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首页> 外文期刊>Journal of Experimental Botany >Effect of lipo-chitooligosaccharide on early growth of C-4 grass seedlings
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Effect of lipo-chitooligosaccharide on early growth of C-4 grass seedlings

机译:壳寡糖对C-4草幼苗早期生长的影响

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Lipochitooligosaccharide (LCOs) are important molecules for plant-microbe symbiosis but can also serve as plant growth regulators. This study shows that LCO addition induces the expression of genes involved in root growth promotion in C4 grasses.Although lipo-chitooligosaccharides (LCOs) are important signal molecules for plant-symbiont interactions, a number of reports suggest that LCOs can directly impact plant growth and development, separate from any role in plant symbioses. In order to investigate this more closely, maize and Setaria seedlings were treated with LCO and their growth was evaluated. The data indicate that LCO treatment significantly enhanced root growth. RNA-seq transcriptomic analysis of LCO-treated maize roots identified a number of genes whose expression was significantly affected by the treatment. Among these genes, some LCO-up-regulated genes are likely involved in root growth promotion. Interestingly, some stress-related genes were down-regulated after LCO treatment, which might indicate reallocation of resources from defense responses to plant growth. The promoter activity of several LCO-up-regulated genes using a beta-glucuronidase reporter system was further analysed. The results showed that the promoters were activated by LCO treatment. The data indicate that LCO can directly impact maize root growth and gene expression.
机译:脂低聚寡糖(LCO)是植物与微生物共生的重要分子,但也可用作植物生长调节剂。这项研究表明,添加LCO可以诱导C4草中促进根系生长的基因表达。尽管脂-壳寡糖(LCO)是植物与共生体相互作用的重要信号分子,但许多报道表明LCO可以直接影响植物的生长和生长。发育,与植物共生中的任何作用分开。为了更仔细地调查,对玉米和狗尾草幼苗进行了LCO处理,并对其生长进行了评估。数据表明,LCO处理显着增强了根的生长。 LCO处理的玉米根的RNA-seq转录组分析确定了许多基因,这些基因的表达受处理的影响很大。在这些基因中,一些LCO上调的基因可能参与了根的生长促进。有趣的是,LCO处理后一些与胁迫相关的基因被下调,这可能表明从防御反应到植物生长的资源重新分配。进一步分析了使用β-葡萄糖醛酸酶报道系统的几个LCO上调基因的启动子活性。结果表明,启动子被LCO处理激活。数据表明,LCO可以直接影响玉米根的生长和基因表达。

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