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首页> 外文期刊>Journal of Experimental Botany >GbTCP, a cotton TCP transcription factor, confers fibre elongation and root hair development by a complex regulating system.
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GbTCP, a cotton TCP transcription factor, confers fibre elongation and root hair development by a complex regulating system.

机译:棉花TCP转录因子GbTCP通过复杂的调节系统赋予纤维伸长和根毛发育。

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摘要

As the most important natural raw material for textile industry, cotton fibres are an excellent model for studying single-cell development. Although expression profiling and functional genomics have provided some data, the mechanism of fibre development is still not well known. A class I TCP transcription factor (designated GbTCP), encoding 344 amino acids, was isolated from the normalized cDNA library of sea-island cotton fibre (from -2 to 25 days post anthesis). GbTCP was preferentially expressed in the elongating cotton fibre from 5 to 15 days post anthesis. Some expression was also observed in stems, apical buds, and petals. RNAi silencing of GbTCP produced shorter fibre, a reduced lint percentage, and a lower fibre quality than the wild-type plants. Overexpression of GbTCP enhanced root hair initiation and elongation in Arabidopsis and regulated branching. Solexa sequencing and Affymetrix GeneChip analysis indicated that GbTCP positively regulates the level of jasmonic acid (JA) and, as a result, activates downstream genes (reactive oxygen species, calcium signalling, ethylene biosynthesis and response, and several NAC and WRKY transcription factors) necessary for elongation of fibres and root hairs. JA content analysis in cotton also confirmed that GbTCP has a profound effect on JA biosynthesis. In vitro ovule culture showed that an appropriate concentration of JA promoted fibre elongation. The results suggest that GbTCP is an important transcription factor for fibre and root hair development by regulating JA biosynthesis and response and other pathways, including reactive oxygen species, calcium channel and ethylene signalling.
机译:作为纺织工业最重要的天然原料,棉纤维是研究单细胞发育的绝佳模型。尽管表达谱和功能基因组学已经提供了一些数据,但是纤维发育的机制仍不为人所知。从海岛棉纤维的标准化cDNA文库(花后-2至25天)分离出编码344个氨基酸的I类TCP转录因子(称为GbTCP)。花后5至15天,GbTCP优先在伸长的棉纤维中表达。在茎,顶芽和花瓣中也观察到一些表达。与野生型植物相比,GbTCP的RNAi沉默产生的纤维更短,皮棉百分比降低,纤维质量降低。 GbTCP的过表达增强了拟南芥中根毛的起始和伸长,并调节了分支。 Solexa测序和Affymetrix GeneChip分析表明,GbTCP可以正向调节茉莉酸(JA)的水平,因此可以激活下游必需的基因(活性氧,钙信号传导,乙烯生物合成和响应,以及一些NAC和WRKY转录因子)用于延长纤维和根毛。棉花中的JA含量分析还证实GbTCP对JA生物合成具有深远的影响。体外胚珠培养表明,适当的JA浓度可促进纤维伸长。结果表明,GbTCP通过调节JA生物合成和响应以及其他途径(包括活性氧,钙通道和乙烯信号传导),是纤维和根毛发育的重要转录因子。

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