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首页> 外文期刊>Industrial Crops and Products >Essential oil from Curcuma longa leaves: Can an overlooked by-product from turmeric industry be effective for myiasis control?
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Essential oil from Curcuma longa leaves: Can an overlooked by-product from turmeric industry be effective for myiasis control?

机译:来自Curcuma Longa的精油叶:可以从姜黄行业的忽视的副产品对敏感控制有效吗?

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摘要

Curcuma longa L., popularly known as turmeric, is one of the most studied Curcuma species due to its rhizome, wide used as a dye, and its multipurpose uses in medicine, cosmetics, food flavoring and textile industries. However, the knowledge of essential oils (EO) from C. Tonga leaves is still limited. In turmeric production, the stems and leaves above the ground are considered waste products after harvesting. The present study was designed to assess the chemical composition of C. longa leaves EO (CLLEO) and investigate the bioactivities of its major constituent, alpha-phellandrene against third instar larvae (L3) of Cochliomyia macellaria (secondary screwworm). In addition, we intended to demonstrate through ultrastructural and histological assessment the morphological damages in L3. Groups of 20 L3 were placed on filter papers impregnated with increasing concentrations (0.31 to 2.86 mu L/cm(2)) of CLLEO, determining mortality after 6, 24 and 48 h of contact. The compound alpha-phellandrene represented 41.99% of the EO. Other compounds were: alpha-pinene, beta-pinene, myrcene, rho-cymene, limonene and 1,8-cineole. The major compound of CLLEO, a-phellandrene was also tested (0.29 to 1.47 mu L/cm(2)). C. macellaria mortality 48 h after contact with 1.27 mu L/cm(2) of CLLEO was 96.66 and 58.33% when using ethanol and acetone as solvents, respectively. The highest alpha-phellandrene dose assessed in this work (1.47 mu L/cm(2)) presented a high mortality rate (96.66%). Structural analysis revealed marked lesions (cuticle surface dryness and severe degeneration on the spiracular plate) for both extracts. Histological sections of L3 showed necrosis of the intestinal tract and in the Malpighian tubules, and trophocytes with vacuolization. The brain had pyknotic profiles and vacuolar degeneration for both EO derivations. We suggest that CLLEO represents a sustainable bio-product for C. macellaria control that cause secondary myiasis to humans and animals.
机译:繁荣被称为姜黄的Curcuma Longa L.是由于其根茎,宽掺杂为染料,以及其在医学,化妆品,食品调味和纺织工业中的多功能使用的莪术物种之一。然而,来自C.汤加叶的精油(EO)的知识仍然有限。在姜黄生产中,在收获后,地面上方的茎和叶子被认为是废物。本研究旨在评估C.Longa叶EO(Clleo)的化学成分,并研究其主要成分的生物活像,α-菲尔达替纳对Cochliomyia meellaria(二级螺丝虫)的第三龄幼虫(L3)。此外,我们打算通过超微结构和组织学评估L3中的形态损伤来证明。将20 L3组置于浸渍浓度的过滤纸上(0.31-2.86μl/ cm(2))的Clleo,在6,24和48小时后确定死亡率。化合物α-磷锡丙烯代表EO的41.99%。其他化合物是:α-叉烯,β-叉烯,牛酮,rho-cymene,柠檬烯和1,8-鳞状。还测试了Clleo的主要化合物,A-PhellandRene(0.29至1.47μl/ cm(2))。 C.用乙醇和丙酮作为溶剂分别与乙醇和丙酮的溶剂接触后,MeLellaria死亡率48小时。在该工作中评估的最高α-磷烷酮剂量(1.47μl/ cm(2))呈现出高死亡率(96.66%)。结构分析显示出两种提取物的显着病变(皮层表面干燥和脉冲板上的严重变性)。 L3的组织学部分显示肠道坏死和在麦片管中的坏死,并具有真空化的滋养细胞。大脑对EO衍生物的血小录分布和真空退化。我们建议Clleo代表了C. Macellaria对照的可持续生物产品,导致人类和动物的继发性肌肉。

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