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Single-wall and multi-wall carbon nanotubes promote rice root growth by eliciting the similar molecular pathways and epigenetic regulation
Yan, Shihan1,2; Zhang, Hao1; Huang, Yan1; Tan, Junjun1,3; Wang, Pu1; Wang, Yapei1; Hou, Haoli1; Huang, Jin4,5; Li, Lijia1
2016-08-01
摘要Organisms are constantly exposed to environmental stimuli and have evolved mechanisms of protection and adaptation. Various effects of nanoparticles (NPs) on crops have been described and some results confirm that NPs could enhance plant growth at the physiological and genetic levels. This study comparatively analysed the effect of carbon nanotubes (CNTs) on rice growth. The results showed that single-wall CNTs were located in the intercellular space while multi-wall CNTs penetrated cell walls in roots. CNTs could promote rice root growth through the regulation of expression of the root growth related genes and elevated global histone acetylation in rice root meristem zones. These responses were returned to normal levels after CNTs were removed from medium. CNTs caused the similar histone acetylation and methylation statuses across the local promoter region of the Cullin-RING ligases 1 (CRL1) gene and increased micrococcal nuclease accessibility of this region, which enhanced this gene expression. The authors results suggested that CNTs could cause plant responses at the cellular, genetic, and epigenetic levels and these responses were independent on interaction modes between root cells and CNTs.
关键词crops multi-wall carbon nanotubes single-wall carbon nanotubes nanobiotechnology cellular biophysics genetics enzymes biochemistry molecular biophysics single-wall carbon nanotubes multiwall carbon nanotubes rice root growth molecular pathways epigenetic regulation environmental stimuli crops intercellular space cell walls global histone acetylation rice root meristem zones histone acetylation methylation statuses local promoter region CRL1 gene micrococcal nuclease accessibility root growth related gene expression plant responses cellular levels epigenetic levels genetic levels interaction modes C
DOI10.1049/iet-nbt.2015.0046
发表期刊IET NANOBIOTECHNOLOGY
ISSN1751-8741
卷号10期号:4页码:222-229
通讯作者Li, LJ (reprint author), Wuhan Univ, Coll Life Sci, State Key Lab Hybrid Rice, Wuhan 430072, Peoples R China.
收录类别SCI
WOS记录号WOS:000381504600009
语种英语