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Barley genotype expressing “stay-green”-like characteristics maintains starch quality of the grain during water stress condition
Authors:Peter W Gous  Jovin Hasjim  Jerome Franckowiak  Glen P Fox  Robert G Gilbert
Institution:1. Tongji School of Pharmacy, Huazhong University of Science and Technology, Wuhan, Hubei 430030, China;2. The University of Queensland, Centre for Nutrition and Food Sciences, Queensland Alliance for Agriculture and Food Sciences, Brisbane, QLD 4072, Australia;3. Queensland Department of Agricultural, Fisheries and Forestry, Hermitage Research Facility, Warwick, QLD 4370, Australia
Abstract:The identification of “stay-green” in sorghum and its positive correlation with yield increases has encouraged attempts to incorporate “stay-green”-like traits into the genomes of other commercially important cereal crops. However, knowledge on the effects of “stay-green” expression on grain quality under extreme physiological stress is limited. This study examines impacts of “stay-green”-like expression on starch biosynthesis in barley (Hordeum vulgare L.) grain under mild, severe, and acute water stress conditions induced at anthesis. The proportions of long amylopectin branches and amylose branches in the grain of Flagship (a cultivar without “stay-green”-like characteristics) were higher at low water stress, suggesting that water stress affects starch biosynthesis in grain, probably due to early termination of grain fill. The changes in long branches can affect starch properties, such as the rates of enzymatic degradation, and hence its nutritional value. By contrast, grain from the “stay-green”-like cultivar (ND24260) did not show variation in starch molecular structure under the different water stress levels. The results indicate that the cultivar with “stay-green”-like traits has a greater potential to maintain starch biosynthesis and quality in grain during drought conditions, making the “stay-green”-like traits potentially useful in ensuring food security.
Keywords:Barley  Water stress  Starch structure  Molecular structural characterisation
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