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Control of wild oat (Avena fatua) using some phenolic compounds I – Germination and some growth parameters

机译:使用某些酚类化合物I-发芽和一些生长参数控制野生燕麦(Avena fatua)

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摘要

The percentage of germination of wild oat was significantly inhibited by increasing the concentrations of phenolic compounds. Ferulic acid was the most effective compound which completely inhibited germination at a concentration of 3.0 mM. At the same time, wheat and barley were slightly affected with different concentrations of the four phenolic compounds. The percentage of germination of wheat significantly decreased with increasing of ferulic acid reaching a maximum inhibition at 3.0 mM concentration. On the other hand, the germination of wheat was not affected with the other three phenolic compounds. The percentage of germination of barley was not affected with all phenolic compounds except for hydroxy phenolic acetic acid which has significant effect at a concentration of 3.0 mM. Salicylic acid significantly inhibited the growth parameters gradually in wild oat, wheat and barley. The shoot/root ratio was decreased in wild oat and barley, while the ratio increased in wheat. The growth parameters were completely inhibited at 3.0 mM of ferulic acid for both wild oat and wheat but slightly inhibited for barley. The shoot/root ratio was increased in all concentrations of ferulic acid except at 3.0 mM which was completely inhibited for both wild oat and wheat, while the ratio was increased in all treatments of ferulic acid in the case of barley. The growth parameters were highly significant and decreased in wild oat, wheat and barley with increasing the concentrations of hydroxybenzoic acid and hydroxyphenyl acetic acid. The shoot/root ratio was not changed in all concentrations except at 3.0 mM in the case of wild oat, the ratio was decreased at 2.0 and 3.0 mM in the case of wheat, while the ratio increased in most of hydroxybenzoic acid concentrations in the case of barley. The shoot/root ratio was increased with increasing of the hydroxyphenyl acetic acid concentrations.
机译:增加酚类化合物的浓度可以显着抑制野燕麦的发芽率。阿魏酸是最有效的化合物,在浓度为3.0 mM时完全抑制发芽。同时,不同浓度的四种酚类化合物对小麦和大麦的影响很小。随着阿魏酸的增加,小麦发芽率显着降低,在3.0 mM浓度下达到最大抑制。另一方面,小麦的发芽不受其他三种酚类化合物的影响。大麦的发芽率不受所有酚类化合物的影响,除了羟基苯酚乙酸在浓度为3.0 mM时具有显着影响外。水杨酸逐渐抑制野生燕麦,小麦和大麦的生长参数。野燕麦和大麦的茎/根比降低,而小麦则增加。在燕麦和小麦中,阿魏酸在3.0 mM时的生长参数均被完全抑制,但对大麦则略有抑制。除3.0mM浓度外,所有浓度的阿魏酸的茎/根比均增加,野生燕麦和小麦均被完全抑制,而在大麦中,所有处理阿魏酸的比例均增加。野燕麦,小麦和大麦的生长参数非常显着,并且随着羟基苯甲酸和羟基苯基乙酸浓度的增加而降低。除燕麦浓度为3.0mM以外,所有浓度的茎/根比率均未改变,小麦浓度为2.0和3.0mM时,茎/根比有所降低,而大多数羟基苯甲酸浓度的比例则增加大麦芽/根比随羟苯基乙酸浓度的增加而增加。

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