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Antisense Oligodeoxynucleotide Inhibition as an Alternative and Convenient Method for Gene Function Analysis in Pollen Tubes

机译:反义寡核苷酸抑制在花粉管的替代和快捷的方法基因功能分析

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摘要

Antisense oligodeoxynucleotide (A-ODN) inhibition works well in animal cells. However, there have been few successful examples to date of its application in plants, and more specifically whether the technique can be used in pollen tubes as a model of plant cell growth. NtGNL1 plays an important role in pollen tube development and was thus selected as an indicator to assess the biological effects of A-ODN. An A-ODN inhibition technique was used to down-regulate NtGNL1 expression in tobacco pollen tubes and showed that A-ODNs could quickly enter pollen tubes through the thick wall and cell membrane and effectively block NtGNL1 expression. Phenotype analysis revealed that the down-regulation of NtGNL1 by A-ODNs resulted in abnormalities in endocytosis and subsequent vesicle trafficking, similar to the phenotypes of pollen tubes treated with NtGNL1 RNAi. This investigation confirmed that A-ODNs could specifically inhibit target gene expression, and furthermore demonstrated that A-ODN functioned in a concentration- and duration-dependent manner, because A-ODNs could be degraded when incubated with pollen tubes. Thus, the A-ODN technique was successfully used for gene function analysis in pollen tubes and appears to be an alternative and convenient technique when the in vitro pollen tube is used as the study model. This technique will greatly facilitate investigations on the molecular mechanism(s) underlying pollen tube growth.
机译:反义寡脱氧核苷酸(A-ODN)抑制在动物细胞中效果很好。然而,迄今为止,在植物中应用的成功例子很少,更具体地说,该技术是否可以在花粉管中用作植物细胞生长的模型。 NtGNL1在花粉管发育中起着重要作用,因此被选为评估A-ODN生物学效应的指标。 A-ODN抑制技术用于下调烟草花粉管中NtGNL1的表达,结果表明A-ODNs可以通过厚壁和细胞膜快速进入花粉管,并有效地阻断NtGNL1的表达。表型分析表明,A-ODNs对NtGNL1的下调导致内吞异常和随后的小泡运输,这与用NtGNL1 RNAi处理的花粉管的表型相似。该研究证实了A-ODN可以特异性抑制靶基因的表达,并且进一步证明了A-ODN以浓度和持续时间依赖性的方式起作用,因为当与花粉管一起孵育时,A-ODN可以被降解。因此,A-ODN技术已成功用于花粉管中的基因功能分析,并且当以体外花粉管作为研究模型时,它似乎是一种替代且方便的技术。该技术将极大地促进对花粉管生长的分子机制的研究。

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