Torenia胚珠的全载RNA原位杂交技术。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-06-01 DOI:10.1007/s00497-022-00455-2
Shihao Su, Xuan Zhou, Tetsuya Higashiyama
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引用次数: 0

摘要

感兴趣的基因在细胞水平上的表达模式为其功能提供了强有力的证据。RNA原位杂交已被证明是检测基因在各种生物中的时空表达模式的有力工具。然而,经典的RNA原位杂交(ISH)技术耗时且需要复杂的切片技术。为此,我们建立了一种对植物生殖研究中的模式种——托伦尼亚(Torenia fournieri)胚珠进行全株原位杂交(WISH)的方法。其胚珠有突出的胚囊,通过简单的操作,便于观察和成像。为了确定经典ISH和我们新建立的WISH的效果,我们使用两种方法检测了d类基因TfSTK3的表达。TfSTK3在经典ISH和WISH中的表达模式相似,证实了WISH方法的可靠性。与WISH相比,经典ISH往往导致胚囊扭曲,从而难以区分雌性配子体内的信号。为了了解我们的WISH方案是否也能很好地检测胚胎囊内表达的基因,我们进一步检测了增效物质富集的候选基因TfPMEI1的表达,并清楚地观察到两个增效细胞内的特异性信号。总之,我们的WISH技术可以在一周内可视化T. fournieri胚珠中的基因表达模式,这将有利于未来的植物繁殖领域。
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Whole-mount RNA in situ hybridization technique in Torenia ovules.

The expression pattern of an interested gene at a cellular level provides strong evidence for its functions. RNA in situ hybridization has been proved to be a powerful tool in detecting the spatial-temporal expression pattern of a gene in various organisms. However, classical RNA in situ hybridization (ISH) technique is time-consuming and requires sophisticated sectioning skills. Therefore, we developed a method for whole-mount in situ hybridization (WISH) on ovules of Torenia fournieri, which is a model species in the study of plant reproduction. T. fournieri possesses ovules with protruding embryo sacs, making it easy to be observed and imaged through simple manipulation. To determine the effect of classical ISH and our newly established WISH, we detected the expression of a D-class gene, TfSTK3, using both methods. The expression patterns of TfSTK3 are similar in classical ISH and WISH, confirming reliability of the WISH method. Compared with WISH, classical ISH always leads to distorted embryo sacs, hence difficult to distinguish signals within the female gametophyte. To understand whether our WISH protocol also works well in detecting genes expressed within embryo sacs, we further examined the expression of a synergid-enriched candidate, TfPMEI1, and clearly observed specific signals within two synergid cells. To summarize, our WISH technique allows to visualize gene expression patterns in ovules of T. fournieri within one week and will benefit the field of plant reproduction in the future.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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