Discovery of induced point mutations in maize genes by TILLING
Open Access
- 28 July 2004
- journal article
- research article
- Published by Springer Nature in BMC Plant Biology
- Vol. 4 (1) , 12
- https://doi.org/10.1186/1471-2229-4-12
Abstract
Background: Going from a gene sequence to its function in the context of a whole organism requires a strategy for targeting mutations, referred to as reverse genetics. Reverse genetics is highly desirable in the modern genomics era; however, the most powerful methods are generally restricted to a few model organisms. Previously, we introduced a reverse-genetic strategy with the potential for general applicability to organisms that lack well-developed genetic tools. Our TILLING (Targeting Induced Local Lesions IN Genomes) method uses chemical mutagenesis followed by screening for single-base changes to discover induced mutations that alter protein function. TILLING was shown to be an effective reverse genetic strategy by the establishment of a high-throughput TILLING facility and the delivery of thousands of point mutations in hundreds of Arabidopsis genes to members of the plant biology community. Results: We demonstrate that high-throughput TILLING is applicable to maize, an important crop plant with a large genome but with limited reverse-genetic resources currently available. We screened pools of DNA samples for mutations in 1-kb segments from 11 different genes, obtaining 17 independent induced mutations from a population of 750 pollen-mutagenized maize plants. One of the genes targeted was the DMT102 chromomethylase gene, for which we obtained an allelic series of three missense mutations that are predicted to be strongly deleterious. Conclusions: Our findings indicate that TILLING is a broadly applicable and efficient reverse-genetic strategy. We are establishing a public TILLING service for maize modeled on the existing Arabidopsis TILLING Project.Keywords
This publication has 35 references indexed in Scilit:
- Single-Nucleotide Mutations for Plant Functional GenomicsAnnual Review of Plant Biology, 2003
- Expression profiling reveals off-target gene regulation by RNAiNature Biotechnology, 2003
- Tailoring the genome: the power of genetic approachesNature Genetics, 2003
- Mutator transposonsTrends in Plant Science, 2002
- Characterization of T-DNA Insertion Sites inArabidopsis thalianaand the Implications for Saturation MutagenesisOMICS: A Journal of Integrative Biology, 2002
- Use of the Transposon Ac as a Gene-Searching Engine in the Maize GenomePlant Cell, 2002
- Genome-Wide Profiling of DNA Methylation Reveals Transposon Targets of CHROMOMETHYLASE3Current Biology, 2002
- T-DNA-Associated Duplication/Translocations in Arabidopsis. Implications for Mutant Analysis and Functional GenomicsPlant Physiology, 2001
- Maize Chromomethylase Zea methyltransferase2 Is Required for CpNpG MethylationPlant Cell, 2001
- Genetic Studies of the lac Repressor. XIV. Analysis of 4000 Altered Escherichia coli lac Repressors Reveals Essential and Non-essential Residues, as well as "Spacers" which do not Require a Specific SequenceJournal of Molecular Biology, 1994