NPR1 Protein Regulates Pathogenic and Symbiotic Interactions between Rhizobium and Legumes and Non-Legumes

被引:32
|
作者
Peleg-Grossman, Smadar [1 ]
Golani, Yael [1 ]
Kaye, Yuval [1 ]
Melamed-Book, Naomi [1 ]
Levine, Alex [1 ]
机构
[1] Hebrew Univ Jerusalem, Dept Plant & Environm Sci, Jerusalem, Israel
来源
PLOS ONE | 2009年 / 4卷 / 12期
基金
以色列科学基金会;
关键词
SYSTEMIC ACQUIRED-RESISTANCE; PLANT-DISEASE RESISTANCE; OXYGEN SPECIES PRODUCTION; SALICYLIC-ACID; MEDICAGO-TRUNCATULA; REACTIVE OXYGEN; OXIDATIVE BURST; HYPERSENSITIVE RESPONSE; CELL-DEATH; GENE;
D O I
10.1371/journal.pone.0008399
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Background: Legumes are unique in their ability to establish symbiotic interaction with rhizobacteria from Rhizobium genus, which provide them with available nitrogen. Nodulation factors (NFs) produced by Rhizobium initiate legume root hair deformation and curling that entrap the bacteria, and allow it to grow inside the plant. In contrast, legumes and non-legumes activate defense responses when inoculated with pathogenic bacteria. One major defense pathway is mediated by salicylic acid (SA). SA is sensed and transduced to downstream defense components by a redox-regulated protein called NPR1. Methodology/Principal Findings: We used Arabidopsis mutants in SA defense pathway to test the role of NPR1 in symbiotic interactions. Inoculation of Sinorhizobium meliloti or purified NF on Medicago truncatula or nim1/npr1 A. thaliana mutants induced root hair deformation and transcription of early and late nodulins. Application of S. meliloti or NF on M. truncatula or A. thaliana roots also induced a strong oxidative burst that lasted much longer than in plants inoculated with pathogenic or mutualistic bacteria. Transient overexpression of NPR1 in M. truncatula suppressed root hair curling, while inhibition of NPR1 expression by RNAi accelerated curling. Conclusions/Significance: We show that, while NPR1 has a positive effect on pathogen resistance, it has a negative effect on symbiotic interactions, by inhibiting root hair deformation and nodulin expression. Our results also show that basic plant responses to Rhizobium inoculation are conserved in legumes and non-legumes.
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页数:10
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共 33 条
  • [1] RHIZOBIUM NODULATION OF NON-LEGUMES
    RIDGE, RW
    ROLFE, BG
    JING, Y
    COCKING, EC
    SYMBIOSIS, 1993, 14 (1-3) : 345 - 357
  • [2] RELATIONSHIPS BETWEEN THE MYCORRHIZAL AND ACTINORHIZAL SYMBIOSES IN NON-LEGUMES
    CERVANTES, E
    RODRIGUEZBARRUECO, C
    METHODS IN MICROBIOLOGY, 1992, 24 : 417 - 432
  • [3] THE CONTRIBUTION OF ASSOCIATIVE AND SYMBIOTIC NITROGEN-FIXATION TO THE NITROGEN NUTRITION OF NON-LEGUMES
    CHALK, PM
    PLANT AND SOIL, 1991, 132 (01) : 29 - 39
  • [4] Root interactions between intercropped legumes and non-legumes—a competition study of red clover and red beet at different nitrogen levels
    Sally Nordlund Andersen
    Dorte Bodin Dresbøll
    Kristian Thorup-Kristensen
    Plant and Soil, 2014, 378 : 59 - 72
  • [5] INTERACTIONS BETWEEN THE ACIDIC POLYSACCHARIDES SECRETED BY RHIZOBIUM, RHIZOBIUM PHAGE, AND LEGUMES
    McNeil, M.
    Darvill, J. E.
    Darvill, A. G.
    Albersheim, P.
    PLANT PHYSIOLOGY, 1983, 72 : 161 - 161
  • [6] Symbiosis between Frankia and actinorhizal plants: Root nodules of non-legumes
    Pawlowski, K.
    Sirrenberg, A.
    Indian Journal of Experimental Biology, 2003, 41 (10) : 1165 - 1183
  • [7] RAM1 orchestrates arbuscular mycorrhizal symbiosis in non-legumes
    Gautam, Chandan Kumar
    Mutyala, Prema
    Das, Debatosh
    JOURNAL OF EXPERIMENTAL BOTANY, 2024, 75 (16) : 4689 - 4692
  • [8] Contribution of integrated symbiotic and associative systems of biological nitrogen fixation to N-status of intercropped legumes and non-legumes in sandy soils of Egypt
    Monib, M
    Hassan, ME
    Abo-Taleb, HH
    Metwally, A
    Hegazi, NA
    NITROGEN FIXATION WITH NON-LEGUMES, 1998, 79 : 255 - 260
  • [9] ONTOGENETIC INTERACTIONS BETWEEN PHOTOSYNTHESIS AND SYMBIOTIC NITROGEN-FIXATION IN LEGUMES
    BETHLENFALVAY, GJ
    PHILLIPS, DA
    PLANT PHYSIOLOGY, 1977, 60 (03) : 419 - 421
  • [10] Litter decomposition and nitrogen mineralization of soils in subtropical plantation forests of southern China, with special attention to comparisons between legumes and non-legumes
    Li, ZA
    Peng, SK
    Rae, DJ
    Zhou, GY
    PLANT AND SOIL, 2001, 229 (01) : 105 - 116