Genome-wide association mapping identifies an SNF4 ortholog that impacts biomass and sugar yield in sorghum and sugarcane

Author:

Upadhyaya Hari D1ORCID,Wang Lihua2ORCID,Prakash Chudamani Sharma3ORCID,Liu Yanlong2ORCID,Gao Li2ORCID,Meng Ruirui2ORCID,Seetharam Kaliyamoorthy1ORCID,Gowda C L Laxmipathi1ORCID,Ganesamurthy Kulandaivelu4ORCID,Singh Shailesh Kumar1ORCID,Kumar Rajendra5ORCID,Li Jieqin2ORCID,Wang Yi-Hong3ORCID

Affiliation:

1. Gene Bank, International Crops Research Institute for the Semi-Arid Tropics (ICRISAT) , Patancheru 502 324, Andhra Pradesh , India

2. College of Agriculture, Anhui Science and Technology University , Fengyang, Anhui , China

3. Department of Biology, University of Louisiana at Lafayette , Lafayette, LA 70504 , USA

4. Tamil Nadu Agricultural University , Coimbatore 641 003 , India

5. Indian Agricultural Research Institute , New Delhi 110 012 , India

Abstract

Abstract Sorghum is a feed/industrial crop in developed countries and a staple food elsewhere in the world. This study evaluated the sorghum mini core collection for days to 50% flowering (DF), biomass, plant height (PH), soluble solid content (SSC), and juice weight (JW), and the sorghum reference set for DF and PH, in 7–12 testing environments. We also performed genome-wide association mapping with 6 094 317 and 265 500 single nucleotide polymorphism markers in the mini core collection and the reference set, respectively. In the mini core panel we identified three quantitative trait loci for DF, two for JW, one for PH, and one for biomass. In the reference set panel we identified another quantitative trait locus for PH on chromosome 6 that was also associated with biomass, DF, JW, and SSC in the mini core panel. Transgenic studies of three genes selected from the locus revealed that Sobic.006G061100 (SbSNF4-2) increased biomass, SSC, JW, and PH when overexpressed in both sorghum and sugarcane, and delayed flowering in transgenic sorghum. SbSNF4-2 encodes a γ subunit of the evolutionarily conserved AMPK/SNF1/SnRK1 heterotrimeric complexes. SbSNF4-2 and its orthologs will be valuable in genetic enhancement of biomass and sugar yield in plants.

Funder

National Natural Science Foundation of China

Anhui Provincial Natural Science Fund

Anhui Provincial Key R&D Programmes

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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