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首页> 外文期刊>Annals of Botany >Expression of floral identity genes in Clianthus maximus during mass inflorescence abortion and floral development
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Expression of floral identity genes in Clianthus maximus during mass inflorescence abortion and floral development

机译:大规模花序流产和花期发育过程中花身份基因在大C中的表达。

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Background and Aims Clianthus maximus is a leguminous perennial with an unusual order of floral organ insertion, and inflorescences produced year round that nearly all abort except during a limited time in autumn. This study aimed to determine at what point in floral organ differentiation abortion occurred and whether the expression of the floral identity genes underlies this cessation in flower development.Methods Inflorescences were harvested across an annual cycle and flower development was examined by light and scanning electron microscopy. Expression of the C. maximus-equivalents of LEAFY (LFY), APETALA1 (AP1), PISTILLATA (PI) and AGAMOUS (AG) was monitored simultaneously by quantitative, reverse transcriptase PCR.Key Results Only those inflorescences formed in autumn proceeded to anthesis. Organogenesis had not begun in inflorescences that aborted. The C. maximus-equivalents of AP1, PI and AG were expressed in sepals, petals, carpels and stamens, as expected from the ABC model of floral organ identity specification; furthermore, the order of expression of the three genes reflected the unusual pattern of organ differentiation. Low expression of LFY and AP1 was observed during inflorescence abortion.Conclusions Predictions of gene expression based on the ABC model were upheld despite the unusual mass abortion of inflorescences and the non-standard pattern of organ formation. The lack of expression of LFY and AP1 in inflorescences may have been the cause of inflorescence abortion.
机译:背景和目的菊苣(Clianthus maximus)是一种豆科多年生植物,具有不寻常的花器官插入顺序,并且常年产生花序,除秋季的有限时间外,几乎所有花序都流产。这项研究旨在确定何时发生花器官分化流产以及花同一性基因的表达是否是花卉发育中这种终止的基础。方法方法整年收集花序,并通过光镜和扫描电子显微镜检查花的发育。通过定量逆转录酶PCR同时监测LEAFY(LFY),APETALA1(AP1),PISTILLATA(PI)和AGAMOUS(AG)的最大梭状芽胞杆菌的表达。在发生花序脱落的花序中尚未开始器官发生。 AP1,PI和AG的C. maximus等效表达于萼片,花瓣,心皮和雄蕊中,这是根据花卉器官身份规范的ABC模型所预期的;此外,这三个基因的表达顺序反映了器官分化的异常模式。结论在花序流产期间观察到了LFY和AP1的低表达。结论尽管花序发生了异常的自然流产和器官形成的非标准模式,但仍维持了基于ABC模型的基因表达预测。花序中LFY和AP1表达的缺乏可能是花序流产的原因。

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