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首页> 外文期刊>Allelopathy Journal >Evaluation of weed control potential of meadowfoam (Limnanthes alba Benth.) plant
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Evaluation of weed control potential of meadowfoam (Limnanthes alba Benth.) plant

机译:评价Meadowfoam的杂草控制潜力(Limnanthess Alba Benth。)植物

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We studied the effects of defatted seed meal of meadowfoam on weed control, but not of other plant parts (leaves, stems, flowers and roots). There were no differences among the extraction methods (water, boiling water, ethanol and fermentation) and plant parts (leaves, stems, above ground parts, seeds and defatted seed meal) in I-50 values for germination, shoot and root lengths of cucumber and barley. The I-50 and I-90 values for shoot and root lengths of Echinochloa oryzicola Vasing, Digitaria ciliaris Koel, Artemisia princeps Pamp., Cirsium japonicum var. Maackii Matsum and Taraxacum platycarpum Dahlst were lower in leaves, stems, above ground parts, seed meal and defatted seed meal extracts than in flowers and roots. Broad leaf weed species (A. princeps, C. japonicum, and T platycarpum) were more sensitive to water extracts of tested plant parts than grassy weeds (E. oryzicola and D. ciliaris). T platycarpum was completely controlled by soil application of stems and defatted seed meal at 600 g/m(2) and was 95% controlled by seed meal at 600 g/m(2). Other weed species (E. oryzicola, D. ciliaris, A. princeps and C. japonicum) were 62-91% controlled by stems, seed meal and defatted seed meal at 600 g/m(2). However, total phenol and flavonoid contents may not be related to herbicidal mechanisms in plant parts of meadowfoam. Germination rates, shoot and root lengths of barley and cucumber in n-hexane solvent fraction were more inhibited than in chloroform, ethyl acetate, butanol and water fractions. A herbicidal compound, 3-methoxyphenyl acetonitrile, was found present at higher levels in the n-hexane fraction than other fractions. Application of 3-methoxyphenyl acetonitrile at 0.1% completely inhibited the germination, shoot and root lengths of lettuce, E. oryzicola and C. japonicum. Thus, meadowfoam leaves and stems as well as defatted seed meal can be used for weed control on organic farms.
机译:我们研究了Meadowfoam对杂草控制的缺陷种子膳食的影响,但不是其他植物零件(叶,茎,鲜花和根)。提取方法(水,沸水,乙醇和发酵)和植物零部件(叶,茎,地下部件,种子和脱纸种子膳食)在萌发,芽和根长的植物零件(叶,茎,地下零件,种子和渣滓)中没有差异和大麦。 Echinochloa Oryzicola狂欢,Digitaria Ciliaris Koel,Artemisia Princeps Pamp的I-50和I-90拍摄和根部长度的值。,Cirsium japonicum var。 Maackii Matsum和塔克斯卡姆Platycarpum Dahlst在叶子,茎,地面,种子膳食和脱脂种子膳食提取物中较低,而不是在鲜花和根部。宽叶杂草物种(A.Princeps,C.aponicum和T platycarpum)对测试植物零件的水提取物比草杂草(E. Oryzicola和D.Ciliaris)更敏感。 T platycarpum完全通过600g / m(2)的茎和脱脂种子膳食的土壤应用来控制,并在600g / m(2)下由种子膳进行95%。其他杂草物种(E. Oryzicola,D.Ciliaris,A.Princeps和C.PrinceCum)由茎,种子膳食和600克/米(2)的茎秆,种子膳食和脱脂种子膳食控制62-91%。然而,总苯酚和类黄酮含量可能与Meadowfoam的植物部分中的除草机制无关。在正己烷溶剂级分中的大麦和黄瓜的发芽速率,芽和根长度比氯仿,乙酸乙酯,丁醇和水分分数更抑制。发现除草剂化合物3-甲氧基苯基乙腈,在N-己烷级分的较高水平上比其他级分呈现。在0.1%下施用3-甲氧基苯基乙腈完全抑制莴苣,E. Oryzicola和C.Paponicum的萌发,芽和根部长度。因此,Meadowfoam叶子和茎以及脱脂种子粉可用于有机农场的杂草控制。

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