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Influences of Salt Stress on Cotton Metabolism and Its Consequential Effects on the Development and Fecundity of Glover. | LitMetric

Influences of Salt Stress on Cotton Metabolism and Its Consequential Effects on the Development and Fecundity of Glover.

Insects

Xinjiang Key Laboratory of Biological Resources and Genetic Engineering, College of Life Science and Technology, Xinjiang University, Urumqi 830046, China.

Published: September 2024

AI Article Synopsis

  • Global soil salinization is increasing, impacting agricultural ecosystems and plant resistance to pests.
  • This study focused on how salt-stressed cotton plants affect cotton aphids' fitness by analyzing metabolome changes at different salinity levels (75 mM and 150 mM NaCl).
  • Findings revealed that while some metabolites were negatively correlated with aphid longevity and reproduction, 49 metabolites were upregulated, indicating that salt stress in plants enhances their defense against herbivory, thus offering potential strategies for managing aphid populations.

Article Abstract

The degree of global soil salinization is gradually deepening, which will inevitably affect agricultural ecology. It has been found that salt stress induces the resistance of host plants to phytophagous pests. However, little is known about the effects of salt-stressed cotton plants on the fitness of cotton aphids ( Glover). In this study, we investigated the differences between cotton metabolomes under mild (75 mM NaCl) and moderate (150 mM NaCl) salinity conditions and their effects on the fitness of cotton aphids. The results showed that 49 metabolites exhibited significant upregulation, while 86 metabolites were downregulated, with the increasing NaCl concentration. The duration of nymphal aphids under 150 mM NaCl significantly extended to 6.31 days when compared with the control (0 mM NaCl, 4.10 days). Meanwhile, the longevity of adult aphids decreased significantly under 75 and 150 mM NaCl, with an average of 10.38 days (0 mM NaCl) reduced to 8.55 and 4.89 days, respectively. Additionally, the total reproduction number of single females decreased from 31.31 (0 mM NaCl) to 21.13 (75 mM NaCl) and 10.75 (150 mM NaCl), whereas the survival rate of aphids decreased from 81.25% (0 mM NaCl) to 56.25% (75 mM NaCl) and 34.38% (150 mM NaCl) on the 12th day. These results support the hypothesis that plants growing under salt stress are better defended against herbivores. Furthermore, 49 differential metabolites were found to be negatively correlated with the longevity and fecundity of adult aphids, while 86 different metabolites showed the opposite trend. These results provide insights into the occurrence and control of cotton aphids amidst the escalating issue of secondary salinization.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11432358PMC
http://dx.doi.org/10.3390/insects15090713DOI Listing

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