AI Article Synopsis

  • Low light and far-red light (FR) exposure inhibit rice seed germination by reducing gibberellin (GA) levels, which are essential for growth.
  • Differential gene expression analysis reveals that genes responsible for GA breakdown are upregulated, while those promoting GA synthesis are downregulated, contributing to GA deficiency.
  • This deficiency also leads to decreased amylase activity, which hampers carbohydrate solubilization, ultimately reducing germination efficiency under low light conditions.

Article Abstract

Unlabelled: Seed germination plays cardinal roles in seedling establishment and their successive growth. However, seed germination is retarded by far-red (FR) enrichment under low light stress, and the inhibitory signalling mechanism remains ambiguous. Our results indicated that low light treatment, both in the open and growth chamber conditions, inhibits rice seed germination by decreasing the gibberellin (GA) contents. To explore the mechanism of GA-deficiency under low light stress, differential expression profiling of GA-anabolic, -catabolic, ABA -anabolic, -catabolic, and was investigated, revealing that expression of ABA- anabolic, GA-catabolic genes and was upregulated with a simultaneous downregulation of ABA-catabolic and GA-anabolic genes under low light treatment. These results suggested that FR-induced GA inadequacy is resulted by upregulation of and GA-catabolism genes consequently increase DELLA that further subsided GA-responses in the germinating rice seeds. Moreover, we provided evidence that FR-induced GA inadequacy demotes rice seed germination by decreasing amylase activity, eventually decreasing the carbohydrate solubilization in the germinating seeds. Finally, we suggest that under low light stress, due to a retarded conversion of phytochrome A to their bioactive form, the ABA-catabolic genes were eventually upregulated with a simultaneous downregulation of GA-anabolic genes. Consequently, a lower GA pool fails to leverage the GA-dependent DELLA degradation, further shutting down the expected GA responses that reduce germination efficiency under FR-enriched light.

Supplementary Information: The online version contains supplementary material available at 10.1007/s12298-022-01167-7.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8986944PMC
http://dx.doi.org/10.1007/s12298-022-01167-7DOI Listing

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