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首页> 外文期刊>Journal of Experimental Botany >CEP genes regulate root and shoot development in response to environmental cues and are specific to seed plants
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CEP genes regulate root and shoot development in response to environmental cues and are specific to seed plants

机译:CEP基因调节根和芽的发育,以响应环境线索,并且对种子植物具有特异性

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The manifestation of repetitive developmental programmes during plant growth can be adjusted in response to various environmental cues. During root development, this means being able to precisely control root growth and lateral root development. Small signalling peptides have been found to play roles in many aspects of root development. One member of the CEP (C-TERMINALLY ENCODED PEPTIDE) gene family has been shown to arrest root growth. Here we report that CEP genes are widespread among seed plants but are not present in land plants that lack true branching roots or root vasculature. We have identified 10 additional CEP genes in Arabidopsis. Expression analysis revealed that CEP genes are regulated by environmental cues such as nitrogen limitation, increased salt levels, increased osmotic strength, and increased CO2 levels in both roots and shoots. Analysis of synthetic CEP variants showed that both peptide sequence and modifications of key amino acids affect CEP biological activity. Analysis of several CEP over-expression lines revealed distinct roles for CEP genes in root and shoot development. A cep3 knockout mutant showed increased root and shoot growth under a range of abiotic stress, nutrient, and light conditions. We demonstrate that CEPs are negative regulators of root development, slowing primary root growth and reducing lateral root formation. We propose that CEPs are negative regulators that mediate environmental influences on plant development.
机译:可以根据各种环境提示来调整植物生长过程中重复性发展计划的表现。在根系发育过程中,这意味着能够精确控制根系生长和侧向根系发育。已经发现小信号肽在根发育的许多方面发挥作用。 CEP(C末端编码肽)基因家族的一个成员已显示可阻止根的生长。在这里,我们报道CEP基因在种子植物中广泛存在,但在缺乏真正分支根或根脉管系统的陆地植物中不存在。我们在拟南芥中鉴定了10个其他CEP基因。表达分析表明,CEP基因受环境信息的调控,例如氮限制,盐分升高,渗透压增强以及根和茎中的CO2升高。合成CEP变体的分析表明,肽序列和关键氨基酸的修饰都会影响CEP的生物学活性。对几种CEP过表达系的分析揭示了CEP基因在根和芽发育中的独特作用。在一系列非生物胁迫,营养和光照条件下,cep3敲除突变体显示出增加的根和芽生长。我们证明,CEPs是根发育的负调节剂,减慢了初级根的生长并减少了侧根的形成。我们建议,CEP是负面调节剂,可调节环境对植物发育的影响。

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