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Stress tolerance of Xerocomus badius and its promotion effect on seed germination and seedling growth of annual ryegrass under salt and drought stresses

机译:<斜视> Xerocomus Badiuss 对盐水和干旱胁迫下系马里格拉斯种子萌发和幼苗生长的胁迫耐受性

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Comparative evaluations were conducted to assess the effects of different pH levels, NaCl-induced salt stress, and PEG-induced drought stress on the mycelial growth of Xerocomus badius . The results showed that X. badius mycelium grew well at a wide pH range of 5.00?~?9.00. Although the mycelium remained viable, mycelial growth of X. badius was significantly inhibited with increasing salt and drought stresses. Furthermore, a soilless experiment in Petri dishes was performed to investigate the potential of X. badius to induce beneficial effects on seed germination and seedling growth of annual ryegrass ( Lolium multiflorum Lam.) under salt and drought stresses. Seed priming with X. badius enhanced the seedling growth of L. multiflorum Lam. under NaCl-induced salt stress and PEG-induced drought stress. However, X. badius did not significantly improve the seed germination under non-stress and mild stress conditions. It suggested that X. badius inoculation with seeds was not essential for seed germination under non-stress and mild stress conditions, but contributed highly to seedling growth under severe stress conditions. Therefore, seed priming with X. badius on ryegrass could be an effective approach to enhance plant tolerance against drought and salt stresses. X. badius could be a good candidate for the inoculation of ectomycorrhizal plants cultivation programs in mild saline and semiarid areas.
机译:进行比较评估以评估不同pH水平,NaCl诱导的盐胁迫和PEG诱导的干旱胁迫对Xerocomus Badius的菌丝生长的影响。结果表明,X. Badius Mycelium在5.00的宽pH范围内更好地增长?〜9.00。虽然菌丝体保持活力,但X. Badius的菌丝体生长受到增加的盐和干旱胁迫。此外,进行培养皿中的无土实验,以研究X. Badius的潜力对盐和干旱胁迫下的每年黑麦草(Lolium Multflorum Lam。)的种子萌发和幼苗生长。 X. Badius的种子引发增强了L. multiflorum Lam的幼苗生长。在NaCl诱导的盐胁迫和PEG诱导的干旱胁迫下。然而,X. Badius没有显着改善在非应激和轻度胁迫条件下的种子萌发。它表明X. Badius与种子接种对非应激和轻度胁迫条件下的种子萌发不是必需的,但在严重的应激条件下促进幼苗生长。因此,用X. Badius on Ryegrass的种子引发可能是增强植物耐受抗旱和盐胁迫的有效方法。 X. Badius可能是在轻度盐水和半干旱地区接种植入植物栽培计划的良好候选者。

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