Asteraceae is a large class of eudicots with complex capitulum, and little is known regarding the molecular regulation mechanism of flower development. APETALA1(AP1) belongs to the MADS-box gene family and plays a key role in plant floral induction and floral organ development. In this study, the bioinformatics and tissue-specific expression of AP1 homologous gene SvAP1-5 in Senecio vulgaris were analyzed. Based on VIGS technology, SvAP1-5 gene silencing plants were created, and SvAP1-5 was overexpressed in Solanum nigrum. The results of bioinformatics analysis showed that SvAP1-5 gene had typical MADS-box and K-box structure, and contains FUL motif and paleoAP1 motif at the C-terminal. SvAP1-5 belongs to the euFUL branch of AP1 gene. qRT-PCR results showed that SvAP1-5 was expressed in bracts, petals and carpels, and was highly expressed in carpels. Compared with the control group, SvAP1-5 gene silencing resulted in irregular petal dehiscence, increased stigma division, and carpel dysplasia. The fruit development of SvAP1-5 overexpressing S.nigrum plants was abnormal, and the hyperplastic tissue similar to fruit appeared. In summary, SvAP1-5 gene may be involved in the development of petals and carpels and plays an important role during the development of S.vulgaris.
菊科(Asteraceae)是真双子叶植物的一大类,具有复杂的头状花序,目前对其花发育的分子调控机制还知之甚少。APETALA1(AP1)属于MADS-box基因家族,在植物成花诱导和花器官发育中具有关键作用。本研究对欧洲千里光(Senecio vulgaris)AP1同源基因SvAP1-5进行了生物信息学及组织特异性表达分析,并基于VIGS技术创建了SvAP1-5基因沉默植株,并在龙葵(Solanum nigrum)中过表达SvAP1-5,对其功能进行了初步探讨。生物信息学分析结果表明,SvAP1-5基因具有典型的MADS-box和K-box结构,C末端含有FUL基序和paleoAP1基序,属于euFUL分支的AP1类基因。qRT-PCR结果表明,SvAP1-5在苞片、花瓣和心皮中均有表达,其中在心皮内较高表达。与对照相比,SvAP1-5基因沉默导致花瓣不规则裂开,柱头分裂增加,心皮发育不良。而SvAP1-5过表达龙葵植株的果实发育异常,出现类似果实细胞的增生组织。综上所述,在欧洲千里光花发育过程中,SvAP1-5基因可能参与花瓣和心皮的发育,并发挥着重要作用。.
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