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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Trichome isolation with and without fixation using laser microdissection and pressure catapulting followed by RNA amplification: expression of genes of terpene metabolism in apical and sub-apical trichome cells of Artemisia annua L.
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Trichome isolation with and without fixation using laser microdissection and pressure catapulting followed by RNA amplification: expression of genes of terpene metabolism in apical and sub-apical trichome cells of Artemisia annua L.

机译:使用激光显微切割和压力弹射法固定和不固定的富营养组分离,然后进行RNA扩增:青蒿的根尖和根尖毛状体细胞中萜烯代谢基因的表达。

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摘要

The aim of this project was to evaluate the effect of fixation on plant material prior to Laser Microdissection and Pressure Catapulting (LMPC) and to identify an appropriate method for preserving good RNA quality after cell isolation. Therefore, flower buds from Artemisia annua L. were exposed to either the fixative formaldehyde or a non-fixative buffer prior to cell isolation by LMPC. Proteinase K was used after cell isolation from fixed plant tissue, in an attempt to improve the RNA yield. The ability to detect gene expression using real-time quantitative PCR with or without previous amplification of RNA from cells isolated by LMPC was also evaluated. Conclusively, we describe a new technique, without fixation, enabling complete isolation of intact glandular secretory trichomes and specific single trichome cells of A. annua. This method is based on LMPC and preserves good RNA quality for subsequent RNA expression studies of both whole trichomes, apical and sub-apical cells from trichomes of A. annua. Using this method, expression of genes of terpene metabolism was studied by real-time quantitative PCR. Expression of genes involved in artemisinin biosynthesis was observed in both apical and sub-apical cells.
机译:该项目的目的是评估激光显微切割和压力弹射(LMPC)之前固定对植物材料的影响,并确定分离细胞后保持良好RNA质量的合适方法。因此,在通过LMPC分离细胞之前,将青蒿的花蕾暴露于固定甲醛或非固定缓冲液中。从固定的植物组织中分离细胞后使用蛋白酶K,以尝试提高RNA产量。还评估了使用实时定量PCR检测基因表达的能力,无论是否通过LMPC分离的细胞进行RNA的先前扩增。最后,我们描述了一种新技术,无需固定即可完全分离完整的腺分泌毛状体和特定的单核黄体细胞。此方法基于LMPC,并保留了良好的RNA质量,可用于随后对整个A.annua毛状体,顶和亚顶细胞的RNA表达研究。使用这种方法,通过实时定量PCR研究了萜烯代谢基因的表达。在心尖和心尖下细胞中均观察到与青蒿素生物合成有关的基因的表达。

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