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FluorCam叶绿素荧光成像系统部分参考文献名录(五)

FluorCam叶绿素荧光成像系统部分参考文献名录(五)

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35.     Tung, J. et al. 2013. Chlorophyll fluorescence for quantification of fungal foliar infection and assessment of the effectiveness of an induced systemic resistance activator. European Journal of Plant Pathology 136(2), 301 – 315

36.     Hanson, D.T. et al. 2013. Spatio–temporal decoupling of stomatal and mesophyll conductance induced by vein cutting in leaves of Helianthus annuus. Front Plant Sci. 4, 365

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39.     Block, A. et al. 2013. Functional Modeling Identifies Paralogous Solanesyl–diphosphate Synthases That Assemble the Side Chain of Plastoquinone–9 in Plastids, Journal of Biological Chemistry 288, 27594 – 27606

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41.     Oakenfull, R.J. et al. 2013. A C–Repeat Binding Factor Transcriptional Activator (CBF/DREB1) from European Bilberry (Vaccinium myrtillus) Induces Freezing Tolerance When Expressed in Arabidopsis thaliana. PLoS ONE 8(1)

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43.     Bae, M.J. et al. 2013. Transgenic rice overexpressing the Brassica juncea gamma–glutamylcysteine synthetase gene enhances tolerance to abiotic stress and improves grain yield under paddy field conditions. Molecular Breeding 31(4), 931 – 945

44.     Svubova, R. et al. 2013. Cuscuta europaea plastid apparatus in various developmental stages, Localization of THF1 protein. Plant Signal 8(5)

45.     Serôdio J, et al. 2013. A Method for the Rapid Generation of Nonsequential Light-Response Curves of Chlorophyll Fluorescence. Plant Physiology 163, 1089-1102

46.     Ogawa, T. et al. 2013. Disruption of the ndhF1 gene affects Chl fluorescence through state transition in the Cyanobacterium Synechocystis sp. PCC 6803, resulting in apparent high efficiency of photosynthesis. Plant Cell Physiol. 54(7), 1164 – 1171

47.     Lepage, E. et al. 2013. Plastid Genome Instability Leads to ROS Production and Plastid–to–Nucleus Retrograde Signaling in Arabidopsis. Plant Physiology

48.     Seubma, P. et al. 2012. Effects of High Temperature Exposure on Chlorophyll Fluorescence of Phalaenopsis Leaves. CMU. J. Nat. Sci. Special Issue on Agricultural&Natural Resources. 11(1), 409-420

49.     Bellasio, C., Olejníčková, J., Tesař, R., Šebela, D. & Nedbal, L. 2012. Computer Reconstruction of Plant Growth and Chlorophyll Fluorescence Emission in Three Spatial Dimensions. Sensors 12, 1052 – 1071

50.     Irina SMEU. 2012. Quality Attributes Of Fresh-Cut Lettuce Treated With Cold Plasma. Scientific Bulletin, Series F, Biotechnologies, 18, 164 – 171

51.     Hebbelmann, I. et al. 2012. Multiple strategies to prevent oxidative stress in Arabidopsis plants lacking the malate valve enzyme NADP–malate dehydrogenase. Journal of experimental botany 63, 1445 – 1459

52.     Kato, Y., Kouso, T. & Sakamoto, W. 2012. Variegated tobacco leaves generated by chloroplast ftsh suppression, implication of ftsh function in the maintenance of thylakoid membranes. Plant and cell physiology 53, 391 – 404

53.     Łabuz, J., Sztatelman, O., Banaś, A. K. & Gabryś, H. 2012. The expression of phototropins in Arabidopsis leaves, developmental and light regulation. Journal of experimental botany 63, 1763 – 1771

54.     Maruta, T. et al. 2012. H2O2–triggered retrograde signaling from chloroplasts to nucleus plays a specific role in the response to stress. Journal of Biological Chemistry 287, 11717 – 11729

55.     Maruta, T. et al. 2012. An Arabidopsis FAD Pyrophosphohydrolase, AtNUDX23, is Involved in the Flavin Homeostasis. Plant and cell physiology 53 (6), 1106 – 1116.

56.     Matrosova, A. 2012. The role of ht1 protein kinase in red light–induced stomatal opening. Department of Botany,Stockholm University

57.     Mishra, K. B. et al. 2012. Engineered drought tolerance in tomato plants is reflected in chlorophyll fluorescence emission. Plant Science 182, 79 – 86

58.     Kim C, et al. 2012. Chloroplasts of Arabidopsis Are the Source and a Primary Target of a Plant-Specific Programmed Cell Death Signaling Pathway. The Plant Cell, 24, 3026–3039

59.     Stella Hubbart, Olubukola O. Ajigboye1, Peter Horton, Erik H. Murchie. 2012. The photoprotective protein PsbS exerts control over CO2 assimilation rate in fluctuating light in rice. The Plant Journal 71(3), 402 – 412

60.     SilvaCancino, M. C., Esteban, R., Artetxe, U. & Plazaola, J. I. G. 2012. Patterns of spatiotemporal distribution of winter chronic photoinhibition in leaves of three evergreen Mediterranean species with contrasting acclimation responses. Physiologia Plantarum 144(3), 289301

61.     Tříska, J., Vrchotová, N., Olejníčková, J., Jílek, R. & Sotolář, R. 2012. Separation and Identification of Highly Fluorescent Compounds Derived from trans–Resveratrol in the leaves of Vitis vinifera infected by Plasmopara viticola. Molecules 17, 2773 – 2783

62.     Wingler, A. et al. 2012. Trehalose 6–phosphate is required for the onset of leaf senescence associated with high carbon availability. Plant physiology 158(3)12411251

63.     Eriola, Z.H. et al. 2012. Effect of steel plant pollution on photosynthetic apparatus of some spontaneous plants by chlorophyll fluorescence imaging. 3rd International Symposium on Sustainable Development, 87 – 94

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65.     Baba, M. et al. 2012. Wavelength specificity of growth, photosynthesis, and hydrocarbon production in the oil–producing green alga Botryococcus braunii. Bioresource Technology 109, 266270

66.     Elster, J. et al. 2012. Impact of warming on Nostoc colonies (Cyanobacteria) in a wet hummock meadow, Spitsbergen. Polish Polar Research 33(4), 395 – 420

67.     Weiß, C. et al. 2012. Effects of rare codon clusters on the expression of a high–turnover chloroplast protein in Chlamydomonas reinhardtii. Journal of Biotechnology 160(3–4), 105 – 111

68.     Gabara, B. et al. 2012. Ultrastructural and metabolic modifications at the plant–pathogen interface in Mesembryanthemum crystallinum leaves infected by Botrytis cinerea. Environmental and Experimental Botany 77, 33 – 43

69.     Kong, L. et al. 2012. High Nitrogen Rate Inhibits Proteolysis and Decreases the Export of Leaf Pre–stored Proteins to Grains in Wheat (Triticum aestivum). Int. J. Agric. Biol. 14, 1009 – 1013

70.     Li, G. et al. 2012. Effects of nitrogen on photosynthetic characteristics of leaves from two different stay-green corn (Zea mays L.) varieties at the grain-filling stage. Can. J. Plant Sci. 92, 671-680

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75.     Ellawala, C., Asaeda, T. & Kawamura, K. 2011. Influence of flow turbulence on Chara fibrosa, growth, stress, and tissue carbon content. Journal of Freshwater Ecology 26, 507 – 515

76.     Kocurek V, et al. 2011. Efficacy of reduced doses of bentazone assessed by instruments based on measurement of chlorophyll fluorescence. Acta Univ. Agric. Silvic. Mendelianae Brun. 59, 137-144

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82.     Higuchi–Takeuchi, M. et al. 2011. Functional Analysis of Two Isoforms of Leaf–Type Ferredoxin–NADP+–Oxidoreductase in Rice Using the Heterologous Expression System of Arabidopsis. Plant physiology 157, 96 – 108

83.     Hossain, K., Nakamura, T. & Yamasaki, H. 2011. Effect of nitric oxide on leaf non–photochemical quenching of fluorescence under heat–stress conditions. Russian Journal of Plant Physiology 58, 629 – 633

84.     Hura, T., Hura, K. & Grzesiak, M. 2011. Soil drought applied during the vegetative growth of triticale modifies the physiological and biochemical adaptation to drought during the generative development. Journal of Agronomy and Crop Science 197, 113 – 123

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86.     Kenny, P., Deák, Z., Csôsz, M., Purnhauser, L. & Vass, I. 2011. Characterization and early detection of tan spot disease in wheat in vivo with chlorophyll fluorescence imaging. Acta Biologica Szegediensis 55, 87 – 90

87.     Kvíderová, J., Elster, J. & Šimek, M. 2011. In situ response of Nostoc commune sl colonies to desiccation in Central Svalbard, Norwegian High Arctic. Fottea 11(1), 87 – 97

88.     Kyseláková, H. et al. 2011. Photosynthetic alterations of pea leaves infected systemically by pea enation mosaic virus, A coordinated decrease in efficiencies of CO2 assimilation and photosystem II photochemistry. Plant Physiology and Biochemistry 49(11), 1279 – 1289

89.     Leitenmaier, B. & Küpper, H. 2011. Cadmium uptake and sequestration kinetics in individual leaf cell protoplasts of the Cd/Zn hyperaccumulator Thlaspi caerulescens. Plant, Cell & Environment 34, 208 – 219

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91.     Majláth, I., Szalai, G., Papp, I., Vanková, R. & Janda, T. 2011. Atnoa1 mutant Arabidopsis plants induce compensation mechanisms to reduce the negative effects of the mutation. Journal of plant physiology 168(11), 1184 – 1190

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