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首页> 外文期刊>Journal of Experimental Botany >Transcriptome profiling reveals roles of meristem regulators and polarity genes during fruit trichome development in cucumber ( Cucumis sativus L.).
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Transcriptome profiling reveals roles of meristem regulators and polarity genes during fruit trichome development in cucumber ( Cucumis sativus L.).

机译:转录组分析揭示了在黄瓜(Cucumis sativus L.)的果实毛状体发育过程中分生组织调节剂和极性基因的作用。

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摘要

Trichomes are epidermal hair-like structures that function in plant defence against biotic and abiotic stresses. Extensive studies have been performed on foliar trichomes development in Arabidopsis and tomato, but the molecular mechanism of fruit trichome formation remains elusive. Cucumber fruit is covered with trichomes (spines) that directly affect the appearance and quality of cucumber products. Here, we characterized the fruit spine development in wild-type (WT) cucumber and a spontaneous mutant, tiny branched hair ( tbh). Our data showed that the cucumber trichome was multicellular and non-glandular, with malformed organelles and no endoreduplication. Fruit spine development was generally homogenous and marked by a rapid base expansion stage. Trichomes in the tbh mutant were tiny and branched, with increased density and aberrant cell shape. Transcriptome profiling indicated that meristem-related genes were highly enriched in the upregulated genes in the tbh versus the WT, as well as in WT spines after versus before base expansion, and that polarity regulators were greatly induced during spine base expansion. Quantitative reverse transcription PCR and in situ hybridization confirmed the differential expression of CUP-SHAPED COTYLEDON3 ( CUC3) and SHOOT MERISTEMLESS ( STM) during spine development. Therefore, cucumber trichomes are morphologically different from those of Arabidopsis and tomato, and their development may be regulated by a distinct pathway involving meristem genes and polarity regulators.
机译:毛癣菌是表皮的毛状结构,在植物防御生物和非生物胁迫中起作用。已经对拟南芥和番茄中叶毛状体的发育进行了广泛的研究,但是水果毛状体形成的分子机制仍然难以捉摸。黄瓜果实上覆盖着会直接影响黄瓜产品外观和质量的毛线(脊柱)。在这里,我们表征了野生型(WT)黄瓜和自发突变体,细小的分支毛(tbh)的果实脊柱发育。我们的数据显示黄瓜毛状体是多细胞的和非腺性的,细胞器畸形且无内复制。果实脊柱发育通常是同质的,并以快速的基础扩张阶段为标志。 tbh突变体中的毛滴纤细且分支,具有增加的密度和异常的细胞形状。转录组谱分析表明,与WT相比,在tbh中以及在碱基扩展之前和之后的WT棘中,分生组织相关基因高度富集在tbh中,并且在脊柱碱基扩展过程中极大地诱导了极性调节剂。定量反转录PCR和原位杂交证实了在脊柱发育过程中CUP形COTYLEDON3(CUC3)和SHOT MERISTEMLESS(STM)的差异表达。因此,黄瓜毛状体在形态上不同于拟南芥和番茄,其发育可能受分生组织基因和极性调节剂的不同途径调控。

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