The GRAS transcription factor CsTL regulates tendril formation in cucumber

Author:

Shen Junjun1ORCID,Jiang Yanxin1ORCID,Pan Jian2ORCID,Sun Linhan3ORCID,Li Qingqing1ORCID,He Wenjing1ORCID,Sun Piaoyun1ORCID,Zhao Bosi1ORCID,Zhao Hongjiao1ORCID,Ke Xubo1ORCID,Guo Yalu1ORCID,Yang Tongwen1ORCID,Li Zheng1ORCID

Affiliation:

1. College of Horticulture, Northwest A&F University , Yangling, Shaanxi 712100 , China

2. College of Horticulture, Shenyang Agricultural University , Shenyang, Liaoning 110866 , China

3. Department of Biochemistry and Molecular Biology, The Pennsylvania State University, University Park , PA 16802 , USA

Abstract

Abstract Cucumber (Cucumis sativus, Cs) tendrils are slender vegetative organs that typically require manual removal to ensure orderly growth during greenhouse cultivation. Here, we identified cucumber tendril-less (tl), a Tnt1 retrotransposon-induced insertion mutant lacking tendrils. Map-based cloning identified the mutated gene, CsaV3_3G003590, which we designated as CsTL, which is homologous to Arabidopsis thaliana LATERAL SUPPRESSOR (AtLAS). Knocking out CsTL repressed tendril formation but did not affect branch initiation, whereas overexpression (OE) of CsTL resulted in the formation of two or more tendrils in one leaf axil. Although expression of two cucumber genes regulating tendril formation, Tendril (CsTEN) and Unusual Floral Organs (CsUFO), was significantly decreased in CsTL knockout lines, these two genes were not direct downstream targets of CsTL. Instead, CsTL physically interacted with CsTEN, an interaction that further enhanced CsTEN-mediated expression of CsUFO. In Arabidopsis, the CsTL homolog AtLAS acts upstream of REVOLUTA (REV) to regulate branch initiation. Knocking out cucumber CsREV inhibited branch formation without affecting tendril initiation. Furthermore, genomic regions containing CsTL and AtLAS were not syntenic between the cucumber and Arabidopsis genomes, whereas REV orthologs were found on a shared syntenic block. Our results revealed not only that cucumber CsTL possesses a divergent function in promoting tendril formation but also that CsREV retains its conserved function in shoot branching.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Key Research and Development Program of Shaanxi

Technology Innovation Team of Shaanxi

Publisher

Oxford University Press (OUP)

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