Chemical Biotechnology Research Center, Korea Research Institute of Chemical Technology, Daejeon, Korea.
J Appl Microbiol. 2009 Jun;106(6):2057-63. doi: 10.1111/j.1365-2672.2009.04175.x. Epub 2009 Feb 25.
To characterize antifungal principles from the methanol extract of Magnolia obovata and to evaluate their antifungal activities against various plant pathogenic fungi.
Four neolignans were isolated from stem bark of M. obovata as antifungal principles and identified as magnolol, honokiol, 4-methoxyhonokiol and obovatol. In mycelial growth inhibition assay, both magnolol and honokiol displayed more potent antifungal activity than 4-methoxyhonokiol and obovatol. Both magnolol and honokiol showed similar in vivo antifungal spectrum against seven plant diseases tested; both compounds effectively suppressed the development of rice blast, tomato late blight, wheat leaf rust and red pepper anthracnose. 4-Methoxyhonokiol and obovatol were highly active to only rice blast and wheat leaf rust respectively.
The extract of M. obovata and four neolignans had potent in vivo antifungal activities against plant pathogenic fungi.
Neolignans from Magnolia spp. can be used and suggested as a novel antifungal lead compound for the development of new fungicide and directly as a natural fungicide for the control of plant diseases such as rice blast and wheat leaf rust.
从厚朴甲醇提取物中鉴定抗真菌成分,并评估其对各种植物病原菌的抗真菌活性。
从厚朴茎皮中分离出四种新木脂素作为抗真菌成分,并鉴定为厚朴酚、和厚朴酚、4-甲氧基和厚朴酚和凹叶厚朴酚。在菌丝生长抑制试验中,厚朴酚和和厚朴酚的抗真菌活性均强于 4-甲氧基和厚朴酚和凹叶厚朴酚。厚朴酚和和厚朴酚在体内对七种测试的植物病害具有相似的抗真菌谱;两种化合物均能有效抑制稻瘟病、番茄晚疫病、小麦叶锈病和红辣椒炭疽病的发生。4-甲氧基和厚朴酚和凹叶厚朴酚分别对稻瘟病和小麦叶锈病具有高度活性。
厚朴提取物和四种新木脂素对植物病原菌具有较强的体内抗真菌活性。
厚朴属植物中的新木脂素可作为新型抗真菌先导化合物,用于开发新的杀菌剂,并可直接作为天然杀菌剂,用于防治稻瘟病和小麦叶锈病等植物病害。