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首页> 外文期刊>Journal of Plant Growth Regulation >Global DNA Methylation Levels During the Development of Nodule Cluster Cultures and Assessment of Genetic Fidelity of In Vitro-Regenerated Pineapple Plants (Ananas comosus var. comosus)
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Global DNA Methylation Levels During the Development of Nodule Cluster Cultures and Assessment of Genetic Fidelity of In Vitro-Regenerated Pineapple Plants (Ananas comosus var. comosus)

机译:结节簇培养发展过程中的全球DNA甲基化水平以及体外再生菠萝植物(Ananas comosus var。comosus)的遗传保真度评估

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摘要

Pineapple presents a significant portion of the global fruit market. Recently, a micropropagation protocol was established based on nodule cluster cultures (NC), which showed high regenerative efficiency. Aiming to expand the understanding of gene regulation in this protocol, global DNA methylation levels (GDML) and fresh mass increase ratio (FMIR) during NC multiplication and differentiation to microshoots were evaluated after 0, 9, 18, 27, and 36 days in culture. In addition, genetic fidelity of randomly chosen regenerated plants was analyzed by means of amplified fragment length polymorphism (AFLP), flow cytometric analysis of ploidy level, as well as observation of phenotypic features. An association between GDML and the density of new shoot apical meristems formed in cultures was observed, which was, in turn, related to FMIR and the age of each subculture. The analysis by means of AFLP and DNA ploidy level, as well as phenotypic observations indicated the homogeneity of regenerated plantlets.
机译:菠萝占全球水果市场的很大一部分。近来,基于结节簇培养物(NC)建立了微繁殖方案,其显示出高的再生效率。为了扩大对该协议中基因调控的理解,在培养0、9、18、27和36天后评估了NC繁殖和分化为微芽期间的总体DNA甲基化水平(GDML)和新鲜质量增加率(FMIR)。 。此外,还通过扩增片段长度多态性(AFLP),倍性水平的流式细胞仪分析以及表型特征的分析来分析随机选择的再生植物的遗传保真度。观察到GDML和培养物中形成的新的茎尖分生组织的密度之间的关联,这又与FMIR和每个亚培养的年龄有关。通过AFLP和DNA倍性水平的分析以及表型观察表明再生小植株的同质性。

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