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1.
Plant Biol (Stuttg) ; 14(3): 411-9, 2012 May.
Article in English | MEDLINE | ID: mdl-22117561

ABSTRACT

Zoysia grass and creeping bentgrass are important turf grasses used in parks, gardens and playing fields. Development of grasses with increased tiller formation will enhance their commercial cultivation. To investigate the regulatory mechanism of tiller formation, we cloned the Zoysia japonica Lateral suppressor-like (ZjLsL) gene. The Lateral suppressor (Ls) gene encodes a transcriptional regulator belonging to the plant-specific GRAS protein family of putative transcription factors, and regulates axillary meristem initiation. A full-length DNA of the ZjLsL gene was isolated by 5'/3' DNA walking. Phylogenetic analysis showed that ZjLsL is closely related to Ls genes. Southern blot analysis revealed that zoysia grass has two copies of the ZjLsL gene. ZjLsL expression was detected in all organs of zoysia grass but was most highly expressed in culms. Overexpression of ZjLsL in creeping bentgrass and Arabidopsis plants promoted axillary bud formation. These results suggest that ZjLsL plays an important role in axillary meristem initiation and tiller formation.


Subject(s)
Agrostis/growth & development , Agrostis/genetics , Arabidopsis/growth & development , Arabidopsis/genetics , Meristem/growth & development , Meristem/genetics , Cloning, Molecular , Gene Expression Regulation, Developmental , Gene Expression Regulation, Plant , Genes, Plant , Phylogeny , Plants, Genetically Modified , Transcription Factors/genetics , Transformation, Genetic
2.
J Environ Qual ; 37(1): 207-18, 2008.
Article in English | MEDLINE | ID: mdl-18178894

ABSTRACT

Herbicide-tolerant Zoysia grass (Zoysia japonica Steud.) has been generated previously through Agrobacterium tumefaciens-mediated transformation. The genetically modified (GM) Zoysia grass survived Basta spraying and grew to maturity normally while the wild-type (WT) grass stopped growing and died. GM Zoysia grass will permit more efficient weed control for various turf grass plantings such as home lawns, golf courses, and parks. We examined the environmental/biodiversity risks of herbicide-tolerant GM Zoysia before applying to regulatory agencies for approval for commercial release. The GM and WT Zoysia grass' substantial trait equivalence, ability to cross-pollinate, and gene flow in confined and unconfined test fields were selectively analyzed for environmental/biodiversity effects. No difference between GM and WT Zoysia grass in substantial traits was found. To assess the potential for cross-pollination and gene flow, a non-selective herbicide, Basta, was used. Results showed that unintended cross-pollination with and gene flow from GM Zoysia grass were not detected in neighboring weed species examined, but were observed in WT Zoysia grass (on average, 6% at proximity, 1.2% at a distance of 0.5 m and 0.12% at a radius of 3 m, and 0% at distances over 3 m). On the basis of these initial studies, we conclude that the GM Zoysia grass generated in our laboratory and tested in the Nam Jeju County field does not appear to pose a significant risk when cultivated outside of test fields.


Subject(s)
Herbicide Resistance , Plants, Genetically Modified/physiology , Poaceae/physiology , Adult , Antigens, Plant/immunology , Female , Gene Flow , Humans , Hybridization, Genetic , Hypersensitivity/etiology , Hypersensitivity/immunology , Korea , Male , Phenotype , Plants, Genetically Modified/anatomy & histology , Poaceae/anatomy & histology , Pollen/immunology , Pollination , Risk Assessment , Skin Tests , Wind
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