Insertional Mutagenesis of Genes Required for Seed Development in Arabidopsis thaliana

Author:

McElver John1,Tzafrir Iris2,Aux George1,Rogers Rebecca2,Ashby Carl2,Smith Kelsey2,Thomas Carla1,Schetter Amy2,Zhou Qing1,Cushman Mary Ann2,Tossberg John1,Nickle Todd2,Levin Joshua Z1,Law Marcus1,Meinke David2,Patton David1

Affiliation:

1. Syngenta, Research Triangle Park, North Carolina 27709

2. Department of Botany, Oklahoma State University, Stillwater, Oklahoma 74078

Abstract

Abstract The purpose of this project was to identify large numbers of Arabidopsis genes with essential functions during seed development. More than 120,000 T-DNA insertion lines were generated following Agrobacterium-mediated transformation. Transgenic plants were screened for defective seeds and putative mutants were subjected to detailed analysis in subsequent generations. Plasmid rescue and TAIL-PCR were used to recover plant sequences flanking insertion sites in tagged mutants. More than 4200 mutants with a wide range of seed phenotypes were identified. Over 1700 of these mutants were analyzed in detail. The 350 tagged embryo-defective (emb) mutants identified to date represent a significant advance toward saturation mutagenesis of EMB genes in Arabidopsis. Plant sequences adjacent to T-DNA borders in mutants with confirmed insertion sites were used to map genome locations and establish tentative identities for 167 EMB genes with diverse biological functions. The frequency of duplicate mutant alleles recovered is consistent with a relatively small number of essential (EMB) genes with nonredundant functions during seed development. Other functions critical to seed development in Arabidopsis may be protected from deleterious mutations by extensive genome duplications.

Publisher

Oxford University Press (OUP)

Subject

Genetics

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