Compartmentation of photosynthesis gene expression in C4 maize depends on time of day

Author:

Borba Ana Rita123ORCID,Reyna-Llorens Ivan1ORCID,Dickinson Patrick J1ORCID,Steed Gareth1ORCID,Gouveia Paulo23ORCID,Górska Alicja M23ORCID,Gomes Celia23ORCID,Kromdijk Johannes1ORCID,Webb Alex A R1ORCID,Saibo Nelson J M23ORCID,Hibberd Julian M1ORCID

Affiliation:

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

2. Instituto de Tecnologia Química e Biológica António Xavier, Universidade Nova de Lisboa , Oeiras 2780-157 , Portugal

3. Instituto de Biologia Experimental e Tecnológica , Oeiras 2780-157 , Portugal

Abstract

Abstract Compared with the ancestral C3 state, C4 photosynthesis occurs at higher rates with improved water and nitrogen use efficiencies. In both C3 and C4 plants, rates of photosynthesis increase with light intensity and are maximal around midday. We determined that in the absence of light or temperature fluctuations, photosynthesis in maize (Zea mays) peaks in the middle of the subjective photoperiod. To investigate the molecular processes associated with these temporal changes, we performed RNA sequencing of maize mesophyll and bundle sheath strands over a 24-h time course. Preferential expression of C4 cycle genes in these cell types was strongest between 6 and 10 h after dawn when rates of photosynthesis were highest. For the bundle sheath, DNA motif enrichment and gene coexpression analyses suggested members of the DNA binding with one finger (DOF) and MADS (MINICHROMOSOME MAINTENANCE FACTOR 1/AGAMOUS/DEFICIENS/Serum Response Factor)-domain transcription factor families mediate diurnal fluctuations in C4 gene expression, while trans-activation assays in planta confirmed their ability to activate promoter fragments from bundle sheath expressed genes. The work thus identifies transcriptional regulators and peaks in cell-specific C4 gene expression coincident with maximum rates of photosynthesis in the maize leaf at midday.

Funder

European Union

Fundação para a Ciência e Tecnologia

POPH-QREN

ERACAPS

BBSRC

ERC

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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