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Transcriptomics Investigation into the Mechanisms of Self-Incompatibility between Pin and Thrum Morphs of Primula maximowiczii

机译:报春花大头报春花的Pin和Throm形态自交不亲和机理的转录组学研究

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摘要

Heteromorphic self-incompatibility (SI) is an important system for preventing inbreeding in the genus Primula. However, investigations into the molecular mechanisms of Primula SI are lacking. To explore the mechanisms of SI in Primula maximowiczii, the pollen germination and fruiting rates of self- and cross-pollinations between pin and thrum morphs were investigated, and transcriptomics analyses of the pistils after pollination were performed to assess gene expression patterns in pin and thrum SI. The results indicated that P. maximowiczii exhibits strong SI and that the mechanisms of pollen tube inhibition differ between pin and thrum morphs. While self-pollen tubes of the pin morph were able to occasionally, though rarely, enter the style, those of the thrum morph were never observed to enter the style. The transcriptomics analysis of the pistils revealed 1311 and 1048 differentially expressed genes (DEGs) that were identified by comparing pin self-pollination (PS) vs. pin cross-pollination (PT) and thrum self-pollination (TS) vs. thrum cross-pollination (TP). Notably, about 90% of these DEGs exhibited different expression patterns in the two comparisons. Moreover, pin and thrum DEGs were associated with different Gene Ontology (GO) categories and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathways following enrichment analyses. Based on our results, the molecular mechanisms underlying the pin and thrum SI in P. maximowiczii appear to be distinct. Furthermore, the genes involved in the SI processes are commonly associated with carbohydrate metabolism and environmental adaptation. These results provide new insight into the molecular mechanisms of Primula SI.
机译:异形自我不相容性(SI)是防止樱草属近交的重要系统。但是,尚缺乏对报春花SI分子机制的研究。为了探索报春花报春花中SI的机制,研究了花粉萌发和花粉萌发的结果,以及花粉和花粉形态之间的自花和异花授粉,并对花粉后雌蕊进行了转录组学分析,以评估花粉在花粉和花粉中的表达模式。 SI。结果表明,P。maximowiczii表现出很强的SI,并且花粉管抑制的机理在针形和茎形之间有所不同。尽管针状变体的自花粉管偶尔(尽管很少)能够进入样式,但从未观察到针状变体的管进入样式。雌蕊的转录组学分析显示了1311和1048个差异表达的基因(DEG),这些基因通过比较插针自花授粉(PS)与插针异花授粉(PT)以及支链自花授粉(TS)与插枝交花来鉴定。授粉(TP)。值得注意的是,在两次比较中,这些DEG中约有90%表现出不同的表达模式。此外,富集分析之后,销和链DEG与不同的基因本体论(GO)类别和《京都议定书》的基因与基因组百科全书(KEGG)途径相关。根据我们的研究结果,在巨大假单胞菌中,针脚和thSI的分子机制似乎是不同的。此外,参与SI过程的基因通常与碳水化合物代谢和环境适应性相关。这些结果提供了对报春花SI分子机制的新见解。

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