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The effect of seed colour and linolenic acid concentration on germination, seed vigour, seed quality and agronomic characteristics of flax.

机译:种子颜色和亚麻酸浓度对亚麻种子发芽,种子活力,种子品质和农艺特性的影响。

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The world market for edible vegetable oils is large and expanding. Edible-oil cultivars of flax (Linum usitatissimum L.) have potential to benefit the agricultural industry. A mutation program at the University of Saskatchewan resulted in a flaxseed oil with a very low linolenic acid concentration (2%), compared to the regular industrial flaxseed oil (50%). To register edible-oil flax ("solin") cultivars in Canada, they must have a linolenic acid concentration of less than 5%, and yellow seed in order to be visually distinguished from brown-seeded industrial oil cultivars. Incorporation of low linolenic acid and yellow seed colour into flaxseed may negatively impact seed germination, seed vigour, emergence, seed quality and agronomic characteristics. This study investigated the effect of seed colour and linolenic acid concentration on these characteristics. The effect of temperature, soil and seed damage on germination were also investigated.; Near-isogenic flax populations of yellow and brown seeds with high and low linolenic acid produced from seven crosses were used. A temperature of 5{dollar}spcirc{dollar}C resulted in significantly lower germination than temperatures of 10 or 15{dollar}spcirc{dollar}C. In general, germination was not affected by seed colour and linolenic acid level. A cold test used to measure seed vigour showed that yellow seeds have significantly lower vigour than brown seeds. The same result was obtained with a germination test in soil and in field emergence. Low linolenic acid seeds had significantly lower seed vigour in two populations, lower germination in soil, and in 1995 a lower field emergence than high linolenic acid seeds.; The significant negative effect of soil in the cold test, as well as the positive effect of soil autoclaving on germination indirectly suggested that soil microorganims deleteriously affect germination, particularly for yellow seeds. Also, the cold test was able to differentiate the seed vigour for seed colour and linolenic acid level and was in agreement with field emergence. The cold test can be a useful, rapid method for predicting field emergence of solin breeding lines. Mechanical harvesting had a significant effect on seed damage but, not on seed vigour.; Yellow-seeded lines had lower seed yield, greater oil concentration and more seed coat damage than brown-seeded lines. In general, maturity, visibly damaged seed and seed weight was not affected by seed colour. Linolenic acid concentration had no significant effect on these characters except seed yield. Low linolenic acid lines had greater seed yield in 1995.
机译:食用植物油的世界市场很大并且还在扩大。亚麻的食用油品种(Linum usitatissimum L.)具有使农业产业受益的潜力。与普通工业亚麻籽油(50%)相比,萨斯喀彻温大学的一项突变计划产生了亚麻籽油中亚麻酸的浓度非常低(2%)。要在加拿大注册食用亚麻籽品种,亚麻酸的浓度必须低于5%,并且种子必须是黄色,以便在视觉上与棕色种子工业食用亚麻籽区分开。将低亚麻酸和黄色种子颜色掺入亚麻籽中可能会对种子发芽,种子活力,出苗,种子品质和农艺特性产生负面影响。这项研究调查了种子颜色和亚麻酸浓度对这些特性的影响。还研究了温度,土壤和种子损害对发芽的影响。使用由七个杂交产生的具有高亚麻酸和低亚麻酸的近等基因亚麻种群的黄色和棕色种子。 5℃的温度比10℃或15℃的温度显着降低发芽率。通常,发芽不受种子颜色和亚麻酸水平的影响。用于测量种子活力的冷试验表明,黄色种子的活力明显低于棕色种子。通过在土壤和田间出苗的发芽试验获得了相同的结果。低亚麻酸种子在两个种群中的种子活力显着较低,在土壤中的萌发较低,1995年的田间出苗率低于高亚麻酸种子。土壤在寒冷测试中的显着负面影响,以及土壤高压灭菌对发芽的积极影响间接表明土壤微生物对发芽具有有害影响,特别是对于黄色种子。而且,冷试验能够区分种子活力的种子颜色和亚麻酸水平,并且与田间出苗一致。冷试验可以是预测索林育种系田间出现的有用,快速的方法。机械收割对种子损害有显着影响,但对种子活力没有影响。黄色种子的种子比棕色种子的种子具有较低的种子产量,更高的油浓度和更大的种皮损害。通常,成熟度,明显受损的种子和种子重量不受种子颜色的影响。除种子产量外,亚麻酸浓度对这些特性无显着影响。低亚麻酸品系在1995年的种子产量更高。

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