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盐胁迫下马铃薯(L.)的生理学与基因表达分析

Physiology and Gene Expression Analysis of Potato ( L.) in Salt Stress.

作者信息

Li Qing, Qin Yuzhi, Hu Xinxi, Jin Liping, Li Guangcun, Gong Zhenping, Xiong Xingyao, Wang Wanxing

机构信息

Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Key Laboratory of Biology and Genetic Improvement of Root and Tuber Crops, Ministry of Agriculture, Beijing 100081, China.

College of Horticulture, Hunan Agricultural University, Engineering Research Center for Horticultural Crop Germplasm Creation and New Variety Breeding, Ministry of Education Changsha, Hunan Provincial Engineering Research Center for Potatoes, Southern Regional Collaborative Innovation Center for Grain and Oil Crops in China, Key Laboratory for Vegetable Biology of Hunan Province, Changsha 410128, China.

出版信息

Plants (Basel). 2022 Jun 14;11(12):1565. doi: 10.3390/plants11121565.

Abstract

The production of potato ( L.) faces a severe challenge due to the salinization of arable land worldwide. The cultivation of salt-tolerant potatoes is of great significance to ensure food security. In this study, two cultivars of 'Longshu 5' and 'Qingshu 9' were compared for physiological responses to salt stress, and then the salt tolerance of the two cultivars were assessed via principal component analysis. Furthermore, the Na, K, and Ca flux of the cultivars under salt stress was recorded. Finally, the expression levels of ion transport-related genes and transcription factors in salt-tolerant cultivars were explored under NaCl stress. The results showed that the seven physiological indicators of salt tolerance were differed between the cultivars. Interestingly, soluble protein and sugar were early responsive to salt stress than proline in the salt-tolerance cultivar. Peroxidase and superoxide dismutase activity were significantly different in 'Longshu 5' under NaCl stress and without being significantly different in 'Qingshu9'. In addition, the salt tolerance of 'Longshu 5' was more tolerant than 'Qingshu 9' based on principal component evaluation. Meanwhile, the strong efflux of Na, the stability of K, and the high absorption of Ca in 'Longshu 5' indicated salt adaption mechanisms in the salt-tolerant potato. In addition, we found that ion transport-related genes and transcription factors, such as , , , , and , played a role in the salt tolerance of 'Longshu 5'. In conclusion, the salt-tolerant potato can regulate physiological substances to adapt to salt stress, and ion transport related genes and transcription factors play a role in improving salt tolerance.

摘要

由于全球耕地盐碱化,马铃薯(L.)的生产面临严峻挑战。培育耐盐马铃薯对于确保粮食安全具有重要意义。本研究比较了‘陇薯5号’和‘青薯9号’两个品种对盐胁迫的生理响应,然后通过主成分分析评估了这两个品种的耐盐性。此外,记录了盐胁迫下各品种的钠、钾和钙通量。最后,在NaCl胁迫下探究了耐盐品种中离子转运相关基因和转录因子的表达水平。结果表明,两个品种间耐盐性的七个生理指标存在差异。有趣的是,在耐盐品种中,可溶性蛋白和糖对盐胁迫的响应比脯氨酸更早。在NaCl胁迫下,‘陇薯5号’的过氧化物酶和超氧化物歧化酶活性显著不同,而‘青薯9号’则无显著差异。此外,基于主成分评价,‘陇薯5号’的耐盐性比‘青薯9号’更强。同时,‘陇薯5号’中钠的强烈外流、钾的稳定性和钙的高吸收表明了耐盐马铃薯的盐适应机制。此外,我们发现离子转运相关基因和转录因子,如 、 、 、 和 ,在‘陇薯5号’的耐盐性中发挥了作用。总之,耐盐马铃薯可以调节生理物质以适应盐胁迫,离子转运相关基因和转录因子在提高耐盐性方面发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b354/9229698/958d838eb1e8/plants-11-01565-g001.jpg

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