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Farquhar, G.

Publications and source records attributed to Farquhar, G..

2 recordsLinked to original sources

NDH complex-mediated cyclic electron flow in bundle sheath cells enables C4 photosynthesis

The superior productivity of C4 plants is achieved via a metabolic C4 cycle which acts as a CO2 pump across mesophyll and bundle sheath (BS) cells and requires an additional input of energy in the form of ATP. Chloroplast NADH dehydrogenase-like complex (NDH) increases ATP production in C3 plants by operating cyclic electron flow (CEF) around Photosystem I (PSI), and its importance for C4 photosynthesis has been proposed from evolutionary and reverse genetics studies. We used the gene-edited C4 species Setaria viridis with null ndhO alleles lacking NDH to study a contribution of the complex to the cell-level electron transport. Our results indicate that NDH is the primary PSI electron acceptor mediating the majority of CEF in BS cells whilst the contribution of the complex to CEF in mesophyll cells is minimal. Moreover, the reduced leaf CO2 assimilation rate and growth of plants lacking the complex cannot be rescued by supplying additional CO2, indicating that NDH is essential for generating ATP required for CO2 fixation by the C3 cycle. Hereby we resolve a cell-level mechanism for the contribution of NDH to supporting high CO2 assimilation rates in C4 photosynthesis.

plant biology↗

Multi-environment QTL analysis delineates a major locus associated with homoeologous exchanges for water-use efficiency and seed yield in allopolyploid Brassica napus

O_LICanola varieties exhibit discernible variation in drought avoidance and drought escape traits, suggesting its adaptation to water-deficit environments. However, the underlying mechanisms are poorly understood. C_LIO_LIA doubled haploid (DH) population was analysed to identify QTL associated with water use efficiency (WUE) related traits. Based on the resequenced parental genome data, we developed sequence-capture based markers for fine mapping. mRNA-Seq was performed to determine the expression of candidate genes underlying QTL for carbon isotope discrimination ({Delta}13C). C_LIO_LIQTL contributing to main and QTL x Environment interaction effects for {Delta}13C and for agronomic WUE were identified. One multi-trait QTL for {Delta}13C, days to flower, plant height and seed yield was identified on chromosome A09, in the vicinity of ERECTA. Interestingly, this QTL region was overlapped with a homoeologous exchange event (HE), suggesting its association with the major QTL. Transcriptome analysis revealed several differentially expressed genes between parental lines, including in HE regions. C_LIO_LIThis study provides insights into the complexity of WUE related genes in the context of canola adaptation to water-deficit conditions. Our results suggest that alleles for high {Delta}13C contribute positively to canola yield. Genetic and genomic resources developed herein could be utilised to make genetic gains for improving canola WUE. C_LI

plant biology↗