A 49-bp deletion of PmAP2L results in a double flower phenotype in Prunus mume

生物 花瓣 恶毒的 基因 李子 MADS箱 遗传学 雄蕊 表型 抑制因子 基因沉默 植物 突变体 拟南芥 同源异型基因 基因表达 花粉
作者
Weichao Liu,Tangchun Zheng,Like Qiu,Xiaoyu Guo,Ping Li,Yong Xue,Lulu Li,Sagheer Ahmad,Jia Wang,Tangren Cheng,Qixiang Zhang
出处
期刊:Horticulture research [Springer Nature]
卷期号:11 (2) 被引量:7
标识
DOI:10.1093/hr/uhad278
摘要

Abstract The double flower is an important trait with substantial ornamental value. While mutations in PETALOSA TOE-type or AG (AGAMOUS) genes play a crucial role in enhancing petal number in ornamental plants, the complete mechanism underlying the formation of double flowers remains to be fully elucidated. Through the application of bulked segregant analysis (BSA), we identified a novel gene, APETALA2-like (PmAP2L), characterized by a 49-bp deletion in double-flowered Prunus mume. β-Glucuronidase (GUS) staining and luciferase reporter assays confirmed that the 49-bp deletion in PmAP2L reduced its binding with Pmu-miRNA172a. Phylogenetic analysis and microsynteny analysis suggested that PmAP2L was not a PETALOSA TOE-type gene, and it might be a new gene controlling the formation of double flower in P. mume. Subsequently, overexpression of PmAP2L-D in tobacco led to a significant rise in the number of stamens and the conversion of stamens to petals. Furthermore, silencing of the homologue of RC5G0530900 in rose significantly reduced the number of petals. Using transient gene expression in P. mume flower buds, we determined the functional differences between PmAP2L-D and PmAP2-S in controlling flower development. Meanwhile, DNA-affinity purification sequencing (DAP-seq), yeast hybrid assays and luciferase reporter assays indicated that PmAP2L negatively regulated the floral organ identity genes by forming a repressor complex with PmTPL and PmHDA6/19. Overall, these findings indicate that the variation in PmAP2L is associated with differences in the regulation of genes responsible for floral organ identity, providing new insights into the double-flower trait and double-flower breeding in plants.
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