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首页> 外文期刊>The Journal of Agricultural Science >Linseed as a dual-purpose crop: evaluation of cultivar suitability and analysis of yield determinants
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Linseed as a dual-purpose crop: evaluation of cultivar suitability and analysis of yield determinants

机译:亚麻籽作为两用作物:品种适宜性评价和产量决定簇分析

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Linseed is enjoying renewed popularity worldwide thanks to emerging market opportunities for raw material derived from seeds and stems. The dual-purpose cultivation is particularly attractive to growers for its capacity to yield both seed/oil and straw/fibre; however, field-based research is necessary to identify suitable cultivars to meet modern production goals. Under these premises, a 3-year experimental campaign was conducted to evaluate 18 linseed cultivars potentially interesting for dual-purpose cultivation in Northern Italy. Cultivar performance was evaluated in terms of seed, straw and fibre yield, oil composition and stem fibre content. Inter-annual weather variability explained the largest portion of the total variance. However, the 'cultivar x year' interaction was not significant except for seed oil content and composition. Stability analysis showed that at least half of the cultivars were unstable for oil content and alpha-linolenic acid fraction. A Structural Equation Model was developed to investigate causal relationships between the productive performance and factors such as environmental variables, phenological traits, plant size and density. Rainfall was beneficial to seed yield, both before and after flowering, whereas higher post-flowering air temperature had a depressive effect. A higher oil content was favoured by pre-flowering rainfall. Plant height was negatively associated with seed yield and oil content, but it was positively associated with straw and fibre yield. Plant density was critical for fibre yield since below 500 plants/m(2) the increased plant branching makes it difficult to extract fibre. Together with plant density, plant height could be used to manipulate the seed/straw ratio according to production goals.
机译:由于源自种子和茎的原材料的新兴市场机会,Linseed享有全球更新的人气。两种目的栽培对种植者的能力特别有吸引力,以产生种子/油和吸管/纤维;然而,基于现场的研究是必要的,以确定合适的品种,以满足现代化的生产目标。在这些场所下,进行了3​​年的实验活动,以评估18种亚麻籽品种,可能有趣的意大利北部的两国栽培。在种子,稻草和纤维产率,油组合物和干纤维含量方面评估品种性能。年间天气变异性解释了总方差的最大部分。然而,除种子油含量和组成外,“品种X年”相互作用并不重要。稳定性分析表明,至少一半的品种对于油含量和α-亚麻酸馏分不稳定。开发了一种结构方程模型,以研究生产性能与环境变量,酚类特征,植物尺寸和密度等因素之间的因果关系。降雨与开花之前和之后的种子产量有益,而开花后的空气温度较高具有抑郁效果。通过预开花的降雨来青睐更高的油含量。植物高度与种子产量和油含量负相关,但它与秸秆和纤维产量正相关。植物密度对于纤维产量至关重要,因为500株植物/ m(2)增加的植物支化使得难以提取纤维。与植物密度一起,植物高度可用于根据生产目标操纵种子/吸管比。

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