Abstract
The diploid annual legume Medicago truncatula has been developed as a tractable genetic system for studying biological questions that are unique to, or well suited for study in legume species. An efficient mutagenesis protocol using ethyl-methyl sulfonate and a polymorphic ecotype with properties appropriate for use as a mapping parent are described. Isolation and characterization of three developmental mutants are described. The mtapetala mutation results in homeotic conversions of floral organ whorls 2 and 3 into sepals and carpelloid structures, respectively, similar to mutations in the apetala3/pistillata genes of Arabidopsis. The palmyra mutation primarily affects seedling shoot meristem initiation, and thus phenocopies meristem function mutations identified in Arabidopsis such as the zwille locus. The phenotype of the palmyra and mtapetala double mutant is additive, with seedling shoot meristems and floral organs indistinguishable from those of the single palmyra and mtapetala mutants, respectively. These results are consistent with a lack of genetic interaction between these loci. A third mutant, speckle, is characterized by spontaneous necrotic lesion formation on leaves, root, and stems, similar to necrosis mutants identified in other plant species. In addition to documenting the efficient mutagenesis of M. truncatula, the availability of developmental mutants that phenocopy characterized Arabidopsis mutants will provide a basis for establishing orthologous gene function between M. truncatula and Arabidopsis, once the genes responsible are cloned. Moreover, the male-sterile, female-fertile nature of the mtapetala mutant provides a convenient tool for genetic analyses in M. truncatula.
MeSH Terms
Amino Acid Sequence
Arabidopsis Proteins
DNA-Binding Proteins/genetics,metabolism
Gene Expression Regulation, Developmental
Gene Expression Regulation, Plant
Homeodomain Proteins/genetics,metabolism
MADS Domain Proteins
Medicago sativa/genetics,growth & development,physiology
Microscopy, Electron, Scanning
Molecular Sequence Data
Mutation
Phenotype
Phylogeny
Plant Proteins/genetics,metabolism
Plant Structures/growth & development,physiology,ultrastructure
Polymorphism, Genetic
Sequence Alignment
Transcription Factors/genetics,metabolism
Chemicals
APETALA 3 protein, Arabidopsis
Arabidopsis Proteins
DNA-Binding Proteins
Homeodomain Proteins
MADS Domain Proteins
Plant Proteins
Transcription Factors
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Penmetsa R V
Department of Plant Pathology and Microbiology and Norman E. Borlaug Center for Southern Crop Improvement, Texas A&M University, College Station, Texas 77843-2132, USA.
Cook D R
References (20)
20 references, click to expand
-
EMS- and radiation-induced mutation frequencies at individual loci in Arabidopsis thaliana (L.) Heynh.
Mutat Res. 1982 Mar;93(1):109-23
PMID: 7062928
-
Transformation of Medicago truncatula via infiltration of seedlings or flowering plants with Agrobacterium.
Plant J. 2000 Jun;22(6):531-41
PMID: 10886773
-
The golden decade of molecular floral development (1990-1999): A cheerful obituary
Dev Genet. 1999 Sep;25(3):181-93
PMID: 10528259
-
Plant genetic control of nodulation.
Annu Rev Microbiol. 1991;45:345-82
PMID: 1741618
-
The SHOOT MERISTEMLESS gene is required for maintenance of undifferentiated cells in Arabidopsis shoot and floral meristems and acts at a different regulatory level than the meristem genes WUSCHEL and ZWILLE.
Plant J. 1996 Dec;10(6):967-79
PMID: 9011081
-
Medicago truncatula--a model in the making!
Curr Opin Plant Biol. 1999 Aug;2(4):301-4
PMID: 10459004
-
Inheritance of supernodulation in soybean and estimation of the genetically effective cell number.
Theor Appl Genet. 1988 Jul;76(1):54-8
PMID: 24231982
-
Symbiotic induction of a MADS-box gene during development of alfalfa root nodules.
Proc Natl Acad Sci U S A. 1995 Jun 6;92(12):5273-7
PMID: 7777496
-
Programmed cell death in the root cortex of soybean root necrosis mutants.
Plant J. 1997 Apr;11(4):729-45
PMID: 9161033
-
Embryogenesis: A New Start in Life.
Plant Cell. 1997 Jul;9(7):989-1000
PMID: 12237371
-
TE7, An Inefficient Symbiotic Mutant of Medicago truncatula Gaertn. cv Jemalong.
Plant Physiol. 1995 Jan;107(1):53-62
PMID: 12228341
-
Organ Formation at the Vegetative Shoot Meristem.
Plant Cell. 1997 Jul;9(7):1067-1076
PMID: 12237376
-
Transient induction of a peroxidase gene in Medicago truncatula precedes infection by Rhizobium meliloti.
Plant Cell. 1995 Jan;7(1):43-55
PMID: 7696879
-
Flower development in pisum sativum: from the war of the whorls to the battle of the common primordia
Dev Genet. 1999 Sep;25(3):280-90
PMID: 10528268
-
Rapid transformation ofMedicago truncatula: regeneration via shoot organogenesis.
Plant Cell Rep. 1996 Nov;16(1-2):6-11
PMID: 24178644
-
Role of the ZWILLE gene in the regulation of central shoot meristem cell fate during Arabidopsis embryogenesis.
EMBO J. 1998 Mar 16;17(6):1799-809
PMID: 9501101
-
Symbiotic mutants deficient in nodule establishment identified after T-DNA transformation of Lotus japonicus.
Mol Gen Genet. 1998 Sep;259(4):414-23
PMID: 9790598
-
A plant regulator controlling development of symbiotic root nodules.
Nature. 1999 Nov 11;402(6758):191-5
PMID: 10647012
-
Genes directing flower development in Arabidopsis.
Plant Cell. 1989 Jan;1(1):37-52
PMID: 2535466
-
Shoot Meristem Formation in Vegetative Development.
Plant Cell. 1997 Jul;9(7):1001-1010
PMID: 12237372