Acta Laser Biology Sinica, Volume. 28, Issue 4, 336(2019)
Roles of PEX5 in the Regulation of Stress Resistance in Arabidopsis Roots
[1] [1] ISLINGER M, GRILLE S, FAHIMI H D, et al. The peroxisome:an update on mysteries[J]. Histochemistry & Cell Biology, 2012, 137(5): 547-574.
[2] [2] MICHAEL H, CARSTEN L, JAKOB P, et al. Dual specificities of the glyoxysomal/peroxisomal processing protease DEG15 in higher plants[J]. Proceedings of the National Academy of Sciences of the United States of America, 2007, 104(27): 11501-11506.
[3] [3] GONZALEZ K L, RATZEL S E, BURKS K H, et al. A pex1 missense mutation improves peroxisome function in a subset of Arabidopsis pex6 mutants without restoring PEX5 recycling[J]. Proceedings of the National Academy of Sciences of the United States of America, 2018, 115(14): 201721279.
[4] [4] SCHRUL B, SCHLIEBS W. Intracellular communication between lipid droplets and peroxisomes:the Janus face of PEX19[J]. Biological Chemistry, 2018, 399(7): 741-749.
[5] [5] RODR-GUEZ-SERRANO M, ROMERO-PUERTAS M C, SANZ-FERN N M, et al. Peroxisomes extend peroxules in a fast response to stress via a eactive oxygen species-mediated induction of the peroxin PEX11a[J]. Plant Physiology, 2016, 171(3): 1665-1674.
[6] [6] IMOGEN A S, FEDERICA B, STEPHEN P S, et al. An Arabidopsis pex10 null mutant is embryo lethal, implicating peroxisomes in an essential role during plant embryogenesis[J]. Plant Physiology, 2003, 133(4): 1809-1819.
[7] [7] UWE S, GERHARD W, MARTEN V, et al. Atpex10, a nuclear gene essential for peroxisome and storage organelle formation during Arabidopsis embryogenesis[J]. Proceedings of the National Academy of Sciences of the United States of America, 2003, 100(16): 9626-9631.
[8] [8] ALISON M. MOTLEY E H H, RENE K, et al. Caenorhabditis elegans has a single pathway to target matrix proteins to peroxisomes[J]. Embo Reports, 2000, 1(1): 40-46.
[9] [9] ZOLMAN B K, YODER A, BARTEL B. Genetic analysis of indole-3-butyric acid responses in Arabidopsis thaliana reveals four mutant classes.[J]. Genetics, 2002, 156(3): 1323-1337.
[10] [10] RAMN N M, BARTEL B. Interdependence of the peroxisome-targeting receptors in Arabidopsis thaliana:PEX7 facilitates PEX5 accumulation and import of PTS1 cargo into peroxisomes[J]. Molecular Biology of the Cell, 2010, 21(7): 1263-1271.
[11] [11] WOODWARD A W, BARTEL B. The Arabidopsis peroxisomal targeting signal type 2 receptor PEX7 is necessary for peroxisome function and dependent on PEX5[J]. Molecular Biology of the Cell, 2005, 16(2): 573-583.
[12] [12] JIANPING H, ALISON B, BONNIE B, et al. Plant peroxisomes:biogenesis and function[J]. The Plant Cell, 2012, 24(6): 2279-2303.
[13] [13] WANDERS R J A, WATERHAM H R. Peroxisomal disorders: the single peroxisomal enzyme deficiencies[J]. BBA-Molecular Cell Research, 2006, 1763(12): 1707-1720.
[14] [14] MITTLER R, VANDERAUWERA S, GOLLERY M, et al. Reactive oxygen gene network of plants[J]. Trends in Plant Science, 2004, 9(10): 490-498.
[15] [15] YAO Kun, LIAN Conglong, WANG Jingjing, et al. PePEX11 functions in regulating antioxidant capacity of Arabidopsis thaliana under salt stress[J]. Journal of Beijing Forestry University, 2018, 40(05): 19-28.
[16] [16] ZHAO Yahong. Cloning and functional analysis of the peroxisome generate protein gene CpPEX22 from Chimonanthus praecox[D]. Chongqing:Southwest University, 2013.
[17] [17] KOCH J, BROCARD C. Membrane elongation factors in organelle maintenance:the case of peroxisome proliferation[J]. Biomolecular Concepts, 2011, 2(5): 353-364.
[18] [18] PAN D, NAKATSU T, KATO H. Crystal structure of peroxisomal targeting signal-2 bound to its receptor complex Pex7p-Pex21p[J]. Nature Structural & Molecular Biology, 2013, 20(8): 987-993.
[19] [19] XU Jing, LI Huiliang, ZHU Jiahong, et al. Insights into fatty acids β-oxidation in plant[J]. Letters in Biotechnology, 2008, 19(1): 141-144.
[20] [20] AARON B, RON M,NOBUHIRO S. ROS as key players in plant stress signalling[J]. Journal of Experimental Botany, 2014, 65(5): 1229-1240.
[21] [21] ZHANG M, SMITH J A C, HARBERD N P, et al. The regulatory roles of ethylene and reactive oxygen species (ROS) in plant salt stress responses[J]. Plant Molecular Biology, 2016, 91(6): 651-659.
[22] [22] RYLOTT E L, ROGERS C A, GILDAY A D, et al. Arabidopsis mutants in short- and medium-chain acyl-CoA oxidase activities accumulate acyl-CoAs and reveal that fatty acid β-oxidation is essential for embryo development[J]. Journal of Biological Chemistry, 2003, 278(24): 21370-21377.
[23] [23] BAKER A, GRAHAM I A, HOLDSWORTH M, et al. Chewing the fat:β-oxidation in signalling and development[J]. Trends in Plant Science, 2006, 11(3): 124-132.
[24] [24] SCHUMANN U, WANNER G, VEENHUIS M, et al. AthPEX10, a nuclear gene essential for peroxisome and storage organelle formation during Arabidopsis embryogenesis[J]. Proceedings of the National Academy of Sciences, 2003, 100(16): 9626-9631.
[25] [25] HU J. A role for peroxisomes in photomorphogenesis and development of Arabidopsis[J]. Science, 2002, 297(5580): 405-409.
[26] [26] FAN J. The Arabidopsis PEX12 gene is required for peroxisome biogenesis and is essential for development[J]. Plant Physiology, 2005, 139(1): 231-239.
[27] [27] HAYASHI M, NITO K, TORIYAMA-KATO K, et al. AtPex14p maintains peroxisomal functions by determining protein targeting to three kinds of plant peroxisomes[J]. Embo Journal, 2000, 19(21): 5701-5710.
[28] [28] PENG Fanglin, WANG Li, MU Chun, et al. Effect of peroxidase gene RsPRX1 on antioxidant ability in Raphanus sativus[J]. Guizhou Agricultural Sciences, 2014, 42(9): 40-42.
[29] [29] SPARKES I A, BRANDIZZI F, SLOCOMBE S P, et al. An Arabidopsis pex10 null mutant is embryo lethal, implicating peroxisomes in an essential role during plant embryogenesis[J]. Plant Physiology, 2003, 133(4): 1809-1819.
[30] [30] PRACHAROENWATTANA I, CORNAH J E, SMITH S M. Arabidopsis peroxisomal citrate synthase is required for fatty acid respiration and seed germination[J]. Plant Cell, 2005, 17(7): 2037-2048.
[31] [31] PINFIELD-WELLS H, RYLOTT E L, GILDAY A D, et al. Sucrose rescues seedling establishment but not germination of Arabidopsis mutants disrupted in peroxisomal fatty acid catabolism[J]. The Plant Journal, 2005, 43(6): 861-872.
[32] [32] SANDALIO L M, RODRUEZSERRANO M, ROMEROPUERTAS M C, et al. Role of peroxisomes as a source of reactive oxygen species (ROS) signaling molecules[J]. Sub-cellular Biochemistry, 2013, 69(5): 231-255.
[33] [33] NOCTOR G, REICHHELD J P, FOYER C H. ROS-related redox regulation and signaling in plants[J]. Quarterly in Cell & Developmental Biology, 2017, 21(17): 30246-30256.
[34] [34] CUI Huiping, ZHOU Wei, GUO Changhong. The role of plant peroxisomes in ROS network[J]. Chinese Journal of Biochemistry and Molecular Biology, 2017, 33(3): 220-226.
[35] [35] QUEVAL G, EMMANUELLE I B, FRANK A H, et al. Conditional oxidative stress responses in the Arabidopsis photorespiratory mutant cat2 demonstrate that redox state is a key modulator of daylength dependent gene expression, and define photoperiod as a crucial factor in the regulation of H2O2 induced cell death[J]. The Plant Journal, 2007, 52(4): 640-657.
Get Citation
Copy Citation Text
ZHAN Shuang, LIANG Qiwen, LUO Weigui, XIAO Shuai, SU Yi, XIAO Langtao. Roles of PEX5 in the Regulation of Stress Resistance in Arabidopsis Roots[J]. Acta Laser Biology Sinica, 2019, 28(4): 336
Category:
Received: Mar. 28, 2019
Accepted: --
Published Online: Sep. 27, 2019
The Author Email: Langtao XIAO (ltxiao@hunau.edu.cn)