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Aerobic environment ensures viability and anti-oxidant capacity when seeds are wet with negative effect when moist: implications for persistence in the soil

机译:有氧环境确保当种子潮湿时湿润时的活力和抗氧化能力:在湿润时的效果:对土壤持久性的影响

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摘要

Interchangeable effects of temperature, moisture content and oxygen on seed longevity have been mostly examined to estimate seed viability during long-term dry storage, whereas few experiments have studied seed viability under near-natural conditions to evaluate seed persistence in the soil. To this end, we artificially aged seeds of Ranunculus baudotii, a hydrophyte widely distributed in temporary ponds constituting an abundant soil seed bank. Seeds were exposed to controlled ageing at three different relative humidities (RH) under both aerobic and anoxic conditions. Their viability, water content, membrane damage, oxidative stress and anti-oxidant enzymatic defence activity were evaluated. Seed survival was longer at higher relative humidity (97% RH), and lowest at a relative humidity (90% RH) simulating moist but not waterlogged soils. Anoxic conditions showed a protective role on viability at lower moisture contents (70% RH). Seed viability was negatively associated with hydrogen peroxide content and correlated with anti-oxidant enzyme activities, but not with membrane damage. Altogether, these results suggest negative roles for moist soils and anoxia in determining seed persistence in the field, but at higher moisture contents the negative effects of anaerobia diminished. The anti-oxidant system activation, even under unfavourable conditions, might recover seeds once all protective processes can operate, pointing out the plasticity of mechanisms involved in seed loss viability.
机译:温度,湿度和氧气对种子寿命的可互换影响已经大部分研究长期干贮存期间估计种子活力,而几个实验研究了近自然条件下种子活力的土壤,以评估种子的持久性。为此,我们毛茛baudotii的人工老化种子,一个水生植物广泛分布于构成丰富的土壤种子库的临时池。将种子暴露于有氧和缺氧条件下三种不同的相对湿度(RH)控制的老化。其可行性,含水量,膜损伤,氧化应激和抗氧化酶的活性防御评价。种子生存期延长至较高的相对湿度(97%RH),和最低,相对湿度(90%RH)模拟湿润但不淹水土壤。缺氧条件显示出在较低的水分含量(70%RH)上存活的保护作用。种子活力呈负与过氧化氢的内容相关联,并用抗氧化剂酶的活性相关,但不与膜损伤。总之,这些结果表明了潮湿的土壤缺氧负作用在确定场种子持久性,但在更高的水分含量减少厌氧菌的负面影响。该抗氧化剂体系的活化,即使在不利的条件下,可能恢复种子一旦所有的保护过程可以操作,指出的参与种子存活力损失机制可塑性。

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