AI Article Synopsis

  • The research explored how applying spermine (Spm) helps two types of white clover cope with drought stress, looking at carbohydrate metabolism and dehydrin gene expression.
  • Spm reduced the negative impacts of drought by increasing water-soluble carbohydrates and sugars in both clover types, with a notable rise in glucose in the drought-resistant 'Haifa' variety only.
  • The study found that Spm affects key enzyme activities related to sugar metabolism and promotes the accumulation of dehydrins, with differences in gene expression timing between the drought-susceptible 'Ladino' and the drought-resistant 'Haifa' cultivars.

Article Abstract

The objective of this research was to analyse whether ameliorating drought stress through exogenously applied spermine (Spm) was related to carbohydrate metabolism, dehydrins accumulation and the transcription of genes encoding dehydrins in two white clovers (drought-susceptible cv. 'Ladino' and drought-resistant cv. 'Haifa') under controlled drying conditions for 10 days. The results show that the application of Spm effectively alleviates negative effects caused by drought stress in both cultivars. Exogenous Spm led to accumulation of more water-soluble carbohydrates (WSC), sucrose, fructose and sorbitol in both cultivars under drought stress, and also significantly elevated glucose content in leaves of drought-resistant cv. 'Haifa', but had no effect on drought-susceptible cv. 'Ladino'. Accordingly, the key enzyme activities of sucrose and sorbitol metabolism changed along with the application of Spm under drought stress. Spm induced a significant increase in sucrose phosphate synthase (SPS) or sorbitol dehydrogenase (SDH) activity, but decrease in sucrose synthetase (SS) activity when two cultivars were subjected to drought. In addition, the improved accumulation of dehydrins induced by exogenous Spm coincided with three genes expression which was responsible for dehydrins synthesis. But Spm-induced transcript level of dehydrin genes increased earlier in cv. 'Ladino' than that in cv. 'Haifa'. Thus, these results suggest that ameliorating drought stress through exogenously applied Spm may be associated with increased carbohydrate accumulation and dehydrins synthesis. There are differences between drought-susceptible and -resistant white clover cultivars related to Spm regulation of WSC metabolism and dehydrins expression.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4383584PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0120708PLOS

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