Disruption of CHORISMATE SYNTHASE1 leads to yellow-green variegation in soybean leaves

Author:

Zhu Xiaobin123,Zheng Kaijie2,Lu Lei1,Yu Hui2,Wang Fawei1,Yang Xinjing23,Akhter Bhat Javaid4,Zhao Beifang2,Wang Yi1,Li Haiyan1,Yang Suxin2ORCID,Feng Xianzhong24ORCID

Affiliation:

1. College of Life Sciences, Jilin Agricultural University , Changchun, 130118 , China

2. Key Laboratory of Soybean Molecular Design Breeding, Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences , Changchun, 130102 , China

3. University of Chinese Academy of Sciences , Beijing, 100049 , China

4. Zhejiang Lab , Hangzhou, 311121 , China

Abstract

Abstract Yellow-green variegation leaf phenotype adds more value to ornamental plants, but it is regarded as an undesirable trait in crop plants, affecting their yields. Until recently, the underlying mechanism regulating the yellow-green variegation phenotype has remained largely unexplored in soybean. In the present study, we indentified four Glycine max leaf yellow/green variegation mutants, Gmvar1, Gmvar2, Gmvar3, and Gmvar4, from artificial mutagenesis populations. Map-based cloning, together with the allelic identification test and CRISPR-based gene knockout, proved that mutated GmCS1 controls yellow-green variegation phenotype of the Gmvar mutants. GmCS1 encodes a chorismate synthase in soybean. The content of Phe, Tyr, and Trp were dramatically decreased in Gmcs1 mutants. Exogenous supply of three aromatic amino acid mixtures, or only Phe to Gmvar mutants, leads to recovery of the mutant phenotype. The various biological processes and signalling pathways related to metabolism and biosynthesis were altered in Gmvar mutants. Collectively, our findings provide new insights about the molecular regulatory network of yellow-green variegation leaf phenotype in soybean.

Funder

National Natural Science Foundation of China

Major Scientific Project of Zhejiang Laboratory

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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