Plant Soil Environ., X:X

The effects of post-anthesis shading on starch granule size distribution and viscosity parameters in waxy and non-waxy soft wheatOriginal Paper

Jing Li1, Tingting Yang1, Ruilian Zhang1, Yang Liu1, Abdul Rehman1, Xiaomin Shang1, Suhui Yan1, Wenyang Li1
1 Anhui Science and Technology University, Chuzhou, Anhui, P.R. China

To clarify the effects of post-anthesis low light on grain yield and starch quality of waxy and non-waxy soft wheat, a field experiment was conducted from 2023 to 2025. Two wheat cultivars, Jinuo 2 (waxy soft wheat) and Quanmai 725 (non-waxy soft wheat), were employed as test materials, and four shading treatments (no shading, 10% shading, 20% shading, and 30% shading) were applied after anthesis. The regulatory effects of different shading intensities on wheat yield, grain quality, starch granule size distribution and starch viscosity properties were systematically analysed. The results showed that post-anthesis low light stress significantly reduced the grain number per spike, 1 000-grain weight and grain yield, while increasing the protein content, wet gluten content and sedimentation value of wheat grains. Under low light stress, the volume and surface area proportions of A-type starch granules increased, while those of B-type starch granules decreased. Under the same shading condition, Jinuo 2 exhibited a higher proportion of B-type starch granules and a lower proportion of A-type starch granules than Quanmai 725. With increasing shading intensity, the peak, trough and final viscosities, as well as the breakdown and setback values, of grain starch decreased continuously, and all viscosity parameters of Quanmai 725 were significantly higher than those of Jinuo 2. Furthermore, post-anthesis low light reduced the onset, peak and conclusion gelatinisation temperatures and increased gelatinisation enthalpy. Quanmai 725 had higher gelatinisation temperatures, whereas Jinuo 2 possessed higher gelatinisation enthalpy. Correlation analysis indicated that the volume distribution of B-type starch granules (≤ 10 μm) was significantly positively correlated with starch viscosity parameters, while A-type starch granules (> 10 μm) showed a significant negative correlation. In conclusion, post-anthesis low light reduces the yield and the proportion of B-type starch granules, increases the proportion of A-type starch granules, decreases starch pasting viscosity and elevates gelatinisation enthalpy in both soft wheat cultivars. Compared with Quanmai 725, Jinuo 2 is more sensitive to post-anthesis low light stress in terms of starch granule distribution characteristics.

Keywords: brewing wheat; photosynthesis; sunshine; climate change; stress-resistant cultivation; thermal properties

Received: May 7, 2026; Revised: July 7, 2026; Accepted: July 13, 2026; Prepublished online: July 22, 2026 

Download citation

References

  1. Cai Y.J., Yang K.J., Gao K., Hao L., Li X.R., Han X.C., Zhou X.Y., Wang D.P. (2021): Comparative study on starch granule size of different wheat varieties. Shandong Agricultural Sciences, 53: 46-50.
  2. Cai R.G. (2008): Starch components, quality characteristics of wheat grains and their response to light. Shandong, Shandong Agricultural University.
  3. Chen J., Yang T.T., Yan S.H., Yong Y.D., Zhang S.Y., Li W.Y. (2024a): Effects of waterlogging at jointing stage on starch granule size distribution and pasting properties of soft wheat. Acta Agronomica Sinica, 50: 1877-1884. Go to original source...
  4. Chen J., Yuan Y.N., Zhang P.W., Yan S.H., Zhu S.J., Li W.Y. (2024b): Effects of weak light after anthesis on starch granule size distribution and pasting properties of weak-gluten wheat. Journal of Triticeae Crops, 44: 385-391.
  5. Chen M., Wu T.F., Wang X.J., Zheng X.L. (2023): Study on characteristics of wheat granular flour and steamed bread quality. Food and Fermentation Industries, 49: 168-173.
  6. Cui W.L., Wang J., Wang H., Yao D.N., Song H., Zheng W.Y. (2020): Analysis of several quality traits between waxy wheat and non-waxy wheat. Hubei Agricultural Sciences, 59: 118-121.
  7. Han Z.C. (2021): Statistical analysis of characteristic quantities of meiyu processes in the Yangtze-Huaihe river region of Anhui province. Anhui Agricultural Science Bulletin, 27: 145-147.
  8. Li H.J., Zhang S.Y., Yong Y.D., Zhou W.Y., Li W.Y., Yan S.H. (2024): Effects of nitrogen application rate on starch granule distribution and pasting properties of strong and weak grains of soft wheat. Chinese Journal of Ecology, 43: 1065-1073.
  9. Li W.Y., Yan S.H., Wang Z.L. (2016): Formation and growth characteristics of A- and B-type starch granules in wheat endosperm and regulation by nitrogen. Journal of the Chinese Cereals and Oils Association, 31: 22-26.
  10. Li W.Y., Yan S.H., Yin Y.P., Li Y., Liang T.B., Geng Q.H., Dang Z.M., Wang Z.L. (2009): Changes in starch granule size distribution and component content of wheat grains caused by weak light after anthesis. Acta Ecologica Sinica, 29: 298-306.
  11. Li Y., Cheng J.B., Zhang Z.P., Wu Y.P., Feng G.L. (2021): Phased characteristics and cause analysis of abnormal meiyu in the Yangtze-Huaihe river region in 2020. Journal of Yangzhou University (Natural Science Edition), 24: 11-18, 31.
  12. Liang Y., Wang X.D., Zhen S.H., Li R., Zhang F.Q. (2024): Analysis of main agronomic and quality traits of waxy wheat varieties in China. Journal of Triticeae Crops, 44: 423-431.
  13. Liu J., Wen L., Zhang X.X., Li M., Liu D.T., Shou L.L., Jiang W., Zhang X. (2023): Study on starch structural characteristics and physicochemical quality of waxy wheat. Journal of Nuclear Agricultural Sciences, 37: 2019-2027.
  14. Liu X.W., Zhang M., Yao F.J., Gao X.J., Cai R.G. (2015): Effects of different shading intensities after anthesis on dry matter accumula-tion and yield of waxy and non-waxy wheat. Journal of Triticeae Crops, 35: 521-527.
  15. Liu X.W., Zhang M., Zhang Y.C., Yang M., Song X.J., Cai R.G. (2017): Effects of shading during grain filling stage on starch components and physicochemical properties of waxy and non-waxy wheat. Scientia Agricultura Sinica, 50: 1582-1593.
  16. Lu H.F. (2013): Effects of high temperature, drought and their combined stress on glutenin macropolymer, starch granule size distribution and quality traits of wheat grains. Henan, Henan Agricultural University.
  17. Luo L.S., Wu R., Deng H.Q., He D.Y. (2023): Relationship between persistent spring rain in Anhui province and different types of El Niño/La Niña decaying years. Torrential Rain and Disasters, 42: 170-178.
  18. Park S.H., Wilson J.D., Seabourn B.W. (2009): Starch granule size distribution of hard red winter and hard red spring wheat: its effects on mixing and breadmaking quality. Journal of Cereal Science, 49: 98-105. Go to original source...
  19. Primo M.C., Nieuwenhuijzen N.H., Hamer R.J., Vliet T. (2007): Crystallinity changes in wheat starch during the bread-making process: starch crystallinity in the bread crust. Journal of Cereal Science, 45: 219-226. Go to original source...
  20. Rahman S., Kosar-Hashemi B., Samuel M., Hill A., Abbott D.C., Skerritt J.H., Preiss J., Appels R., Morell M.K. (1995): The major proteins of wheat endosperm starch granules. Australian Journal of Plant Physiology, 22: 793-803. Go to original source...
  21. Šebečić B.L. (1995a): Wheat flour starch granule-size distribution and rheological properties of dough: I. granulometric analysis of starch. Nahrung, 39: 106-116. Go to original source...
  22. Šebečić B.L., Šebečić B. (1995b): Wheat flour starch granule-size distribution and rheological properties of dough: II. extensographic measurements. Nahrung, 39: 117-123. Go to original source...
  23. Shang B.H., Sun R., Jiang W.C., He H.T., Pei X.X., Dang J.Y. (2023): Quality evaluation and classification of waxy wheat based on principal component analysis. Food Science, 44: 322-329.
  24. Singh N., Singh J., Kaur L., Sodhi N.S., Gill B.S. (2003): Morphological, thermal and rheological properties of starches from different botanical sources. Food Chemistry, 81: 219-231. Go to original source...
  25. Soh H.N., Sissons M.J., Turner M.A. (2006): Effect of starch granule size distribution and elevated amylose content on durum dough rheology and spaghetti cooking quality. Cereal Chemistry, 83: 513-519. Go to original source...
  26. Wang B., Gu Y.Q., Liu X., Luo H.W., Dai J.F., Zhang W., Qi C.J. (2012): Spatiotemporal evolution characteristics of light and heat resources and their ratio in winter wheat planting areas of China. Scientia Agricultura Sinica, 45: 228-238.
  27. Wen L., Zhang X., Zhang X.X., Liu J., Wu R.L., Li M., Li D.S., Gao D.R., Cheng S.H. (2021): Quality and baked products of different waxy wheat varieties (lines). Journal of Triticeae Crops, 41: 553-560.
  28. Wu C.Q., Liu Y.Z., Jia R., Shao T.B., Wang B. (2019): Response of meiyu period climate in Yangtze-Huaihe River Basin to global warming. Acta Meteorologica Sinica, 77: 84-99.
  29. Wu P.J., Yan S.H., Shao Q.Q., Xu F., Zhang C.Y., Li W.Y. (2020): Effects of nitrogen application rate on grain quality formation of weak-gluten wheat. Journal of Triticeae Crops, 40: 1232-1238.
  30. Yan H.L., Lu Q.Y., Li C.C. (2019): Research progress on effects of wheat starch structure, composition and modification on its physicochemical properties and noodle quality. Science and Technology of Food Industry, 40: 307-313.
  31. Yang J.H., Tang L.J., Chen Y.X., Zhang H., Wang Q., Yang Y.J., Tang P. (2019): Effects of weak light on yield traits and quality characteristics of wheat. Southwest China Journal of Agricultural Sciences, 32: 291-295.
  32. Yang T.T., Chen J., Rehman A., Li J., Yan S.H., Wang J.L., Li W.Y. (2024): Effects of weak light after anthesis on grain yield and starch quality of soft wheat. Journal of Triticeae Crops, 44: 1431-1438.
  33. Yong Y.D., Li W.Y., Zhang P.W., Li H.J., Zhang S.Y., Zhou W.Y., Yan S.H. (2024): Effects of late sowing on starch granule size distribution and viscosity parameters of wheat in the Yangtze-Huaihe river basin. Jiangsu Agricultural Sciences, 52: 100-105.
  34. Yu S.F., Ma Y., Menager L., Sun D.W. (2012): Physicochemical properties of starch and flour from different rice cultivars. Food Bio-process Technol, 5: 626-637. Go to original source...
  35. Yuan J.X., Li W.Y., Li R., Tan Z., Wei P., Yuan Y.N., Yan S.H. (2020): Effects of shading during grain filling stage on endosperm starch granule size distribution and pasting properties of wheat. Journal of Triticeae Crops, 40: 220-226.
  36. Zhou C.X., Yang E.M., Jia H., Li H.J. (2022): Quality characteristics and application of waxy wheat. Cereals and Oils, 35: 89.
  37. Zhou W.Y., Li W.Y., Li H.J., Zhang S.Y., Yong Y.D., Liu Y., Xiao L.F., Zheng C.Y., Yan S.H. (2025): Effects of topdressing nitrogen rate and planting density on quality and yield of weak-gluten wheat. Journal of Triticeae Crops, 45: 492-501.

This is an open access article distributed under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0), which permits use, distribution, and reproduction in any medium, provided the original publication is properly cited. No use, distribution or reproduction is permitted which does not comply with these terms.