动物生物医学防治扁豆愈伤组织根结病:预防21世纪COVID-19样大流行疾病,丰富先进的临床毒理学、社会经济、科学技术交流

S. Datta
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引用次数: 3

摘要

经济脉冲种子,Lens esculentum L. Cv。‘Asha’根愈伤组织在添加2mg / 1,2,4 -d(2,4-二氯苯氧乙酸)的Murashige和Skoog (MS)培养基上发育,在培养管中接种无痕长线虫(65±2 J2)幼虫,在组织培养实验室无菌条件下研究其增殖率,并将无痕长线虫雌虫提取液(NE)以1.3mg/培养管施用于扁豆根愈伤组织。减少愈伤组织受线虫侵害,促进愈伤组织生长。这种动物生物医学- ne被认为可以诱导扁豆根愈伤组织产生防御抗性,并通过提高免疫力、抵抗毒性作用和改进生物医学、在临床毒理学、绿色社会经济、科学技术和通信应用方面取得进展,预防21世纪的病毒病等流行病。生物医学不仅增加了农业和作物产量,而且还使新一代纳米技术的发展成为可能——减少对环境的负面影响和保持作物产量的农用化学品。和两个;生物医学- ne和脉冲本身可能侧重于农用化学品的纳米配方和其他纳米技术跨学科的未来纳米毒理学研究和在农业中的应用,以及纳米材料- ne与植物及其环境和其他生物的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Animal Biomedicine Controls Root Knot Disease in Lentil Callus Culture: Enriched Advanced Clinical Toxicology Socio Economy Science Technology Communication by Preventing 21st Century COVID-19 Like Pandemic Diseases
The economic pulse seeds, Lens esculentum L. Cv. ‘Asha’ root callus develop on Murashige and Skoog (MS)-media supplemented with 2 mg/1, 2,4-D (2,4-dichloro phenoxy acetic acid) and inoculated with Meloidogyne incognita larvae (65 ± 2 J2) in the culture tube to study their multiplication rate under sterilized condition in the tissue culture laboratory, and biomedicine-nematode extract (NE) prepared from M. incognita females, when applied at 1.3mg/culture tube to root callus of lentil, reduced nematode infestation of callus and improved callus growth. This animal biomedicine-NE is thought to induce defense-resistance in lentil root callus and may prevent 21st –century pandemics like virus diseases by boosting immunity, resisting toxic effects, and improved biomedicine, advanced in clinical toxicology, green-socio-economy, science technology, and communication application. The biomedicine-NE not only increase agriculture and crop production but also enable the development of a new-generation of nanotechnology-agrochemicals reducing negative-environmental-impacts and maintaining-crop-yields. And both; biomedicine-NE and pulses may itself focus on nanoformulation of agrochemicals and other nanotechnological interdisciplinary future nanotoxicology research and applications in agriculture, and interaction nanomaterials-NE with plants, their environment, and other organisms also.
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