GsCHX19.3, a member of cation/H+ exchanger superfamily from wild soybean contributes to high salinity and carbonate alkaline tolerance

Author:

Jia Bowei,Sun Mingzhe,DuanMu Huizi,Ding Xiaodong,Liu BeidongORCID,Zhu Yanming,Sun Xiaoli

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference52 articles.

1. Bassil, E. & Blumwald, E. The ins and outs of intracellular ion homeostasis: NHX-type cation/H+ transporters. Curr Opin Plant Biol 22, 1–6 (2014).

2. Chanroj S. et al. Conserved and diversified gene families of monovalent cation/H+ antiporters from algae to flowering plants. Front Plant Sci 3 (2012).

3. Jiang, C. et al. Effect of exogenous selenium supply on photosynthesis, Na+ accumulation and antioxidative capacity of maize (Zea mays L.) under salinity stress. Sci Rep 7, 42039 (2017).

4. Reguera, M. et al. pH regulation by NHX-type antiporters is required for receptor-mediated protein trafficking to the vacuole in Arabidopsis. The Plant Cell 27, 1200–1217 (2015).

5. Zheng, S., Pan, T., Fan, L. & Qiu, Q. S. A novel AtKEA gene family, homolog of bacterial K+/H+ antiporters, plays potential roles in K+ homeostasis and osmotic adjustment in Arabidopsis. PLoS One 8, e81463 (2013).

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