RcAGL61基因调控雄蕊和花瓣之间转变影响月季花瓣数量
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花卉种质创新与分子育种北京市重点实验室,国家花卉工程技术研究中心,北京林业大学园林学院

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Q785;Q786

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北京市自然科学基金项目资助(6192018)


RcAGL61 Gene Affects the Number of Rose Petals by Regulating the Transition between Stamens and Petals
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Beijing Natural Science Foundation (6192018)

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    摘要:

    【目的】为了探究月季重瓣性状的调控机制,课题组前期筛选到一个与花发育相关的AG同源基因RcAGL61,本研究对该基因的功能进行了分析。【方法】利用荧光定量PCR(qRT-PCR)对该基因在‘窄叶藤本月季花’ב月月粉’杂交群体中重瓣株系和单瓣株系花芽5个发育时期的表达模式进行了分析,以重瓣株系和单瓣株系为材料,克隆RcAGL61,并进行生物信息学分析、亚细胞定位及VIGS实验。【结果】(1)该基因表达水平在单瓣株系的五个发育时期均显著高于重瓣株系,在单瓣株系花发育的S4-S5期比S1-S3期表达量明显升高。(2)RcAGL61编码区序列在单瓣株系和重瓣株系中一致,长度为495 bp,与RcAG基因序列相似度为30.75%,编码164个氨基酸,含有一个MADS-Box保守结构域,属于MADS-Box基因家族。(3)亚细胞定位发现RcAGL61蛋白定位于烟草表皮细胞的细胞核。(4)沉默该基因后,瓣化雄蕊数量增加,雄蕊数量减少,花瓣数量增加,萼片数量和雌蕊数量无显著变化。【结论】RcAGL61参与调控了雄蕊原基和花瓣原基间的转变,影响了月季的花瓣数量。

    Abstract:

    [Objective] In order to elucidate the regulatory mechanism of the double petal trait in roses, we obtained an AG homologous gene RcAGL61 associated with flower development. [Method] qRT-PCR was used to analyze the expression patterns of RcAGL61 in the flower buds of double-petaled strain and single-petaled strain in Rosa chinensis ''Zhaiye Tengben Yuejihua'' × R. chinensis ''Old Blush'' population, and RcAGL61 was cloned from double-petaled lines and single-petal lines, and bioinformatics analysis, subcellular localization and VIGS experiments were carried out. [Result] The results showed that:(1) The expression level of RcAGL61 was significantly higher in the five developmental stages of flower of single-petaled strain than that of double-petaled strain, and the expression level was significantly higher in S4-S5 stages than in S1-S3 stages in single-petaled strain. (2) The coding sequence of RcAGL61 was consistent in double-petaled strain and single-petaled strain, with a length of 495 bp and a similarity to the RcAG coding sequence of 30.75%, encoding 164 amino acids, containing a MADS-Box conserved domain, belonging to the MADS-Box gene family. (3) RcAGL61 protein was subcellularly localized in the nucleus. (4) When the gene was silenced by VIGS technique in R. chinensis ''Old Blush'', the number of petalized stamens increased and the number of petals increased, while the number of stamens decreased. The number of sepals and pistil had no significant change. [Conclusion] RcAGL61 is involved in regulating the transition between stamen and petal primordium, and affecting the number of petal in roses.

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戚雨岑,杨淑敏,苏琳,等. RcAGL61基因调控雄蕊和花瓣之间转变影响月季花瓣数量[J].西北植物学报,2024,44(6):904-911

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  • 收稿日期:2023-09-03
  • 最后修改日期:2023-12-25
  • 录用日期:2024-01-09
  • 在线发布日期: 2024-04-24
  • 出版日期: 2024-07-01
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