53.Li T, et al. First cloning and characterization of two functional aquaporin genes from an arbuscular mycorrhizal fungus Glomus intraradices.New Phytologist, 2013, 197: 617-630.
52.Sun J, et al. Extracellular ATP signaling is mediated by H2O2 and cytosolic Ca2+ in the salt response of Populus euphratica cells. PLoS ONE, 2012, 7(12): e53136. doi:10.1371/journal.pone.0053136.
51.Wang P, et al. A Na+/Ca2+ exchanger-like protein (AtNCL) involved in salt stress in Arabidopsis. Journal of Biological Chemistry, 2012, doi: 10.1074/jbc.M112.351643.
50.Lu YJ, et al. Exogenous hydrogen peroxide, nitric oxide and calcium mediate root ion fluxes in two non-secretor mangrove species subjected to NaCl stress. Tree Physiology, 2012, doi: 10.1093/treephys/tps119.
49.Wang FF, et al. Overexpression of a poplar two-pore K+ channel enhances salinity tolerance in tobacco cells. Plant Cell, Tissue and Organ Culture, 2013, 112: 19-31.
48.Sun J, et al. Non-invasive microelectrode cadmium flux measurements reveal the spatial characteristics and real-time kinetics of cadmium transport in hyperaccumulator and non hyperaccumulator ecotypes of Sedum alfredii.Journal of Plant Physiology, http://dx.doi.org/10.1016/j.jplph.2012.10.014
47.Yue YS, et al. SOS1 gene overexpression increased salt tolerance in transgenic tobacco by maintaining a higher K+/Na+ ratio. Journal of Plant Physiology, 2012, 169: 255-261.
46.Lin AP, et al. Simultaneous measurements of H+ and O2 fluxes in Zostera marina and its physiological implications. Physiologia Plantarum, 2012, DOI: 10.1111/ppl.12008
45.Tang Z, et al. Knockdown of a rice stelar nitrate transporter alters long-distance translocation but not root influx. Plant Physiology, 2012, 160: 2052–2063.
44.Li RF, et al. HbCIPK2, a novel CBL-interacting protein kinase from halophyte Hordeum brevisubulatum, confers salt and osmotic stress tolerance. Plant, Cell & Environment,, 2012, 35 (9): 1582-1600.
43.Xu WF, et al. PIN2 is required for the adaptation of Arabidopsis roots to alkaline stress by modulating proton secretion. Journal of Experimental Botany, 2012,doi: 10.1093/jxb/ers259.
42.Yang LJ, et al. Uncoupling of K+ and Cl- transport across the cell membrane in the process of regulatory volume decrease. Biochemical Pharmacology, 2012,84(3):292-302.
41.Xu J, et al. PComparative physiological responses of Solanum nigrum and Solanum torvum to cadmium stress. New Phytologist, 2012 Jul 18. doi: 10.1111/j.1469-8137.2012.04236.x.
40.Xu J, et al. Comparative transcriptome analysis of cadmium responses in Solanum nigrum and Solanum torvum. New Phytologist, 2012 Jul 18. doi: 10.1111/j.1469-8137.2012.04235.x.
39.Li LZ, et al. Pathways of cadmium fluxes in the root of the halophyte Suaeda salsa. Ecotoxicology and Environmental Safety, 2012, 75: 1-7.
38.Zeng GM, et al. Responses of Phanerochaete chrysosporium to Toxic Pollutants:Physiological Flux,Oxidative Stress,and Detoxification. Environmental Science & Technology, 2012, 46(14):7818-7825.
37.Huang X, et al. The wheat gene TaST can increase the salt tolerance of transgenic Arabidopsis. Plant Cell Reports, 2012, 31: 339-347.
36. Li F, et al. Abnormal mitochondrial function impairs calcium influx in diabetic mouse pancreatic beta cells. Chinese Medical Journal, 2012, 125, 3 : 502-510
35. Li J, et al. Paxillus involutus strains MAJ and NAU mediate K+/Na+ homeostasis in ectomycorrhizal Populus × canescens under NaCl stress. Published online before print May 2012, doi: http://dx.doi.org/10.1104/pp.112.195370 Plant Physiology, May 2012 pp.112.195370
34. Li S, et al. Cadmium impairs ion homeostasis by altering K+ and Ca2+ channel activities in rice root hair cells. Plant, Cell & Environment, Article first published online: 28 MAY 2012, DOI: 10.1111/j.1365-3040.2012.02532.x
33. Pan LJ, et al. Effects and mechanisms of store-operated calcium channel blockade on hepatic ischemia-reperfusion injury in rats. World Journal of Gastroenterology, 2012, 18(4): 356-367.
32.Xu JD, et al. Emodin induces chloride secretion in rat distal colon through activation of mast cells and enteric neurons. British Journal of Pharmacology, 2012, 165: 197-207.
31. Xu WF, et al. TFT6 and TFT7, two different members of tomato 14-3-3 gene family, play distinct roles in plant adaption to low phosphorus stress. Plant, Cell & Environment, 2012, 35, 8: 1393-1406.
30.Zhang JT, et al. Arabidopsis fatty acid desaturase FAD2 is required for salt tolerance during seed germination and early seedling growth. PLoS ONE, 2012, 7: e30355.
29. Chen XY, et al. Modified noninvasive microtest electrophysiological technology for vacuolar H+ flux detection. Analytical Biochemistry, 2011, 418: 295–297.
28.Chen Z, et al.A novel sediment microbial fuel cell with a biocathode in the rice rhizosphere. Bioresource Technology, doi:10.1016/j.biortech.2011.10.040
27. Ding XD, et al. Synergistic interactions between Glomus mosseae and Bradyrhizobium japonicum in enhancing proton release from nodules and hyphae. Mycorrhiza, 2011 Apr 15.
26.HaoLH, et al.Extracellular ATP promotes stomatal opening of Arabidopsis thaliana through heterotrimeric G protein a subunit and reactive oxygen species. Molecular Plant, (2011) doi: 10.1093/mp/ssr095
25. He JL, et al. Net cadmium flux and accumulation reveal tissue-specific oxidative stress and detoxification in Populus × canescens. Physiologia Plantarum, 2011 doi: 10.1111/j.1399-3054.2011.01487.x
24. Fan JL, et al. Disarrangement of actin filaments and Ca2+ gradient by CdCl2 alters cell wall construction in Arabidopsis thaliana root hairs by inhibiting vesicular trafficking. Journal of Plant Physiology, (2011), doi:10.1016/j.jplph.2011.01.031
23.Kong XQ,et al. Effects of non-uniform root zone salinity on water use Na+ recirculation, and Na+ and H+ flux in cotton. Journal of Experimental Botany, (2011) doi: 10.1093/jxb/err420
22. Li LS, et al. Entacapone promotes cAMP-dependent colonic Cl- secretion in rats. Neurogastroenterology and Motility, 2011, 23: 657-e277
21.Sun J, et al.An ATP signalling pathway in plant cells: extracellular ATP triggers programmed cell death in Populus euphratica. Plant, Cell and Environment, 2011 Nov 9. doi: 10.1111/j.1365-3040.2011.02461.x
20. Xu RR, et al. A DExD⁄H box RNA helicase is important for K+ deprivation responses and tolerance in Arabidopsis thaliana. FEBS Journal, 278, 13: 2296–2306
19. Zhang XK, et al. Differential Cl-/salt tolerance and NaCl-induced alternations of tissue and cellular ion fluxes in Glycine max, Glycine soja and their hybrid seedlings. Journal of Agronomy and Crop Science, (2011) ISSN 0931-2250
18. Zhou QY, et al. Net sodium fluxes change significantly at anatomically distinct root zones of rice (Oryza sativa L.) seedlings. Journal of Plant Physiology, 2011 Feb 23, 168(11): 1249 - 1255.
17. Chen J, et al. Nitric oxide enhances salt secretion and Na+ sequestration in a mangrove plant, Avicennia marina, through increasing the expression of H+-ATPase and Na+/H+ antiporter under high salinity. Tree Physiology, 2010 30(12): 1570 - 1585.
16. Li Q, et al. Root growth inhibition by NH4+ in Arabidopsis is mediated by the root tip and is linked to NH4+ efflux and GMPase activity. Plant, Cell and Environment, 2010, 33: 1529 - 1542.
15. Ma W, et al. Nitric oxide modulates cadmium influx during cadmium-induced programmed cell death in tobacco BY-2 cells. Planta, 2010, 232: 325 - 35.
14. Sun J, et al. H2O2and cytosolic Ca2+signals triggered by the PM H+-coupled transport system mediate K+/Na+ homeostasis in NaCl-stressed Populus euphratica cells. Plant, Cell and Environment, 2010, 33: 943 - 958.
13. Wang Y, et al. Disruption of actin filaments induces mitochondrial Ca2+ release to the cytoplasm and [Ca2+]c changes in Arabidopsis root hairs. BMC Plant Biology, 2010, 10: 53.
12. Yang Y, et al. The Arabidopsis chaperone J3 regulates the plasma membrane H+-ATPase through interaction with the PKS5 kinase. Plant Cell, 2010, 22: 1313 - 1332.
11. 杨光 等.膜泡相关蛋白OsSEC27P 增强缺铁转基因烟草根的H+分泌.科学通报,2010,55:1233 - 1239
10. Chen T, et al.Combined proteomic and cytological analysis of Ca2+-calmodulin regulation in Picea meyeri pollen tube growth. Plant Physiology, 2009, 149: 1111 - 1126.
9. Sun J, et al. Ion flux profiles and plant ion homeostasis control under salt stress. Plant Signaling & Behavior, 2009, 4: 261 - 264.
8. Sun J, et al. Calcium mediates root K+/Na+ homeostasis in poplar species differing in salt tolerance. Tree Physiology, 2009, 29: 1175 - 1186.
7. Sun J, et al. NaCl-induced alternations of cellular and tissue ion fluxes in roots of salt-resistant and salt-sensitive poplar species. Plant Physiology , 2009, 149: 1141 - 1153.
6. Wang Q, et al.Calmodulin binds to extracellular sites on the plasma membrane of plant cells and elicits a rise in intracellular calcium concentration.Journal of Biological Chemistry, 2009, 284: 12000 - 12007.
5. Wang YH, et al. Nitric oxide modulates the influx of extracellular Ca2+ and actin filament organization during cell wall construction in Pinus bungeana pollen tubes. New Phytologist, 2009, 182: 851 - 862.
4. Zhang ZY, et al. Measuring Ca2+ influxes of TRPC1-dependent Ca2+ channels in HL-7702 cells with Non-invasive Micro-test Technique. World Journal of Gastroenterology, 2009, 15: 4150 - 4155.
3. Wu X, et al. Integrative proteomic and cytological analysis of the effects of extracellular Ca2+ influx on Pinus bungeana pollen tube development.Journal of Proteome Research, 2008, 7:4299 - 4312.
2. Xu Yue, Sun Tong, Yin Liping. Application of non-invasive microsensing system to simultaneously measure both H+ and O2 fluxes around the pollen tube. Journal of Integrative Plant Biology, 2006, 48: 823-831
1. 印莉萍,上官宇,许越.非损伤性扫描离子选择电极技术及其在高等植物研究中的应用.自然科学进展,2006,16:262 - 266
47. Xuanhao Sun et al.Mechanical Stretch Induced Calcium Efflux from Bone Matrix Stimulates Osteoblasts. Bone. 2012,50(3):581-591.
46. Mugnai S et al. Local Root Apex Hypoxia Induces NO-Mediated Hypoxic Acclimation of the Entire Root.Plant Cell Physiol. 2012,53(5):912-920.
45. Anuphon Laohavisit et al.Arabidopsis Annexin1 Mediates the Radical-Activated Plasma Membrane Ca2+- and K+-Permeable Conductance in Root Cells.Plant Cell. 2012,24(4):1522-33.
44. Hawkins BJ, et al. Shoot excision has no effect on net flux of protons, ammonium or nitrate in seedling roots of a conifer and three crop species.Journal of Plant Physiology. 2012 ,15;169(9):924-8.
43. Staal Marten et al. Apoplastic Alkalinization Is Instrumental for the Inhibition of Cell Elongation in the Arabidopsis Root by the Ethylene Precursor 1-Aminocyclopropane-1-Carboxylic Acid.Plant Physiology. 2011, 155(4): 2049 - 2055.
42. SERGEY SHABALA et al.Plasma membrane Ca2+ transporters mediate virus-induced acquired resistance to oxidative stress.Plant, Cell & Environment.2011,34(3):406–417.
41. TRACEY A. CUIN et al.Assessing the role of root plasma membrane and tonoplast Na+H+ exchangers in salinity tolerance in wheat in planta quantification methods.Plant, Cell & Environment.2011,34(6):947–961.
40. Michard et al.Glutamate Receptor–Like Genes Form Ca2+ Channels in Pollen Tubes and Are Regulated by Pistil D-Serine.Science Magazine. 2011,332(6028):434-437
39. Ana Carolina Vieira et al.Ionic Components of Electric Current at Rat Corneal Wounds.PLoS One. 2011,6(2): e17411.
38. Yuda Hariadi et al.Ionic and osmotic relations in quinoa (Chenopodium quinoa Willd.) plants grown at various salinity levels.J Exp Bot. 2011,62(1):185–193.
37. Matthew A. Kreitzer et al.Modulation of extracellular proton fluxes from retinal horizontal cells of the catfish by depolarization and glutamate.J Gen Physiol. 2007,130(2): 169–182.
36. LARS H. WEGNER et al.Sequential depolarization of root cortical and stelar cells induced by an acute salt shock – implications for Na+ and K+ transport into xylem vessels.Plant, Cell & Environment.2011,34(5):859–869.
35. Isaac Zepeda-Jazo et al.Polyamines Interact with Hydroxyl Radicals in Activating Ca2+ and K+ Transport across the Root Epidermal Plasma Membranes.Plant Physiol. 2011,157(4):2167-80.
34. Alavian KN et al.Bcl xL regulates metabolic ef ciency of neurons through interaction with the mitochondrial F1F0 ATP synthase.Nat Cell Biol. 2011,13(10):1224-33.
33. Shannon Ray et al.Tg2576 Cortical Neurons That Express Human Ab Are Susceptible to Extracellular Aβ-Induced, K+ Efflux Dependent Neurodegeneration.PLoS One. 2011,6(4):e19026.
32. Vadim Demidchik et al.Receptor-Like Activity Evoked by Extracellular ADP in Arabidopsis Root Epidermal Plasma Membrane.Plant Physiol. 2011,156(3):1375-85.
31. Bárbara Tavares et al.The essential role of anionic transport in plant cells: the pollen tube as a case study.J Exp Bot. 2011,62(7):2273-2298.
30. Andrea L. Kocmarek et al. Potassium fluxes across the blood brain barrier of the cockroach, Periplaneta americana.J Insect Physiol. 2011,57(1):127-35.
29. McLamore ES, et al. A self-referencing microelectrode for real time measurements of silver flux. Sensors and Actuators B: Chemical. 2011, 153, 2: 445–452.
28. Jaroch D, et al. Cell-mediated deposition of porous silica on bacterial biofilms. Biotechnology and Bioengineering. 2011, 108, 10: 2249–2260.
27. Salmi ML, et al. Changes in gravity rapidly alter the magnitude and direction of a cellular calcium current. Planta. 2011, 233(5): 911-20.
26. Brian Reid, et al. Ion-selective self-referencing probes for measuring specific ion flux. Communicative integrative biology. 2011, 4, 5: 524 - 527.
25. McLamore ES, et al. Non-invasive tools for measuring metabolism and biophysical analyte transport: self-referencing physiological sensing. Chemical Society Reviews. 2011, 40(11): 5308-20.
24. McLamore ES, et al. A self referencing platinum nanoparticle decorated enzyme-based microbiosensor for real time measurement of physiological glucose transport. Biosensors and Bioelectronics. 2011, 26(5): 2237–2245.
23. Sergey Shabala et al.Xylem ionic relations and salinity tolerance in barley.The Plant Journal.2010,91(5):839–853.
22. Shu-Chen Wu et al.Ammonium-dependent sodium uptake in mitochondrion-rich cells of medaka (Oryzias latipes) larvae. Am J Physiol Cell Physiol. 2010,298(2):C237-50.
21. Vadim Demidchik et al.Arabidopsis root K+-efflux conductance activated by hydroxyl radicals, single-channel properties, genetic basis and involvement in stress-induced cell death.J Cell Sci. 2010,123(Pt 9):1468-79.
20. Elena Jeworutzki et al.Early signaling through the Arabidopsis pattern recognition receptors FLS2 and EFR involves Ca2+-associated opening of plasma membrane anion channels.The Plant Journal.2010,62(3):367–378.
19. Jayakumar Bose et al.Aluminium-induced ion transport in Arabidopsis,the relationship between Al tolerance and root ion flux. J. Exp. Bot.2010,61(11): 3163-3175.
18. C. Michele Nawata et al.Functional characterization of Rhesus glycoproteins from an ammoniotelic teleost,the rainbow trout, using oocyte expression and SIET analysis.J Exp Biol.2010,213:1049-1059.
17. Yongqing Yang et al.The Arabidopsis Chaperone J3 Regulates the Plasma Membrane H+-ATPase through Interaction with the PKS5 Kinase.The Plant Cell.2010,22(4):1313-1332
16. Floor ten Hoopen et al.Competition between uptake of ammonium and potassium in barley and Arabidopsis roots,molecular mechanisms and physiological consequences.J. Exp. Bot.2010,61(9): 2303-2315.
15. Roger S. Chung et al.The Native Copper- and Zinc- Binding Protein Metallothionein Blocks Copper-Mediated Aβ Aggregation and Toxicity in Rat Cortical Neurons. Plosone.2010,5(8):1-11
14. Eric S. McLamore et al.Non-invasive quantification of endogenous root auxin transport using an integrated flux.The Plant Journal.2010,63(6):1004–1016.
13. E. S. McLamore et al.Membrane-Aerated Biofilm Proton and Oxygen Flux during Chemical Toxin Exposure Running Title Toxicity and Stress Response in Membrane Aerated Biofilms.Environ. Sci. Technol., 2010, 44(18):7050–7057
12. Rashmi Sasidharan et al.Light quality-mediated petiole elongation in Arabidopsis during shade avoidance involves cell wall modification by XTHs..Plant Physiol.2010,154(2):978–990.
11. Kristin E. Smith et al.Physiological and pharmacological characterizations of the larval Anopheles albimanus rectum support a change in protein distribution and or function in varying salinities.Comp Biochem Physiol A Mol Integr Physiol. 2010,157(1):55-62.
10. Lana Shabala et al.Prolonged Aβ treatment leads to impairment in the ability of primary cortical neurons to maintain K+ and Ca2+ homeostasis.Mol Neurodegener. 2010,5:30.
9. Barbara J. Hawkins et al.pH affects ammonium, nitrate and proton fluxes in the apical region of conifer and soybean roots.Physiologia Plantarum.2010,138(2):238–247
8. Jayakumar Bose et al.Aluminum-dependent dynamics of ion transport in Arabidopsis,specificity of low pH and aluminum responses.Physiologia Plantarum.2010,139(4):401–412
7. Pandolfi C et al.Specifi city of Polyamine Effects on NaCl-induced Ion Flux Kinetics and Salt Stress Amelioration in Plants.Plant Cell Physiol. 2010,51(3):422-34.
6. Kun Mei Guo et al. The cyclic nucleotide-gated channel AtCNGC10 transports Ca2+. Physiol Plant. 2010 ,139(3):303-12.
5. Hang Nguyen et al.Larvae of the midge Chironomus riparius possess two distinct mechanisms for ionoregulation in response to ion-poor conditions. Am J Physiol Regul Integr Comp Physiol. 2010,299(3):R762-73.
4. Roger R. Lew. Turgor and netionfluxresponses to activation of the osmoticMAPkinasecascade by fludioxonil in the filamentous fungus Neurosporacrassa. Fungal Genetics and Biology. 2010, 47, 8: 721–726.
3. Messerli MA, et al. Construction, theory, and practical considerations for using self-referencing of Ca2+-selective microelectrodes for monitoring extracellular Ca2+ gradients. Methods in Cell Biology. 2010, 99: 91-111.
2. E.S. McLamore, et al. A self-referencing glutamate biosensor for measuring real time neuronal glutamate flux. Journal of Neuroscience Methods. 2010, 189, 1: 14–22.
1. McLamore ES, et al. Self-referencing optrodes for measuring spatially resolved, real-time metabolic oxygen flux in plant systems. Planta, 2010, 232(5): 1087-99.

Recognizing NMT belongs to hands-on technology, the more you learn from the experts, the better you can take advantage of its unique features to enhance your research. So, YoungerUSA initiated two types of platforms to help you to make a better use of NMT.

Finally you got the genes/proteins or any biological materials that you have spent a lot of time to work with. Now, you want to know their functions, especially phy...