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Comprehensive analysis of CLE polypeptide signaling gene expression and overexpression activity in arabidopsis

机译:拟南芥中CLE多肽信号转导基因表达及过表达活性的综合分析

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Intercellular signaling is essential for the coordination of growth and development in higher plants. Although hundreds of putative receptors have been identified in Arabidopsis (Arabidopsis thaliana), only a few families of extracellular signaling molecules have been discovered, and their biological roles are largely unknown. To expand our insight into the developmental processes potentially regulated by ligand-mediated signal transduction pathways, we undertook a systematic expression analysis of the members of the Arabidopsis CLAVATA3/ESR-RELATED (CLE) small signaling polypeptide family. Using reporter constructs, we show that the CLE genes have distinct and specific patterns of promoter activity. We find that each Arabidopsis tissue expresses at least one CLE gene, indicating that CLE-mediated signaling pathways are likely to play roles in many biological processes during the plant life cycle. Some CLE genes that are closely related in sequence have dissimilar expression profiles, yet in many tissues multiple CLE genes have overlapping patterns of promoter-driven reporter activity. This observation, plus the general absence of detectable morphological phenotypes in cle null mutants, suggest that a high degree of functional redundancy exists among CLE gene family members. Our work establishes a community resource of CLE-related biological materials and provides a platform for understanding and ultimately manipulating many different plant signaling systems.
机译:细胞间信号传导对于协调高等植物的生长发育至关重要。尽管在拟南芥(Arabidopsis thaliana)中已鉴定出数百种推定受体,但仅发现了少数家族的细胞外信号分子,其生物学作用在很大程度上尚不清楚。为了扩大我们对由配体介导的信号转导途径可能调控的发育过程的认识,我们对拟南芥CLAVATA3 / ESR相关(CLE)小信号多肽家族成员进行了系统的表达分析。使用报告基因的构造,我们显示出CLE基因具有独特而特定的启动子活性模式。我们发现每个拟南芥组织表达至少一个CLE基因,表明CLE介导的信号通路可能在植物生命周期的许多生物学过程中发挥作用。一些在序列上密切相关的CLE基因具有不同的表达谱,但是在许多组织中,多个CLE基因具有启动子驱动的报道分子活性重叠的模式。该观察结果,再加上在Cle null突变体中普遍没有可检测的形态表型,表明CLE基因家族成员之间存在高度的功能冗余。我们的工作建立了与CLE相关的生物材料的社区资源,并为理解和最终操纵许多不同的植物信号系统提供了平台。

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