The coordinated regulation of Na+ and K+ in Hordeum brevisubulatum responding to time of salt stress

Plant Science - Tập 252 - Trang 358-366 - 2016
Chun-Mei Wang1, Zeng-Run Xia2, Guo-Qiang Wu3, Hui-Jun Yuan3, Xin-Rui Wang4, Jin-hua Li1, Fu-Ping Tian1, Qian Zhang1, Xin-Qiang Zhu1, Jiong-Jie He1, Tanweer Kumar2, Xiao-Li Wang1, Jin-Lin Zhang2
1Lanzhou Institute of Husbandry and Pharmaceutical Science, Chinese Academy of Agricultural Sciences, Lanzhou 730050, People’s Republic of China
2State Key Laboratory of Grassland Agro-ecosystem, College of Pastoral Agriculture Science and Technology, Lanzhou University, Lanzhou 730020, People’s Republic of China
3School of Life Science and Engineering, Lanzhou University of Technology, Lanzhou 730050, People’s Republic of China
4College of Animal Science, South China Agricultural University, Guangzhou 510642, People’s Republic of China

Tài liệu tham khảo

Millar, 2012, Changes in Australian agriculture and land use: implications for future food security, Inter. J. Agr. Sust., 10, 25, 10.1080/14735903.2012.646731 Tester, 2003, Na+ tolerance and Na+ transport in higher plants, Ann. Bot., 91, 503, 10.1093/aob/mcg058 Flowers, 2008, Salinity tolerance in halophytes, New Phytol., 179, 945, 10.1111/j.1469-8137.2008.02531.x Wang, 2009, Puccinellia tenuiflora maintains a low Na+ level under salinity by limiting unidirectional Na+ influx resulting in a high selectivity for K+ over Na+, Plant Cell Environ., 32, 486, 10.1111/j.1365-3040.2009.01942.x Peng, 2004, Alkali grass resists salt stress through high [K+] and an endodermis barrier to Na+, J. Exp. Bot., 55, 939, 10.1093/jxb/erh071 Wang, 2005, Puccinellia tenuiflora exhibits stronger selectivity for K+ over Na+ than wheat, J. Plant Nutr., 27, 1841, 10.1081/PLN-200026435 Li, 2012, HbCIPK2 a novel CBL-interacting protein kinase from halophyte Hordeum brevisubulatum, confers salt and osmotic stress tolerance, Plant Cell Environ., 35, 1582, 10.1111/j.1365-3040.2012.02511.x Jin, 1981, The wild forage grass in Jilin province, wild barley, Jilin Agric. Sci., 2, 73 Wang, 1998, Growth and physological metabolic changes of Hordum brevisublatum under different abversites, J. Northeast Norm. Univ., 25, 120 Li, 2006, Adaptive mechanisms of salt tolerance in Hordeum brevisubulatum, Sci. Agric. Sin., 39, 2459 Li, 2004, Study of salt tolerance in barley under NaCl stress, Pratacultural Sci. Suppl., 7, 516 Wang, 2007, Primary studies on physiological mechanisms of salt tolerance in Hordeum brevisubulatum under salt stress, Acta Agric. Boreali Sin., 22, 17 Zhao, 2004 Qi, 2004 Lu, 2003, Construction of cDNA library of Hordeum brevisubulatium Link under salt stress, J. Jilin Agric. Univ., 25, 499 Wang, 2006 Zhou, 2010 Lü, 2005, Antiporter gene from Hordum brevisubulatum (Trin.) link and its overexpression in transgenic tobaccos, J. Integr. Plant Boil., 47, 343, 10.1111/j.1744-7909.2005.00027.x Wang, 2006, Cloning and characterization of HbDREB1 gene encoding a putative DRE-binging transcription factor in Hordeum brevisubulatum, J. Jilin Agric. Univ., 28, 516 Wang, 2007, Clone of HbDREB2 gene of Hordeum brevisubulatum and identification of its transgenic tobaccos, J. Jilin Agric. Univ., 29, 643 Yue, 2010, Cloning and sequence analysis of rbcS gene of wild barley (Hordeum brevisubulatum) under salt stress, Agric. Sci. Technol., 11, 42 Wang, 2011, Molecular cloning and functional analysis of a novel calcium-dependent protein kinase gene HbCDPK from Hordeum brevisubulatum, J. Northwest A & F Univ. (Nat Sci. Ed.), 39, 111 Li, 2011, The subcellular localization of CIPK from Hordeum brevisubulatum, Liaoning Agric. Sci., 4, 1 Wu, 2011, Analyses for protein structure and subcellular localization of HbCBL1 and HbCBL2 from Hordeum brevisubulatum, Acta Agric. Boreali Sin., 26, 1 Wang, 2008 Zou, 2000 Sun, 2009, NaCl-induced alternations of cellular and tissue ion fluxes in roots of salt-resistant and salt-sensitive poplar species, Plant Physiol., 149, 1141, 10.1104/pp.108.129494 Shabala, 2010, Xylem ionic relations and salinity tolerance in barley, Plant J., 61, 839, 10.1111/j.1365-313X.2009.04110.x Zhou, 2011, Net sodium fluxes change significantly at anatomically distinct root zones of rice (Oryza sativa L.) seedlings, J. Plant Physiol., 168, 1249, 10.1016/j.jplph.2011.01.017 Wang, 2004, Puccinellia tenuiflora exhibits stronger selectivity for K+ over Na+ than wheat, J. Plant Nutr., 27, 1841, 10.1081/PLN-200026435 Maathuis, 1999, K+ nutrition and Na+ toxicity: the basis of cellular K+/Na+ ratios, Ann. Bot., 84, 123, 10.1006/anbo.1999.0912 Shabala, 2008, Potassium transport and plant salt tolerance, Physiol. Plant, 133, 651, 10.1111/j.1399-3054.2007.01008.x Guo, 2015, Salt tolerance in two tall wheatgrass pecies is associated with selective capacity for K+ over Na+, Acta Physiol. Plant, 37, 1, 10.1007/s11738-014-1708-4 Chen, 2007, Root plasma membrane transporters controlling K+/Na+ homeostasis in salt stressed barley, Plant Physiol., 145, 1714, 10.1104/pp.107.110262 Alemán, 2009, Potassium/sodium steady-state homeostasis in hellungiella halophila and Arabidopsis thaliana under long-term salinity conditions, Plant Sci., 176, 768, 10.1016/j.plantsci.2009.02.020 Shabala, 2013, Learning from halophytes: physiological basis and strategies to improve abiotic stress tolerance in crops, Ann. Bot., 112, 1209, 10.1093/aob/mct205 Boyer, 1985, Water transport, Annu. Rev. Plant Physiol., 36, 473, 10.1146/annurev.pp.36.060185.002353 Bose, 2014, Kinetics of xylem loading, membrane potential maintenance, and sensitivity of K+-permeable channels to reactive oxygen species: physiological traits that differentiate salinity tolerance between pea and barley, Plant Cell Environ., 37, 589, 10.1111/pce.12180 Blumwald, 2000, Sodium transport in plant cells, Biochim. Biophys. Acta, 1465, 140, 10.1016/S0005-2736(00)00135-8 Shi, 2002, The putative plasma membrane Na+/H+ Antiporter SOS1 controls long-distance Na+ transport in plants, Plant Cell, 14, 465, 10.1105/tpc.010371 Olías, 2009, The plasma membrane Na+/H+ antiporter SOS1 is essential for salt tolerance in tomato and affects the partitioning of Na+ between plant organs, Plant Cell Environ., 32, 904, 10.1111/j.1365-3040.2009.01971.x Golldack, 2003, Salinity stress-tolerant and -sensitive rice (Oryza sativa L.) regulate AKT1-type potassium channel transcripts differently, Plant Mol. Biol., 51, 71, 10.1023/A:1020763218045 Wang, 2007, Low-affinity Na+ uptake in the halophyte Suaeda maritima, Plant Physiol., 145, 559, 10.1104/pp.107.104315 Guo, 2012, Selective transport capacity for K+ over Na+ is linked to the expression levels of PtSOS1 in halophyte Puccinellia tenuiflora, Funct. Plant Biol., 39, 1047, 10.1071/FP12174 Yuan, 2015, ZxNHX controls Na+ and K+ homeostasis at the whole-plant level in Zygophyllum xanthoxylum through feedback regulation of the expression of genes involved in their transport, Ann. Bot., 115, 495, 10.1093/aob/mcu177 Davenport, 2007, The Na+ transporter AtHKT1;1 controls retrieval of Na+ from the xylem in Arabidopsis, Plant Cell Environ., 30, 497, 10.1111/j.1365-3040.2007.01637.x Horie, 2005, Enhanced salt tolerance mediated by AtHKT1 transporter-induced Na+ unloading from xylem vessels to xylem parenchyma cells, Plant J., 44, 928, 10.1111/j.1365-313X.2005.02595.x Hauser, 2010, A conserved primary salt tolerance mechanism mediated by HKT transporters: a mechanism for sodium exclusion and maintenance of high K+/Na+ ratio in leaves during salinity stress, Plant Cell Environ., 33, 552, 10.1111/j.1365-3040.2009.02056.x Berthomieu, 2003, Functional analysis of AtHKT1 in Arabidopsis shows that Na+ recirculation by the phloem is crucial for salt tolerance, EMBO J., 22, 2004, 10.1093/emboj/cdg207 Horie, 2009, HKT transporter-mediated salinity resistance mechanisms in Arabidopsis and monocot crop plants, Trends Plant Sci., 14, 660, 10.1016/j.tplants.2009.08.009 Xu, 2008, Functional characterization of a wheat plasma membrane Na+/H+ antiporter in yeast, Arch. Biochem. Biophys., 473, 8, 10.1016/j.abb.2008.02.018 Oh, 2009, Loss of halophytism by interference with SOS1 expression, Plant Physiol., 151, 210, 10.1104/pp.109.137802 Scoles, 2009, Characterization of salt overly sensitive 1 (SOS1) gene homoeologs in quinoa (Chenopodium quinoa wild.), Genome, 52, 647, 10.1139/G09-041 Davenport, 2005, Control of sodium transport in durum wheat, Plant Physiol., 137, 807, 10.1104/pp.104.057307 Wang, 2006, Low unidirectional sodium influx into root cells restricts net sodium accumulation in Thellungiella halophila, a salt-tolerant relative of Arabidopsis thaliana, J. Exp. Bot., 57, 1161, 10.1093/jxb/erj116 Kronzucker, 2008, Non-reciprocal interactions between K+ and Na+ ions in barley (Hordeum vulgare L.), J. Exp. Bot., 59, 2793, 10.1093/jxb/ern139 Amtmann, 1998, Mechanism of Na+ uptake by plant cells, Adv. Bot. Res., 29, 75, 10.1016/S0065-2296(08)60310-9 Buschmann, 2000, Enhancement of Na+ uptake currents, time dependent inward-rectifying K+ channel currents, and K+ channel transcripts by K+ starvation in wheat root cells, Plant Physiol., 122, 1387, 10.1104/pp.122.4.1387 Uozumi, 2000, The Arabidopsis HKT1 gene homolog mediates inward Na+ currentsin Xenopuslaevis oocytes and Na+ uptake in Saccharomy cescerevisiae, Plant Physiol., 122, 1249, 10.1104/pp.122.4.1249 Rus, 2001, AtHKT1 is a salt tolerance determinant that controls Na+ entry into plant roots, PNAS, 98, 14150, 10.1073/pnas.241501798 Horie, 2007, Rice OsHKT2;1 transporter mediates large Na+ influx component into K+-starved roots for growth, EMBO J., 26, 3003, 10.1038/sj.emboj.7601732 Wegner, 1997, Properties of two outward-rectifying channels in root xylem parenchyma cells suggest a role in K+ homeostasis and longdistance signaling, Plant Physiol., 115, 1707, 10.1104/pp.115.4.1707 Gaymard, 1998, Identification and disruption of a plant shaker-like outward channel involved in K+ release into the xylem sap, Cell, 94, 647, 10.1016/S0092-8674(00)81606-2 Shabala, 2005, Salinity induced ion flux patterns from the excised roots of Arabidopsis sos mutants, Planta, 222, 1041, 10.1007/s00425-005-0074-2 Shabala, 2006, Extracellular Ca2+ ameliorates NaCl-induced K+ loss from Arabidopsis root and leaf cells by controlling plasma membrane K+-permeable channels, Plant Physiol., 141, 1653, 10.1104/pp.106.082388 Anschütz, 2014, Going beyond nutrition: regulation of potassium homoeostasis as a common denominator of plant adaptive responses to environment, J. Plant Physiol., 171, 670, 10.1016/j.jplph.2014.01.009 Wang, 2014, Coordination of AtHKT1;1 and AtSOS1 facilitates Na+ and K+ homeostasis in Arabidopsis thaliana under salt stress, J. Plant Biol., 57, 282, 10.1007/s12374-014-0222-y Shi, 2003, Overexpression of a plasma membrane Na+/H+ antiporter gene improves salt tolerance in Arabidopsis thaliana, Nat. Biotechnol., 21, 81, 10.1038/nbt766 Flowers, 1990, Salt tolerance in the halophytic wild rice, Porteresia coarctata Tateoka, New Phytol., 114, 675, 10.1111/j.1469-8137.1990.tb00439.x Rozema, 1981, An ecophysiological study of the salt secretion of four halophytes, New Phytol., 89, 201, 10.1111/j.1469-8137.1981.tb07483.x Amarasinghe, 1988, Comparative ultrastructure of microhairs in grasses, Bot. J. Linn. Soc., 98, 303, 10.1111/j.1095-8339.1988.tb01705.x