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园艺学报 ›› 2025, Vol. 52 ›› Issue (7): 1803-1816.doi: 10.16420/j.issn.0513-353x.2024-0650

• 遗传育种·种质资源·分子生物学 • 上一篇    下一篇

基于转录组和基因组开发紫薇叶色相关的SNP分子标记

喻灿楠1, 郭安芳1, 陆春2, 缪红军2, 侯小玉1, 袁天逸1, 刘国元1, 魏辉1, 张健1, 余春梅1,*()   

  1. 1 南通大学生命科学学院,南通市园林育种重点实验室,江苏南通 226019
    2 南通市绿化造园开发有限公司,江苏南通 226001
  • 收稿日期:2024-10-15 修回日期:2025-04-18 出版日期:2025-07-23 发布日期:2025-07-23
  • 通讯作者:
  • 基金资助:
    江苏省大学生创新项目(202310304105Y); 南通大学大仪开放基金项目(KFJN2320)

Identification and Development of SNP Markers for Lagerstroemia indica Leaf Color Based on Transcriptome and Genome Analysis

YU Cannan1, GUO Anfang1, LU Chun2, MIAO Hongjun2, HOU Xiaoyu1, YUAN Tianyi1, LIU Guoyuan1, WEI Hui1, ZHANG Jian1, and YU Chunmei1,*()   

  1. 1 Key Lab of Landscape Plant Genetics and Breeding of Nantong,School of Life Science,Nantong University,Nantong,Jiangsu 226019,China
    2 Nantong Greening and Landscape Gardening Development Co., Ltd.,Nantong,Jiangsu 226001,China
  • Received:2024-10-15 Revised:2025-04-18 Published:2025-07-23 Online:2025-07-23

摘要: 为获得与紫薇(Lagerstroemia indica)紫(红)色叶片关联的分子标记,以19个紫薇品种及其杂交F1子代为试材,对幼叶期、完全展叶期、盛花期和落叶期的叶色进行目测和CIE L*a*b*检测。通过结合转录组和基因组的数据以及靶向测序,鉴定参与叶色形成的候选SNP位点,通过高分辨率溶解曲线(high resolution melting,HRM)对候选的SNP在F1子代中进行了检测。结果显示,目测和CIEL*a*b*均能较好地区分叶片颜色。红度a*可区分绿色叶和彩色叶(红色和紫红色),亮度值L*、黄度值b*以及彩度值C和色调角度h在三种叶色(绿色、红色和紫红色)中均有显著差异。本研究中共筛选获得53个候选SNP位点,靶向测序结果显示6个位点∆SNP大于0.2。Sanger测序以及HRM分析‘红火球’和‘白云映霞’F1代的基因型结果显示,其中4个SNP与叶色相关系数介于0.184 ≤ r ≤ 0.623,达到显著水平,1个SNP标记在绿色和彩色叶片中呈现有、无多态性。紫(红)色(P)型基因型频率越高,叶片颜色越深,说明紫(红)色叶片是由多基因控制的加性效应导致。

关键词: 紫薇, 叶色, SNP分子标记, 数据挖掘, 分子标记辅助育种

Abstract:

To identify leaf color-linked SNP markers in crape myrtle cultivars(Lagerstroemia indica),19 crape myrtle cultivars and their F1 progeny were utilized. This study conducted both eye-based and CIE L*a*b*-based measurements of leaf color during various growth stages(young leaf stage,full leaf stage,full bloom stage,and leaf abscission stage),and integrated transcriptome and genome data with targeted sequencing to identify candidate SNP markers potentially linked to leaf color,and with these SNPs subsequently detected in the F1 progeny using high-resolution melting curve(HRM)analysis. The results indicated that both eye-based estimation and CIE L*a*b* values could effectively distinguish leaf colors,with the a* value specifically differentiating green leaves from colored leaves(red and purple-red). Additionally, significant differences were observed in brightness value L*,yellowness value b*,chroma C,and hue angle h among the three types of leaf color. A total of fifty-three candidate SNP sites were obtained through data mining,but targeted sequencing results revealed that only six of them had a ΔSNP greater than 0.2. Sanger sequencing and HRM analysis of the F1 plants derived from‘Dynamite’and‘Baiyun Yingxia’showed that four SNPs had a correlation coefficient with leaf color ranging from 0.184 to 0.623 reaching a significant level,and one SNP marker exhibited dimorphism between green and colored leaves. The higher the frequency of the purple(red)(P)type genotype,the deeper the leaf color,suggesting that the purple-red leaf color is caused by the additive effect of multiple genes.

Key words: crape myrtle, leaf color, SNP molecular markers, data mining, molecular-assisted breeding