应用生物刺激剂提高芳香植物和药用植物产量和化学成分的可持续方法。

Mohamad Hesam Shahrajabian, Wenli Sun
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引用次数: 0

摘要

简介生物刺激剂由天然成分、发酵代谢物、微生物、藻类或植物提取物、细菌、蘑菇、腐殖质、氨基酸、生物大分子等组成。研究方法本研究收集了所有相关的英文文章。使用谷歌学术、Scopus 和 PubMed 数据库中的生物刺激剂、药用植物、芳香植物、天然产品和制药效益等关键词对文献进行了综述:结果:生物刺激剂对不同的药用植物和芳香植物具有重要的促进作用,如水杨酸对矢车菊、朝鲜蓟、天竺葵、罗勒、普通芸香、普通鼠尾草、普通百里香、锥栗、芫荽、石斛、印度沙漠小麦、龙头、茴香、葫芦巴、发热草、生姜、落花生、番石榴、指甲花、伊朗苏打、薰衣草、柠檬香脂、柠檬草、马拉巴尔菠菜、海藻萃取物对杏仁、鸽子草、鸢尾、鸢尾属植物、鸢尾属植物、鸢尾属植物、鸢尾属植物、鸢尾属植物、鸢尾属植物、鸢尾属植物、鸢尾属植物、鸢尾属植物、鸢尾属植物和鸢尾属植物的影响;杏仁、鸟眼辣椒中的海藻提取物;青蒿、西兰花、甘菊中的氨基酸;灰树花中的有益菌;黑小茴香、大麻、菊苣、大蒜、非洲菊、匈牙利薇菜、摩尔达维亚龙头菜、尼格植物中的腐殖酸;火龙果、万寿菊、奶蓟草中的甲壳素等。所提出的机制包括对参与不同生物合成过程的酶的活性产生刺激影响、生物刺激素化合物具有类似激素的活性以及改善植物对养分的吸收:本手稿举例说明了生物刺激剂在药用植物和芳香植物生产中的潜力。然而,要更好地了解不同生物刺激剂和叶面喷施在可持续农业中的效果,还需要进一步的研究。
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Sustainable Approaches to Boost Yield and Chemical Constituents of Aromatic and Medicinal Plants by Application of Biostimulants.

Introduction: Biostimulants consist of natural ingredients, metabolites of fermentation, micro-organisms, algae or plant extracts, bacteria, mushrooms, humus substances, amino acids, biomolecules, etc. Methods: In this study, all relevant English-language articles were collected. The literature was reviewed using the keywords of biostimulant, medicinal plant, aromatic plant, natural products, and pharmaceutical benefits from Google Scholar, Scopus, and PubMed databases.

Results: The significant and promoting impact of biostimulants has been reported for different medicinal and aromatic plants, such as salicylic acid for ajuga, artichoke, ajwain, basil, common rue, common sage, common thyme, coneflower, coriander, dendrobium, desert Indian wheat, dragonhead, fennel, fenugreek, feverfew, ginger, groundnut, guava, henna, Iranian soda, lavender, lemon balm, lemongrass, Malabar spinach; seaweed extract on almond, bird,s eye chili; amino acids on artemisia, broccoli, chamomile, beneficial bacteria on ashwagandha; humic acid on black cumin, cannabis, chicory, garlic, gerbera, Hungarian vetch, Moldavian dragonhead, niger plant; chitosan on dragon fruit, marigold, milk thistle, etc. The suggested mechanisms include the stimulatory impacts on the activity of enzymes involved in different biosynthetic processes, the hormone-like activity of biostimulant compounds and the improvement of nutrient uptake of plants.

Conclusion: The current manuscript gives many examples of the potential of biostimulants for medicinal and aromatic plant production. However, further studies are needed to better understand the effectiveness of different biostimulants and foliar applications in sustainable agriculture.

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