Niu Jianqing, Chen Qiong, Lu Xiaonan, Wang Xueqiang, Tang Zhongli, Liu Qinghua, Lei Fengjin, Xu Xiaoyong
Hainan Yazhou Bay Seed Lab, Sanya, Hainan, China.
College of Horticulture, Shanxi Agricultural University, Taigu, Shanxi, China.
Front Plant Sci. 2023 Apr 21;14:1159937. doi: 10.3389/fpls.2023.1159937. eCollection 2023.
As a conspicuous trait, peel color is one of the most important characteristics that affects commodity quality and consumer preferences. The locus underlying yellow peel in (zucchini) was first reported in 1922; however, its molecular mechanism is still unknown. In this study, a genetic analysis revealed that yellow peel is controlled by a single dominant genetic factor. Furthermore, was mapped in a 170 kb region on chromosome 10 by bulked segregated analysis (BSA) and fine mapping in F and BC segregating populations. The candidate region harbors fifteen annotated genes, among which () is regarded as a promising candidate gene. encodes a magnesium chelatase H subunit involved in chlorophyll biosynthesis, and its mutation can result in a reduction in chlorophyll content and yellow phenotype. Interestingly, a large fragment (15 kb) duplication containing incomplete was inserted in the candidate interval, resulting in two reformed CpCHLH proteins in the yellow parental line. It is most likely that the reformed CpCHLH proteins act as a malfunctional competitor of the normal CpCHLH protein to interrupt the formation of chlorophyll. Overall, the isolation of will shed light on the molecular mechanism of the peel color regulation of zucchini and lay a foundation for breeding.
作为一个显著特征,果皮颜色是影响商品品质和消费者偏好的最重要特征之一。西葫芦中控制黄色果皮的基因座最早于1922年被报道;然而,其分子机制仍然未知。在本研究中,遗传分析表明黄色果皮受单一显性遗传因子控制。此外,通过混合分组分析法(BSA)以及在F和BC分离群体中的精细定位,将该基因座定位在第10号染色体上一个约170 kb的区域。该候选区域包含15个注释基因,其中CpCHLH被认为是一个有希望的候选基因。CpCHLH编码一种参与叶绿素生物合成的镁螯合酶H亚基,其突变会导致叶绿素含量降低和黄色表型。有趣的是,在候选区间插入了一个包含不完整CpCHLH的大片段(约15 kb)重复序列,导致黄色亲本系中产生了两种改造后的CpCHLH蛋白。很可能改造后的CpCHLH蛋白作为正常CpCHLH蛋白的功能失调竞争者,从而干扰叶绿素的形成。总体而言,CpCHLH的分离将为西葫芦果皮颜色调控的分子机制提供线索,并为育种奠定基础。