越桔
候选基因
蜡
转录组
人口
生物
植物
染色体
RNA序列
园艺
遗传分析
RAPD
植物生理学
食品科学
基因沉默
遗传变异
白色(突变)
遗传学
基因表达
基因
作者
Liwei Chu,Xueting Wang,Wanting Li,Siyu Zuo,Yawen Kang,Wenji Zhang,Hexin Wang,Rongli Gai,Guohui Xu
标识
DOI:10.1016/j.hpj.2025.07.006
摘要
The blueberry ( Vaccinium L.) fruit is known for its light-blue appearance, attributed to its blue-black skin covered with a white waxy layer. This layer is crucial for the growth and storage of blueberry fruits. This study established an F 1 mapping population of 166 plants derived from ‘Chandler’ (wax-rich) and ‘Black Pearl’ (wax-poor). Bulk segregated analysis sequencing was used to identify the candidate region associated with cuticular wax, which was finally narrowed to a 1.85 Mb segment on chromosome 11, including ten candidate genes. Further transcriptome analyses and qRT-PCR revealed that the relative expression levels of five candidate genes ( VcMYB36 , VcDXS , VcCAMS1 , VcCER2, and VcKCS19 ) were different between ‘Chandler’ and ‘Black Pearl’. Combined with gene function annotation, we hypothesized that VcKCS19 and VcCER2 are key candidate genes for wax synthesis in blueberry, potentially accounting for the variations in wax content between ‘Chandler’ and ‘Black Pearl’. Transient overexpression and virus-induced gene silencing in blueberry fruit revealed that VcCER2 and VcKCS19 positively regulate wax accumulation in blueberry fruits. This study provided key insights into the molecular basis of wax synthesis in blueberry fruits, which provides new avenues for enhancing wax quality in genetic breeding programs.
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