首页> 外文期刊>journal of plant interactions >The impact of pRAP vectors on plant genetic transformation and pathogenesis studies including an analysis of BRI1-ASSOCIATED RECEPTOR KINASE 1 (BAK1) -mediated resistance
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The impact of pRAP vectors on plant genetic transformation and pathogenesis studies including an analysis of BRI1-ASSOCIATED RECEPTOR KINASE 1 (BAK1) -mediated resistance

机译:pRAP载体对植物遗传转化和发病机制研究的影响,包括BRI1相关受体激酶1(BAK1)介导的抗性分析

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摘要

Crop improvement can be facilitated through efficient gene transfer, leading to pRAP plasmid development. Comparative hairy root transformation results from 24 previously published articles examining 29,756 roots show a 70 transformation efficiency. Average gene overexpression was 11.24-fold and −3.84-fold in RNAi roots. New studies show Glycine max BRI1-ASSOCIATED RECEPTOR KINASE 1 (BAK1) overexpression leads to a 67 decrease in Heterodera glycines parasitism while BAK1-1 RNAi led to a 4.8-fold increase in parasitism. The results show pathogen associated molecular pattern triggered immunity (PTI) functions in the G. max-H. glycines pathosystem during defense. Consequently, the pRAP vectors have applicability for studying basic biology and defense in other agricultural plants including Manihot esculenta (cassava) , Zea mays (maize) , Oryza sativa (rice) , Triticum aestivum (wheat) , Sorghum bicolor (sorghum) , Brassica rapa (rape seed) , Solanum tuberosum (potato) , Solanum lycopersicum (tomato) , Elaes guineensis (oil palm) , Saccharum officinalis (sugarcane) and Beta vulgaris (sugar beet) since each have BAK1 homologs .
机译:通过有效的基因转移可以促进作物改良,从而导致pRAP质粒的开发。之前发表的 24 篇文章对 29,756 根进行了比较毛根转化,结果显示转化效率为 70%。RNAi根的平均基因过表达分别为11.24倍和-3.84倍。新的研究表明,Glycine max BRI1 相关受体激酶 1 (BAK1) 过表达导致 Heterodera 甘氨酸寄生减少 67%,而 BAK1-1 RNAi 导致寄生增加 4.8 倍。结果显示病原体相关的分子模式触发免疫(PTI)在G. max-H中发挥作用。防御期间的甘氨酸病理系统。因此,pRAP载体适用于研究其他农业植物的基础生物学和防御,包括木薯、玉米、水稻、小麦、高粱双色、油菜籽、马铃薯、番茄、油棕、甘蔗、甘蔗和甜菜。

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