4.7 Article

Hyperactive mutant of a wheat plasma membrane Na+/H+ antiporter improves the growth and salt tolerance of transgenic tobacco

Journal

PLANT SCIENCE
Volume 253, Issue -, Pages 176-186

Publisher

ELSEVIER IRELAND LTD
DOI: 10.1016/j.plantsci.2016.09.016

Keywords

Auto-inhibitory domain; Plasma membrane Na+/H+ antiporter; Salt tolerance; Transgenic tobacco; Wheat

Funding

  1. Natural Science Foundation of China [31260218, 31160185]
  2. Scientific and Technological Foundation of Hainan Province [ZDZX2013023, HNGDhs201502]
  3. Natural Science Foundation of Hainan Province [313030]
  4. National Key Technology Support Program [2015BAD01B02]

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Wheat SOS1 (TaSOS1) activity could be relieved upon deletion of the C-terminal 168 residues (the auto-inhibitory domain). This truncated form of wheat SOS1 (TaSOS1-974) was shown to increase compensation (compared to wild-type TaSOS1) for the salt sensitivity of a yeast mutant strain, AXT3K, via increased Na+ transportation out of cells during salinity stress. Expression of the plasma membrane proteins TaSOS1-974 or TaSOS1 improved the growth of transgenic tobacco plants compared with wild-type plants under normal conditions. However, plants expressing TaSOS1-974 grew better than TaSOS1-transformed plants. Upon salinity stress, Na+ efflux and K+ influx rates in the roots of transgenic plants expressing TaSOS1-974 or TaSOS1 were greater than those of wild-type plants. Furthermore, compared to TaSOS1-transgenic plants, TaSOS1-974-expressing roots showed faster Na+ efflux and K+ influx, resulting in less Na+ and more K+ accumulation in TaSOS1-974-transgenic plants compared to TaSOS1-transgenic and wild-type plants. TaSOS1-974-expressing plants had the lowest MDA content and electrolyte leakage among all tested plants, indicating that TaSOS1-974 might protect the plasma membrane against oxidative damage generated by salt stress. Overall, TaSOS1-974 conferred higher salt tolerance in transgenic plants compared to TaSOS1. Consistent with this result, transgenic plants expressing TaSOS1-974 showed a better growth performance than TaSOS1-expressing and wild-type plants under saline conditions. (C) 2016 Elsevier Ireland Ltd. All rights reserved.

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