The Gynandropsis gynandra genome provides insights into whole-genome duplications and the evolution of C4 photosynthesis in Cleomaceae

Author:

Hoang Nam V1ORCID,Sogbohossou E O Deedi12ORCID,Xiong Wei1ORCID,Simpson Conor J C3ORCID,Singh Pallavi3ORCID,Walden Nora14ORCID,van den Bergh Erik1ORCID,Becker Frank F M5ORCID,Li Zheng6ORCID,Zhu Xin-Guang7ORCID,Brautigam Andrea8ORCID,Weber Andreas P M9ORCID,van Haarst Jan C10ORCID,Schijlen Elio G W M10ORCID,Hendre Prasad S11ORCID,Van Deynze Allen1112ORCID,Achigan-Dako Enoch G2ORCID,Hibberd Julian M3ORCID,Schranz M Eric1ORCID

Affiliation:

1. Biosystematics Group, Wageningen University , Droevendaalsesteeg 1, 6708PB Wageningen , The Netherlands

2. Laboratory of Genetics, Biotechnology and Seed Science (GbioS), Faculty of Agronomic Sciences, University of Abomey-Calavi , BP 2549 Abomey-Calavi , Republic of Benin

3. Department of Plant Sciences, University of Cambridge , Cambridge CB2 3EA , UK

4. Centre for Organismal Studies, Heidelberg University , 69120 Heidelberg , Germany

5. Laboratory of Genetics, Wageningen University and Research , Droevendaalsesteeg 1, 6708PB Wageningen , The Netherlands

6. Department of Integrative Biology, The University of Texas at Austin , Austin, TX 78712 , USA

7. State Key Laboratory for Plant Molecular Genetics, Center of Excellence for Molecular Plant Sciences, Chinese Academy of Sciences , Shanghai 200032 , China

8. Faculty of Biology, Bielefeld University , 33501 Bielefeld , Germany

9. Cluster of Excellence on Plant Science (CEPLAS), Institute of Plant Biochemistry, Heinrich Heine University Düsseldorf , 40225 Düsseldorf , Germany

10. Business Unit Bioscience, Wageningen University and Research , Droevendaalsesteeg 1, 6708PB Wageningen , The Netherlands

11. African Orphan Crops Consortium (AOCC), World Agroforestry (ICRAF) , Nairobi 00100 , Kenya

12. Seed Biotechnology Center, University of California , Davis, California 95616 , USA

Abstract

Abstract Gynandropsis gynandra (Cleomaceae) is a cosmopolitan leafy vegetable and medicinal plant, which has also been used as a model to study C4 photosynthesis due to its evolutionary proximity to C3 Arabidopsis (Arabidopsis thaliana). Here, we present the genome sequence of G. gynandra, anchored onto 17 main pseudomolecules with a total length of 740 Mb, an N50 of 42 Mb and 30,933 well-supported gene models. The G. gynandra genome and previously released genomes of C3 relatives in the Cleomaceae and Brassicaceae make an excellent model for studying the role of genome evolution in the transition from C3 to C4 photosynthesis. Our analyses revealed that G. gynandra and its C3 relative Tarenaya hassleriana shared a whole-genome duplication event (Gg-α), then an addition of a third genome (Th-α, +1×) took place in T. hassleriana but not in G. gynandra. Analysis of syntenic copy number of C4 photosynthesis-related gene families indicates that G. gynandra generally retained more duplicated copies of these genes than C3T. hassleriana, and also that the G. gynandra C4 genes might have been under positive selection pressure. Both whole-genome and single-gene duplication were found to contribute to the expansion of the aforementioned gene families in G. gynandra. Collectively, this study enhances our understanding of the polyploidy history, gene duplication and retention, as well as their impact on the evolution of C4 photosynthesis in Cleomaceae.

Funder

Applied Research Fund of the Netherlands Organization for Science

Wageningen University

Schlumberger Foundation

Deutsche Forschungsgemeinschaft

German Research Foundation

CAPS

BBSRC

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science

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