角质
生物
表皮(毛发)
突变体
植物角质层
普通大麦
植物
干燥
脱水
野生型
分子生物学
蜡
生物化学
禾本科
解剖
基因
作者
Chao Li,Cheng Liu,Xiaoying Ma,Aidong Wang,Ruijun Duan,Christiane Nawrath,Takao Komatsuda,Guoxiong Chen
出处
期刊:Breeding Science
[Japanese Society of Breeding]
日期:2015-01-01
卷期号:65 (4): 327-332
被引量:12
摘要
The cuticle covers the aerial parts of land plants, where it serves many important functions, including water retention. Here, a recessive cuticle mutant, eceriferum-ym (cer-ym), of Hordeum vulgare L. (barley) showed abnormally glossy spikes, sheaths, and leaves. The cer-ym mutant plant detached from its root system was hypersensitive to desiccation treatment compared with wild type plants, and detached leaves of mutant lost 41.8% of their initial weight after 1 h of dehydration under laboratory conditions, while that of the wild type plants lost only 7.1%. Stomata function was not affected by the mutation, but the mutant leaves showed increased cuticular permeability to water, suggesting a defective leaf cuticle, which was confirmed by toluidine blue staining. The mutant leaves showed a substantial reduction in the amounts of the major cutin monomers and a slight increase in the main wax component, suggesting that the enhanced cuticle permeability was a consequence of cutin deficiency. cer-ym was mapped within a 0.8 cM interval between EST marker AK370363 and AK251484, a pericentromeric region on chromosome 4H. The results indicate that the desiccation sensitivity of cer-ym is caused by a defect in leaf cutin, and that cer-ym is located in a chromosome 4H pericentromeric region.
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