Inheritance and QTL Mapping for Flower Color in Salvia miltiorrhiza Bunge

Author:

Yu Yan12,Yang Zaijun3,Jiang Yuanyuan13,Wang Long13,Wu Yichao2,Liao Jinqiu3,Yang Ruiwu2,Zhang Li13

Affiliation:

1. College of Sciences, Sichuan Agricultural University , Ya’an 625014, Sichuan , China

2. College of Life Science, China West Normal University , Nanchong, 637009, Sichuan , China

3. Featured Medicinal Plants Sharing and Service Platform of Sichuan Province, Sichuan Agricultural University , Ya’an, 625014 Sichuan , China

Abstract

Abstract Salvia miltiorrhiza Bunge is an outcross-pollinated plant with diverse flower colors, ranging from white to purple. To clarify the genetic basis of S. miltiorrhiza flower color, we crossed white-flowered S. miltiorrhiza f. alba with dark violet-flowered S. miltiorrhiza, and selfed F1 to obtain an F2 population. The RGB color system was used to describe the flower color of the parents, F1 progeny, and F2 individuals. Afterward, we used genotyping-by-sequencing technology to construct a high-density linkage map of S. miltiorrhiza based on the F2 population. Finally, the linkage map was used to locate the QTLs of the genes that control flower color in S. miltiorrhiza. Through measurement and cluster analysis of the R, G, and B values of flowers from the parents, F1, and F2 individuals, it was found that the purple flower color of S. miltiorrhiza is a quantitative trait controlled by 2 loci of major genes. The genetic map contained 605 SNPs with a total length of 738.3 cM in 8 linkage groups (LGs), and the average distance between 2 markers was 1.22 cM. Based on the constructed genetic map and the flower R, G, B, and R+G+B values, 2 QTLs were detected for flower color, located on LG4 and LG5. The results of this study lay the foundation for cloning genes that control flower color and studying the molecular mechanism of flower color regulation in S. miltiorrhiza.

Funder

National Modern Agricultural Industry Technology System Sichuan Innovation Team

Sichuan Science and Technology Program

Sichuan Crops and Animals Breeding Special Project

Fundamental Research Funds of China West Normal University

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,Biotechnology

Reference41 articles.

1. R/qtl: QTL mapping in experimental crosses.;Broman;Bioinformatics,2003

2. Use of visible and short-wave nearinfrared hyperspectral imaging to fingerprint anthocyanins in intact grape berries;Diago;J Agric Food Chem,2016

3. Identification of the regulatory networks and hub genes controlling alfalfa floral pigmentation variation using RNA-sequencing analysis.;Duan;BMC Plant Biol,2020

4. Flavonoids: biosynthesis, biological functions, and biotechnological applications.;Falcone Ferreyra;Front Plant Sci,2012

5. Quantitative trait loci analysis of phenolic acids contents in Salvia miltiorrhiza based on genomic simple sequence repeat markers;Feng;Ind Crop Prod,2019

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