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Cross-tolerance is associated with temperature and salinity stress during germination of barley seeds

机译:大麦种子萌发过程中交叉耐性与温度和盐分胁迫有关

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Effects of temperature and salinity on germination of barley (Hordeum vulgare L. 'Pijiu') seed, and cross tolerance between temperature and salinity during seed germination were studied. The optimum temperatures for germination were 5~20 deg C, and for germination rate were 15-20 deg C, and for seedling growth were 25 deg C. Germination of seeds at 35 and 40 deg C was 5% and 0%, respectively. Concentrations of NaCl >100 mM inhibited seed germination and seedling growth, and the sensitivity of shoot growth to salinity stress was greater than that of the radicle. Compared to germination at 35 deg C, that of seeds pre-treated at 0 deg C for 3 days increased by 95%, and dry weight of radicle and shoot increased by 38 and 61%, respectively. After pre-treatment at 5 or 30 deg C, the seeds were transferrd to 35 deg C to germinate continuously. Germination and seedling growth of seeds pre-treated at 5 and 30 deg C for different time also increased when they were at 35 deg C, but these increases of seeds pre-treated at 0 or 5 deg C were much greater than those of seeds pre-treated at 30 deg C. Barley seeds pre-treated at 0 deg C for 3 days had increased tolerance to 200 and 400 mM NaCl stress, and those pre-treated with 100-400 mM NaCl for 12 or 24 h had markedly increased tolerance to high-temperature (35 deg C). These results provide a new concept for seed germination under stress environments. Pre-treatment at low temperature to increase tolerance to subsequent high temperature stress during germination will become an excellent model system for the study of cross tolerance.
机译:研究了温度和盐度对大麦种子发芽的影响以及种子发芽过程中温度和盐分的交叉耐受性。最佳发芽温度为5〜20℃,发芽率为15-20℃,幼苗生长为25℃。种子在35和40℃的发芽率分别为5%和0%。 NaCl浓度> 100 mM会抑制种子发芽和幼苗生长,并且枝条生长对盐胁迫的敏感性大于胚根。与35℃下的发芽相比,在0℃下预处理3天的种子的发芽量增加了95%,而胚根和苗的干重分别增加了38%和61%。在5或30摄氏度下进行预处理后,将种子转移到35摄氏度下连续发芽。在35℃时,在5和30℃下不同时间预处理的种子的发芽和幼苗生长也增加,但是在0或5℃下预处理的种子的这些增长远大于在5℃和30℃下预处理的种子。 -在30摄氏度下进行处理。在0摄氏度下预处理3天的大麦种子对200和400 mM NaCl胁迫的耐受性增强,而用100-400 mM NaCl预处理12或24 h的种子具有明显的耐受性到高温(35摄氏度)。这些结果为胁迫环境下的种子萌发提供了新的思路。在低温下进行预处理以提高对发芽期间随后高温胁迫的耐受性,将成为研究交叉耐受性的出色模型系统。

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