Jiao Wangquan, Song Bingmei, Pan Hongsheng, Liu Xiaoning
Xinjiang Key Laboratory of Biological Resources and Genetic Engineering, College of Life Science and Technology, Xinjiang University, Urumqi 830046, China.
National Plant Protection Scientific Observation and Experiment Station of Korla, Institute of Plant Protection, Xinjiang Academy of Agricultural Sciences, Urumqi 830091, China.
Insects. 2024 Sep 18;15(9):713. doi: 10.3390/insects15090713.
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.
全球土壤盐渍化程度正在逐渐加深,这将不可避免地影响农业生态。研究发现,盐胁迫会诱导宿主植物对植食性害虫产生抗性。然而,关于盐胁迫下的棉花植株对棉蚜(格洛弗)适合度的影响,人们知之甚少。在本研究中,我们调查了轻度(75 mM NaCl)和中度(150 mM NaCl)盐度条件下棉花代谢组的差异及其对棉蚜适合度的影响。结果表明,随着NaCl浓度的增加,49种代谢物显著上调,而86种代谢物下调。与对照(0 mM NaCl,4.10天)相比,150 mM NaCl条件下若蚜的持续时间显著延长至6.31天。同时,在75和150 mM NaCl条件下,成年蚜虫的寿命显著缩短,平均从10.38天(0 mM NaCl)分别降至8.55天和4.89天。此外,单头雌蚜的总繁殖数从31.31(0 mM NaCl)降至21.13(75 mM NaCl)和10.75(150 mM NaCl),而在第12天,蚜虫的存活率从81.25%(0 mM NaCl)降至56.25%(75 mM NaCl)和34.38%(150 mM NaCl)。这些结果支持了以下假设:在盐胁迫下生长的植物对食草动物的防御能力更强。此外,发现49种差异代谢物与成年蚜虫的寿命和繁殖力呈负相关,而86种不同的代谢物则呈现相反的趋势。这些结果为次生盐渍化问题不断升级背景下棉蚜的发生与防治提供了见解。