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Biology subjects

Mogg, S. L.

Publications and source records attributed to Mogg, S. L..

2 recordsLinked to original sources

Rapid reprogramming and stabilisation of homoeolog expression bias in hexaploid wheat biparental populations

O_LIDifferences in the relative level of expression of homoeologs, known as homoeolog expression bias (HEB), are widely observed in allopolyploids. While the evolution of homoeolog expression bias through hybridisation has been characterised, on shorter timescales the extent to which homoeolog expression bias is preserved or altered between generations remains elusive. C_LIO_LIHere we use biparental mapping populations of hexaploid wheat (Triticum aestivum) with a common Paragon parent to explore the inheritance of homoeolog expression bias in the F5 generation. C_LIO_LIWe found that homoeolog expression bias is inherited for 26-27% of triads in both populations. Most triads ([~]70%) conserved a similar homoeolog expression bias pattern as one or both parents. Inherited patterns were largely driven by changes in the expression of one homoeolog, allowing homoeolog expression bias in subsequent generations to match parental expression. Novel patterns of homoeolog expression bias occurred more frequently in the biparental population from a landrace x elite cross, than in the population with two elite parents. C_LIO_LIThese results demonstrate that there is significant reprogramming and stabilisation of homoeolog expression bias within a small number of generations that differs significantly based on the parental lines used in the crossing. C_LI

plant biology↗

Wheat NAC transcription factor NAC5-1 is a positive regulator of senescence

Wheat (Triticum aestivum L.) is an important source of both calories and protein in global diets, but there is a trade-off between grain yield and protein content. The timing of leaf senescence could mediate this trade-off as it is associated with both decline in photosynthesis and nitrogen remobilisation from leaves to grain. NAC transcription factors play key roles in regulating senescence timing. In rice, OsNAC5 expression is correlated with earlier senescence, but the role of the wheat ortholog in senescence had not been characterised. We verified that NAC5-1 is the ortholog of OsNAC5 and that it is expressed in senescing flag leaves in wheat. To characterise NAC5-1, we combined missense mutations in NAC5-A1 and NAC5-B1 from a TILLING mutant population and overexpressed NAC5-A1 in wheat. Mutation in NAC5-1 was associated with delayed onset of flag leaf senescence, while overexpression of NAC5-A1 was associated with slightly earlier onset of leaf senescence. DAP-seq was performed to locate transcription factor binding sites of NAC5-1. Analysis of DAP-seq and comparison with other studies identified putative downstream target genes of NAC5-1 which could be associated with senescence. This work showed that NAC5-1 is a positive transcriptional regulator of leaf senescence in wheat. Further research is needed to test the effect of NAC5-1 on yield and protein content in field trials, to assess the potential to exploit this senescence regulator to develop high-yielding wheat while maintaining grain protein content.

plant biology↗