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Germination Responses of Ryegrass (Annual vs. Perennial) Seed to the Interactive Effects of Temperature and Salt-Alkali Stress

机译:黑麦草(一年生与多年生)种子对温度和盐碱胁迫相互作用的萌发响应

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摘要

Ryegrass is considered a useful grass species for forage production and turf purposes. Annual ryegrass (Lolium multiflorum Lam.) and perennial ryegrass (Lolium perenne L.)are two species of ryegrass with similar genomes. So far, little information exists concerning their physiological response to salt-alkali stress during germination stage, especially under different temperature regimes. Seeds of ryegrass were germinated at four alternating temperatures (10–20, 15–25, 20–30, and 25–35°C) with salinity (NaCl) and alkalinity (Na2CO3, high pH) stresses. Results showed that optimal germination for both species under stress conditions occurred at higher temperatures (20–30°C for annual ryegrass; 20–30°C and 25–35°C for perennial ryegrass). Germination percentage and germination rate were both inhibited by increasing salinity or alkalinity, particularly higher alkalinities under any temperature. The inhibitory effects of the high salinity on germination were greater at 10–20°C for both species. However, seeds were subjected to more stress at 25–35°C under alkali stress even though the concentration was very low. In addition, both high and low temperatures lead to a markedly decrease in seed germination under alkali stress for perennial ryegrass. Recovery percentage of both species were highest at 400 mM salinity and 25 mM alkalinity under any temperature, especially 10–20°C, and 25–35°C also resulted in lower recovery percentages under both stresses for ryegrass. Moreover, annual ryegrass had a much higher recovery percentage than perennial ryegrass under such stress conditions. These results suggest that salinity stress and alkalinity stress are greatly different, and the salt-alkaline tolerance of ryegrass seeds is greatly affected by the interactions of temperature and salinity–alkalinity.
机译:黑麦草被认为是用于牧草生产和草皮目的的有用草种。一年生黑麦草(Lolium multiflorum Lam。)和多年生黑麦草(Lolium perenne L.)是两个具有相似基因组的黑麦草。迄今为止,关于它们在萌发阶段对盐碱胁迫的生理反应的信息很少,特别是在不同温度条件下。黑麦草种子在四个交替的温度(10–20、15–25、20–30和25–35°C)下发芽,盐度(NaCl)和碱度(Na2CO3,高pH)会发芽。结果表明,两种植物在胁迫条件下的最佳萌发都发生在较高的温度下(一年生黑麦草为20–30°C;多年生黑麦草为20–30°C和25–35°C)。盐度或碱度,特别是在任何温度下较高的碱度,均会抑制发芽率和发芽率。两种盐在10–20°C时高盐度对发芽的抑制作用更大。但是,即使浓度很低,种子在25-35°C的碱性胁迫下也会承受更大的压力。另外,多年生黑麦草在碱胁迫下,高温和低温都会导致种子发芽的明显减少。在任何温度下,特别是在10–20°C和25–35°C的温度下,两个物种的回收率最高,分别为400 mM的盐度和25 mM的碱度,这也导致黑麦草在两种胁迫下的回收率均较低。而且,在这种胁迫条件下,一年生黑麦草的恢复百分率比多年生黑麦草的高得多。这些结果表明,盐度胁迫和碱度胁迫有很大的不同,而黑麦草种子的盐碱耐受性受温度和盐碱度相互作用的影响很大。

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