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首页> 外文期刊>Turkish Journal of Agriculture & Forestry >Effects of Salt and Drought Stresses on Germination and Seedling Growth of Pea (Pisum sativum L.)
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Effects of Salt and Drought Stresses on Germination and Seedling Growth of Pea (Pisum sativum L.)

机译:盐和干旱胁迫对豌豆(Pisum sativum L.)发芽和幼苗生长的影响

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摘要

The effects of salt and drought stresses at the water potentials of -2, -4, -6 and -8 bars induced by NaCl and PEG 6000 (polyethylene glycol 6000) each, on germination and early seedling growth, were investigated for 3 pea cultivars (Bolero, Sprinter and Utrillo). Electrical conductivity (EC) values of the NaCl solutions were 4.5, 8.8, 12.7 and 16.3 dS m-1. Germination percentage, mean germination time, root and shoot length, and seedling fresh and dry weight were measured in the study. The objective was to determine genotypic differences among pea cultivars in terms of salt and drought stress and to determine factors (salt toxicity or osmotic stress due to PEG) inhibiting seed germination. The germination results revealed that the genotypes significantly differed for salt and drought stress. Bolero appeared to be more tolerant to salt stress, but Sprinter cv. gave higher values under drought stress. Both NaCl and PEG inhibited germination and seedling growth in all cultivars, but the effects of NaCl compared to PEG were less on germination and seedling growth. All cultivars were able to germinate at all NaCl levels without a significant decrease in germination, while a drastic decrease in germination was recorded at -6 bars of PEG. It was concluded that inhibition in germination at equivalent water potentials of NaCl and PEG was mainly due to an osmotic effect rather than salt toxicity.
机译:研究了盐胁迫和干旱胁迫对NaCl和PEG 6000(聚乙二醇6000)分别诱导的-2,-4,-6和-8 bar水势对萌芽和幼苗早期生长的影响。 (Bolero,Sprinter和Utrillo)。 NaCl溶液的电导率(EC)值为4.5、8.8、12.7和16.3 dS m-1。在研究中测量发芽率,平均发芽时间,根和茎长以及幼苗的鲜重和干重。目的是确定豌豆品种之间在盐和干旱胁迫方面的基因型差异,并确定抑制种子萌发的因素(盐毒性或PEG引起的渗透胁迫)。发芽结果表明,盐和干旱胁迫的基因型差异很大。 Bolero似乎更耐盐胁迫,但Sprinter简历。在干旱胁迫下具有更高的价值。 NaCl和PEG均可抑制所有品种的发芽和幼苗生长,但与PEG相比,NaCl对发芽和幼苗生长的影响较小。所有品种都能在所有NaCl水平下发芽而发芽没有明显减少,而在-6 bar的PEG下记录到发芽急剧减少。结论是,在NaCl和PEG的等价水势下抑制发芽主要是由于渗透作用而不是盐毒性。

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