首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Morphological Transcriptomic and Hormonal Characterization of Trimonoecious and Subandroecious Pumpkin (Cucurbita maxima) Suggests Important Roles of Ethylene in Sex Expression
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Morphological Transcriptomic and Hormonal Characterization of Trimonoecious and Subandroecious Pumpkin (Cucurbita maxima) Suggests Important Roles of Ethylene in Sex Expression

机译:三单性和亚雄性南瓜(南瓜最大)的形态转录组和激素特性表明乙烯在性别表达中的重要作用

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摘要

Sex expression is a complex process, and in-depth knowledge of its mechanism in pumpkin is important. In this study, young shoot apices at the one-true-leaf stage and 10-leaf stage in Cucurbita maxima trimonoecious line ‘2013–12’ and subandroecious line ‘9–6’ were collected as materials, and transcriptome sequencing was performed using an Illumina HiSeqTM 2000 System. 496 up-regulated genes and 375 down-regulated genes were identified between shoot apices containing mostly male flower buds and only female flower buds. Based on gene ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) analysis, the differentially expressed genes were mainly enriched in the ethylene and auxin synthesis and signal transduction pathways. In addition, shoot apices at the 4-leaf stage were treated with the ethylene-releasing agent 2-chloroethylphosphonic acid (Ethrel), aminoethoxyvinyl glycine (AVG), AgNO3 and indoleacetic acid (IAA). The number of female flowers up to node 20 on the main stem of ‘2013–12’ increased significantly after Ethrel and IAA treatment and decreased significantly after AVG and AgNO3 treatment. The female flowers in ‘9–6’ showed slight changes after treatment with the exogenous chemicals. The expression of key genes in ethylene synthesis and signal transduction (CmaACS7, CmaACO1, CmaETR1 and CmaEIN3) was determined using quantitative RT-PCR, and the expression of these four genes was positively correlated with the number of female flowers in ‘2013–12’. The variations in gene expression, especially that of CmaACS7, after chemical treatment were small in ‘9–6’. From stage 1 (S1) to stage 7 (S7) of flower development, the expression of CmaACS7 in the stamen was much lower than that in the ovary, stigma and style. These transcriptome data and chemical treatment results indicated that IAA might affect pumpkin sex expression by inducing CmaACS7 expression and indirectly affecting ethylene production, and the ethylene synthesis and signal transduction pathways play crucial roles in pumpkin flower sex expression. A possible reason for the differences in sex expression between pumpkin lines ‘2013–12’ and ‘9–6’ was proposed based on the key gene expression. Overall, these transcriptome data and chemical treatment results suggest important roles for ethylene in pumpkin sex expression.
机译:性别表达是一个复杂的过程,深入了解其在南瓜中的作用机制很重要。在这项研究中,以南瓜属三单性系“ 2013-12”和亚雄性系“ 9-6”的真叶期和十叶期幼芽为材料,并通过转录组测序Illumina HiSeq TM 2000系统。在主要包含雄性花蕾而仅包含雌性花蕾的芽尖之间鉴定出496个上调基因和375个下调基因。根据基因本体论(GO)和《京都议定书》,根据基因和基因组百科全书(KEGG)分析,差异表达的基因主要集中在乙烯和植物生长素的合成和信号转导途径上。另外,用乙烯释放剂2-氯乙基膦酸(Ethrel),氨基乙氧基乙烯基甘氨酸(AVG),AgNO 3和吲哚乙酸(IAA)处理4叶阶段的茎尖。在进行Ethrel和IAA处理后,“ 2013-12”主茎上达到节20的雌花数量显着增加,而在进行AVG和AgNO3处理后,雌花数量显着减少。用外源化学物质处理后,“ 9-6”中的雌花显示出轻微变化。使用定量RT-PCR确定乙烯合成和信号转导中关键基因的表达(CmaACS7,CmaACO1,CmaETR1和CmaEIN3),这四个基因的表达与“ 2013-12”中雌花的数量呈正相关。 。经过化学处理后,基因表达的变化(尤其是CmaACS7的变化)在'9-6'中很小。从花发育的第一阶段(S1)到第七阶段(S7),CmaACS7在雄蕊中的表达远低于在卵巢,柱头和花柱中的表达。这些转录组数据和化学处理结果表明,IAA可能通过诱导CmaACS7表达并间接影响乙烯的产生来影响南瓜的性别表达,并且乙烯的合成和信号转导途径在南瓜花的性别表达中起着至关重要的作用。根据关键基因表达,提出了南瓜系“ 2013-12”和“ 9-6”之间性别表达差异的可能原因。总体而言,这些转录组数据和化学处理结果表明乙烯在南瓜的性别表达中具有重要作用。

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