Abstract
Plant height is one of the most important traits in crop improvement. Therefore revealing the mechanism of plant elongation and controlling plant height in accordance with breeding object is important. In this study we analyzed a novel dwarf mutant, ssd1, of which phenotype is different from typical GA- or BR-related dwarf phenotype. ssd1 exhibits pleiotropic defects in elongation of various organs such as stems, roots, leaves, and flowers. ssd1 also shows abnormal cell files and shapes, which suggests defects of normal cell division in the mutant. Map-based cloning and complementation test demonstrated that the dwarf phenotype in ssd1 mutant was caused by insertion of retrotransposon in a gene, which encodes plant-specific protein with unknown biochemical function. A BLAST search revealed that SSD1-like genes exist in diverse plant species, including monocots and dicots, but not fern and moss. Our results demonstrate that SSD1 controls plant elongation by controlling cell division in higher plants.
MeSH Terms
Amino Acid Sequence
Cell Division
Cell Shape
Cloning, Molecular
Gene Expression Profiling
Gene Expression Regulation, Plant
Genes, Plant/genetics
Genetic Complementation Test
Molecular Sequence Data
Mutation/genetics
Oryza/anatomy & histology,cytology,genetics,growth & development
Phylogeny
Plant Leaves/cytology,genetics
Plant Proteins/chemistry,genetics,metabolism
Plant Roots/anatomy & histology,cytology,genetics
Species Specificity
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Asano Kenji
Bioscience and Biotechnology Center, Nagoya University, Aichi, Japan.
Miyao Akio
Hirochika Hirohiko
Kitano Hidemi
Matsuoka Makoto
Ashikari Motoyuki
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