for efficient manganese uptake in rice. Nat Plants. 2015;1:15170. doi:10.1038/nplants.2015.170.
  • Yamaji N, Sasaki A, Xia JX, Yokosho K, Ma JF. A node-based switch for preferential distribution of manganese in rice. Nat Commun. 2013;4:2442. doi:10.1038/ncomms3442.
  • Chen Z, Fujii Y, Yamaji N, Masuda S, Yuma T, Kamiya T, Yusuyin Y, Iwasaki K, Kato S, Maeshima M, et al. Mn tolerance in rice is mediated by MTP8.1, a member of the cation diffusion facilitator family. J Exp Bot. 2013;64:4375–87. doi:10.1093/jxb/ert243.
  • Takemoto Y, Tsunemitsu Y, Fujii-Kashino M, Mitani-Ueno N, Yamaji N, Ma JF, Kato S, Iwasaki K, Ueno D. The tonoplast-localized transporter MTP8.2 contributes to manganese detoxification in the shoots and roots of Oryza sativa L. Plant Cell Physiol. 2017;58:1573–82. doi:10.1093/pcp/pcx082.
  • Ueno D, Koyama E, Yamaji N, Ma JF. Physiological, genetic, and molecular characterization of a high-Cd-accumulating rice cultivar, Jarjan. J Exp Bot. 2011;62:2265–72. doi: 10.1093/jxb/erq383.
  • Sasaki A, Yamaji N, Yokosho K, Ma JF. Nramp5 is a major transporter responsible for manganese and cadmium uptake in rice. Plant Cell. 2012;24:2155–67. doi:10.1105/tpc.112.096925.
  • Ishimaru Y, Takahashi R, Bashir K, Shimo H, Senoura T, Sugimoto K, Ono K, Yano M, Ishikawa S, Arao T, et al. Characterizing the role of rice NRAMP5 in manganese, iron and cadmium transport. Sci Rep. 2012;2:286. doi:10.1038/srep00286.
  • Robson AD, Loneragan JF. Sensitivity of annual Medicago species to manganese toxicity as affected by calcium and pH. Aust J Agric Res. 1970;21:223–32. doi:10.1071/AR9700223.
  • Culvenor RA. Tolerance of Phalaris aquatica L. lines and some other agricultural species to excess manganese, and the effect of aluminium on manganese tolerance in P. aquatic. Aust J Agric Res. 1985;36:695–708. doi:10.1071/AR9850695.
  • Migocka M, Papierniak A, Kosieradzka A, Posyniak E, Maciaszczyk-Dziubinska E, Biskup R, Garbiec A, Marchewka T. Cucumber metal tolerance protein CsMTP9 is a plasma membrane H+-coupled antiporter involved in the Mn2+ and Cd2+ efflux from root cells. Plant J. 2015;84:1045–58. doi:10.1111/tpj.13056.
  • Fecht-Christoffers MM, Maier P, Horst WJ. Apoplastic peroxidases and ascorbate are involved in manganese toxicity and tolerance of Vigna unguiculate. Physiol Plant. 2003;117:237–44. doi:10.1034/j.1399-3054.2003.00022.x.
  • Sasaki A, Yamaji N, Xia J, Ma JF. OsYSL6 is involved in the detoxification of excess manganese in rice. Plant Physiol. 2011;157:1832–40. doi:10.1104/pp.111.186031.

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