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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Origination of asexual plantlets in three species of Crassulaceae
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Origination of asexual plantlets in three species of Crassulaceae

机译:景天科三种树种中无性植物的起源

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During asexual plant reproduction, cells from different organs can be reprogrammed to produce new individuals, a process that requires the coordination of cell cycle reactivation with the acquisition of other cellular morphological characteristics. However, the factors that influence the variety of asexual reproduction have not yet been determined. Here, we report on plantlet formation in Kalanchoe daigremontiana, Graptopetalum paraguayense, and Crassula portulacea (Crassulaceae) and analyse the effect of initiating cells on asexual reproduction in these three species. Additionally, the roles of WUSCHEL (WUS) and CUP-SHAPED COTYLEDON 1 (CUC1) in the asexual reproduction of these species were analysed through qRT-PCR. Our results indicated that pre-existing stem cell-like cells at the sites of asexual reproduction were responsible for the formation of plantlets. These cells were arrested in different phases of the cell cycle and showed different cell morphological characteristics and cell counts. The accumulation of auxin and cytokinin at the sites of asexual plantlet formation indicated their important functions, particularly for cell cycle reactivation. These differences may influence the pattern and complexity of asexual reproduction in these Crassulaceae species. Additionally, the dynamic expression levels of CUC1 and WUS may indicate that CUC1 functions in the formation of callus and shoot meristems; whereas, WUS was only associated with shoot induction.
机译:在无性植物繁殖期间,可以对来自不同器官的细胞进行重新编程,以产生新的个体,该过程需要协调细胞周期再激活与获取其他细胞形态学特征。但是,尚未确定影响无性繁殖多样性的因素。在这里,我们报告了在Kalanchoe daigremontiana,Graptopetalum paraguayense和Crassula portulacea(景天科)中的幼苗形成,并分析了这三种物种中启动细胞对无性繁殖的影响。此外,通过qRT-PCR分析了WUSCHEL(WUS)和杯状子叶1(CUC1)在这些物种的无性繁殖中的作用。我们的结果表明,在无性繁殖部位存在的干细胞样细胞是小植株形成的原因。这些细胞在细胞周期的不同阶段停滞,并表现出不同的细胞形态特征和细胞计数。生长激素和细胞分裂素在无性植物形成部位的积累表明它们的重要功能,特别是对于细胞周期的激活。这些差异可能会影响这些景天科物种无性繁殖的方式和复杂性。此外,CUC1和WUS的动态表达水平可能表明CUC1在愈伤组织和芽分生组织的形成中起作用。而WUS只与芽诱导有关。

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