Abstract
In most legume nodules, the N2-fixing rhizobia are present as organelle-like structures inside their host cells. These structures, named symbiosomes, contain one or a few rhizobia surrounded by a plant membrane. Symbiosome formation requires the release of bacteria from cell-wall-bound infection threads. In primitive legumes, rhizobia are hosted in intracellular infection threads that, in contrast to symbiosomes, are bound by a cell wall. The formation of symbiosomes is presumed to represent a major step in the evolution of legume-nodule symbiosis, because symbiosomes facilitate the exchange of metabolites between the two symbionts. Here, we show that the genes, which are essential for initiating nodule formation, are also actively transcribed in mature Medicago truncatula nodules in the region where symbiosome formation occurs. At least one of these genes, encoding the receptor kinase DOES NOT MAKE INFECTIONS 2 (DMI2) is essential for symbiosome formation. The protein locates to the host cell plasma membrane and to the membrane surrounding the infection threads. A partial reduction of DMI2 expression causes a phenotype that resembles the infection structures found in primitive legume nodules, because infected cells are occupied by large intracellular infection threads instead of by organelle-like symbiosomes.
MeSH Terms
DNA Primers
Gene Expression Regulation, Plant
Genetic Vectors
Histological Techniques
In Situ Hybridization
Lipopolysaccharides/metabolism
Medicago truncatula/genetics,microbiology
Plant Proteins/genetics,metabolism
Plant Roots/microbiology
Protein Kinases/genetics,metabolism
RNA Interference
Reverse Transcriptase Polymerase Chain Reaction
Rhizobium
Signal Transduction/genetics
Sinorhizobium meliloti/genetics,physiology
Symbiosis
Chemicals
DNA Primers
Lipopolysaccharides
Plant Proteins
Protein Kinases
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Limpens Erik
Laboratory of Molecular Biology, Wageningen University, Dreijenlaan 3, 6703 HA Wageningen, The Netherlands.
Mirabella Rossana
Fedorova Elena
Franken Carolien
Franssen Henk
Bisseling Ton
Geurts René
References (24)
24 references, click to expand
-
SrSymRK, a plant receptor essential for symbiosome formation.
Proc Natl Acad Sci U S A. 2005 Jul 19;102(29):10369-74
PMID: 16006516
-
Medicago truncatula DMI1 required for bacterial and fungal symbioses in legumes.
Science. 2004 Feb 27;303(5662):1364-7
PMID: 14963334
-
Rhizobium meliloti elicits transient expression of the early nodulin gene ENOD12 in the differentiating root epidermis of transgenic alfalfa.
Plant Cell. 1992 Oct;4(10):1199-211
PMID: 1446169
-
Plant recognition of symbiotic bacteria requires two LysM receptor-like kinases.
Nature. 2003 Oct 9;425(6958):585-92
PMID: 14534578
-
Plastid proteins crucial for symbiotic fungal and bacterial entry into plant roots.
Nature. 2005 Feb 3;433(7025):527-31
PMID: 15616514
-
RNA interference in Agrobacterium rhizogenes-transformed roots of Arabidopsis and Medicago truncatula.
J Exp Bot. 2004 May;55(399):983-92
PMID: 15073217
-
The NFP locus of Medicago truncatula controls an early step of Nod factor signal transduction upstream of a rapid calcium flux and root hair deformation.
Plant J. 2003 May;34(4):495-506
PMID: 12753588
-
A receptor kinase gene of the LysM type is involved in legume perception of rhizobial signals.
Nature. 2003 Oct 9;425(6958):637-40
PMID: 14534591
-
A receptor kinase gene regulating symbiotic nodule development.
Nature. 2002 Jun 27;417(6892):962-6
PMID: 12087406
-
GATEWAY vectors for Agrobacterium-mediated plant transformation.
Trends Plant Sci. 2002 May;7(5):193-5
PMID: 11992820
-
Suppression of nodulation gene expression in bacteroids of Rhizobium leguminosarum biovar viciae.
J Bacteriol. 1991 Jul;173(14):4277-87
PMID: 1712355
-
Four genes of Medicago truncatula controlling components of a nod factor transduction pathway.
Plant Cell. 2000 Sep;12(9):1647-66
PMID: 11006338
-
GUS fusions: beta-glucuronidase as a sensitive and versatile gene fusion marker in higher plants.
EMBO J. 1987 Dec 20;6(13):3901-7
PMID: 3327686
-
The use of lead citrate at high pH as an electron-opaque stain in electron microscopy.
J Cell Biol. 1963 Apr;17:208-12
PMID: 13986422
-
Temporal and spatial regulation of the symbiotic genes of Rhizobium meliloti in planta revealed by transposon Tn5-gusA.
Genes Dev. 1990 Mar;4(3):344-56
PMID: 2159937
-
A Ca2+/calmodulin-dependent protein kinase required for symbiotic nodule development: Gene identification by transcript-based cloning.
Proc Natl Acad Sci U S A. 2004 Mar 30;101(13):4701-5
PMID: 15070781
-
Nodulin Gene Expression and ENOD2 Localization in Effective, Nitrogen-Fixing and Ineffective, Bacteria-Free Nodules of Alfalfa.
Plant Cell. 1990 Oct;2(10):1009-1017
PMID: 12354949
-
A plant receptor-like kinase required for both bacterial and fungal symbiosis.
Nature. 2002 Jun 27;417(6892):959-62
PMID: 12087405
-
Biogenesis of the peribacteroid membrane in root nodules.
Trends Microbiol. 1996 Sep;4(9):364-8
PMID: 8885172
-
LysM domain receptor kinases regulating rhizobial Nod factor-induced infection.
Science. 2003 Oct 24;302(5645):630-3
PMID: 12947035
-
A putative Ca2+ and calmodulin-dependent protein kinase required for bacterial and fungal symbioses.
Science. 2004 Feb 27;303(5662):1361-4
PMID: 14963335
-
Structure of nitrogen-fixing nodules formed by Rhizobium on roots of Parasponia andersonii Planch.
Can J Microbiol. 1979 May;25(5):565-78
PMID: 476539
-
Calcium, kinases and nodulation signalling in legumes.
Nat Rev Mol Cell Biol. 2004 Jul;5(7):566-76
PMID: 15232574
-
nip, a symbiotic Medicago truncatula mutant that forms root nodules with aberrant infection threads and plant defense-like response.
Plant Physiol. 2004 Nov;136(3):3692-702
PMID: 15516506