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March 4, 2026Crops1 citationsOpen Access

Effects of Different Heading Dates on Agronomic and Yield-Related Traits Under Salt Stress in Rice

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SASadia AfrinSIS. ItoMAM M Emam Ahmed

Key Points

  • The research aims to investigate how different heading dates affect salt tolerance and yield traits in rice.
  • Utilized five near-isogenic lines developed from SL2038/Koshihikari backcross population.
  • Grew rice lines with or without imposed salt stress conditions.
  • Assessed traits like plant dry weight, panicle weight, and grain weight under varying heading dates.
  • Late-heading NILs showed significantly higher plant dry weight and grain weight under salt stress.
  • Koshihikari exhibited low white heads and better grain and panicle weights under salt treatment.
  • Sowing in June, associated with late heading, resulted in higher grain weights.

Abstract

Salinity is a major abiotic stress limiting rice production worldwide. This study aims to elucidate the effects of heading date on salt tolerance in rice. Five near-isogenic lines (NILs) developed from the SL2038/Koshihikari backcross population were grown with or without salt stress. SL2038 is a salt-tolerant line with delayed heading (~18 days) compared to the salt-sensitive background Koshihikari. The results showed that late-heading NILs produced significantly higher plant dry weight, panicle weight, percentage of filled grains, and grain weight (p < 0.05) under long-term salt stress. In Koshihikari, which exhibited delayed heading due to long-day treatment, the percentage of white heads was low, and panicle and grain weights were significantly higher under salt stress. Experiments with different sowing times indicated that late heading, such as sowing in June, resulted in higher grain weights. This is the first report to assess the impact of heading date on agronomic and yield-related traits under salt stress. In conclusion, even with a prolonged salt treatment period, heading during periods of low temperature and solar radiation results in higher grain weight under salt stress. This is proposed as one of the strategies for salt escape. These findings can be used to improve rice yield and implement crop management in salt-affected regions.

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Cite This Study

Afrin et al. (2026) studied this question.

synapsesocial.com/papers/69a7cd9dd48f933b5eeda1d3https://doi.org/10.3390/crops6020028
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