苄基腺嘌呤、吲哚乙酸和赤霉素对甜罗勒植物生长、化学成分和挥发油性质的影响

IF 0.4 Q4 VETERINARY SCIENCES
A. Nazmy
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引用次数: 2

摘要

植株高度、每株叶数、平均叶面积、草本植物鲜重和干重均随施用处理而显著改善,尤其是IAA处理和GA3处理。然而,BA处理增加了侧枝/植株的数量和茎径,尤其是10ppm处理比5ppm处理增加。一般来说,第二次切割在所研究的营养生长参数方面优于第一次切割。BA在10ppm时记录的N、P、K、Fe和Mn的最高值,而BA在5ppm时记录了更高的Zn值。与其他处理或对照相比,IAA在50或100时显著增加了活性成分,包括总酚、总黄酮、总叶绿素和Lascorbic酸。然而,在50或100ppm的IAA中,挥发油百分比和每株挥发油含量较高,其次是200ppm的GA3。在两个研究季节,第二次扦插在提高挥发油百分比和每株挥发油含量方面均优于第一次扦插。挥发油的主要成分为1,8-桉叶醇、芳樟醇、反式佛手柑烯、germacrene D和á-muurolol。在100ppm的IAA下,甜罗勒挥发油中主要成分芳樟醇的含量最高(50.90%)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Benzyl Adenine, Indole Acetic Acid and Gibberellic Acid on Vegetative Growth, Chemical Constituents and Volatile Oil Attributes of Sweet Basil Plants
Plant height, number of leaves/plant, average leaf area, and herb fresh and dry weights/ plant greatly improved with the applied treatments especially with IAA treatments followed by GA3 treatments. However, the number of lateral branches/plant and stem diameter were increased with BA treatments especially with 10 ppm than 5 ppm. Generally, the second cut was superior in the studied vegetative growth parameters than the first cut. The highest values of N, P, K, Fe, and Mn were recorded with BA at 10 ppm, whereas higher Zn values were recorded with BA at 5 ppm. Active ingredients including total phenols, total flavones, total chlorophyll, and Lascorbic acid greatly increased with IAA at 50 or 100 than the other treatments or the control. However, volatile oil percentage and volatile oil content/plant were high in IAA at 50 or 100 ppm followed by GA3 at 200 ppm. The second cut was superior to the first cut in promoting volatile oil percentage and volatile oil content/ plant in both studied seasons. The main components in volatile oil were 1,8-cineole, linalool, á-trans-bergamotene, germacrene D and á-muurolol. The highest values of linalool, the main component in the volatile oil of sweet basil (50.90%) was recorded by IAA at 100 ppm.
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来源期刊
CiteScore
0.90
自引率
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发文量
77
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