甜瓜(Cucumis melo L.)花发育中ABCE模式基因的表达模式

IF 1 4区 生物学 Q4 DEVELOPMENTAL BIOLOGY
Yufan Sun , Tiantian Ren , Jiateng Zhao , Wensheng Zhao , Lanchun Nie
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引用次数: 0

摘要

在生产中,大多数甜瓜品种都是雌雄同株的,其特征是在同一植株上同时开雄性和两性花。在本研究中,在甜瓜中鉴定了4个A类基因(CmAP1a、CmAP1b、CmAP2a和CmAP2b)、2个B类基因(CmAP3和CmPI)、两个C类基因(CmAGa和CmAGb)和4个E类基因(CmdEP1,2,3,4)。然而,没有发现甜瓜的D类基因。ABCE功能蛋白的保守结构域在拟南芥和甜瓜之间表现出相对较高的相似性。ABCE同源异型基因在甜瓜不同花蕾中的表达模式表明,CmAP1a、CmPI和CmSEP1在两性花蕾中的转录物显著低于雄性花蕾,而CmAGa、CmAGb和CmSEP4在两性花蕾的表达水平显著高于雄性花蕾。其他ABCE模型基因在雄性芽和两性芽之间的表达水平没有显著差异。随后,对甜瓜两性花的不同花器官进行了qRT-PCR。对于A类基因,CmAP1a和CmAP1b在萼片中的积累高于花瓣、雄蕊和雌蕊,而CmAP2a和CmAP2b在雌蕊中的表达高于其他三个花器官。对于B类基因,CmAP3和CmPI在花瓣和雄蕊中高度积累,而CmAP3在雌蕊中也表现出丰富的积累。对于C类基因,CmAGa和CmAGb在雄蕊和雌蕊中的表达水平高于萼片和花瓣。对于E类基因,CmSEP1在萼片和花瓣中的表达水平高于雄蕊和雌蕊。CmSEP2、CmSEP3和CmSEP4在雌蕊中的积累最高。这些结果为研究ABCE同源异型基因在甜瓜花器官发育中的作用提供了理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Expression patterns of ABCE model genes during flower development of melon (Cucumis melo L.)

In production, most cultivars of melon are andromonoecious and characterized by carrying both male and bisexual flowers on the same plant. In this study, four A-class genes (CmAP1a, CmAP1b, CmAP2a and CmAP2b), two B-class genes (CmAP3 and CmPI), two C-class genes (CmAGa and CmAGb) and four E-class genes (CmSEP1,2,3,4) were identified in melon. However, no D-class gene of melon was identified. The conserved domains of ABCE function proteins showed relatively high similarity between Arabidopsis and melon. The expression patterns of ABCE homeotic genes in different flower buds of melon suggested that transcripts of CmAP1a, CmPI and CmSEP1 in bisexual buds were significantly lower than that in male flower buds, while the expression levels of CmAGa, CmAGb and CmSEP4 in bisexual flower buds were significantly higher than that in male flower buds. There was no significant difference in expression levels of other ABCE model genes between male buds and bisexual buds. Subsequently, qRT-PCR was performed in different floral organs of bisexual flowers in melon. For A class genes, CmAP1a and CmAP1b showed the highest accumulation in sepals than petals, stamens and pistil, while CmAP2a and CmAP2b revealed the highest expression in pistil than other three floral organs. For B class genes, CmAP3 and CmPI were highly accumulated in petals and stamens though CmAP3 also showed abundant accumulation in pistil. For C class genes, the expression levels of CmAGa and CmAGb were higher in stamens and pistil than that in sepals and petals. For E class genes, CmSEP1 showed higher expression level in sepals and petals than stamens and pistil. CmSEP2, CmSEP3 and CmSEP4 showed the highest accumulation in pistil than other floral organs. These results provided a theoretical basis for studying the function of ABCE homeotic genes in floral organs development of melon.

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来源期刊
Gene Expression Patterns
Gene Expression Patterns 生物-发育生物学
CiteScore
2.30
自引率
0.00%
发文量
42
审稿时长
35 days
期刊介绍: Gene Expression Patterns is devoted to the rapid publication of high quality studies of gene expression in development. Studies using cell culture are also suitable if clearly relevant to development, e.g., analysis of key regulatory genes or of gene sets in the maintenance or differentiation of stem cells. Key areas of interest include: -In-situ studies such as expression patterns of important or interesting genes at all levels, including transcription and protein expression -Temporal studies of large gene sets during development -Transgenic studies to study cell lineage in tissue formation
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