Giraldo Juan D, Garrido-Miranda Karla A, Schoebitz Mauricio
Escuela de Ingeniería Ambiental, Instituto de Acuicultura, Universidad Austral de Chile, Sede Puerto Montt, Balneario Pelluco, Los Pinos s/n, Chile.
Center of Waste Management and Bioenergy, Scientific and Technological Bioresource Nucleus, BIOREN-UFRO, Universidad de la Frontera, P.O. Box 54-D, Temuco, Chile; Agriaquaculture Nutritional Genomic Center (CGNA), Temuco 4780000, Chile.
Carbohydr Polym. 2023 Jan 1;299:120196. doi: 10.1016/j.carbpol.2022.120196. Epub 2022 Oct 8.
Chitinous materials (chitin and its derivatives) are obtained from renewable sources, mainly shellfish waste, having a great potential for the development of bioproducts as alternatives to synthetic agrochemicals. Recent studies have provided evidence that the use of these biopolymers can help control postharvest diseases, increase the content of nutrients available to plants, and elicit positive metabolic changes that lead to higher plant resistance against pathogens. However, agrochemicals are still widely and intensively used in agriculture. This perspective addresses the gap in knowledge and innovation to make bioproducts based on chitinous materials more competitive in the market. It also provides the readers with background to understand why these products are scarcely used and the aspects that need to be considered to increase their use. Finally, information on the development and commercialization of agricultural bioproducts containing chitin or its derivatives in the Chilean market is also provided.
几丁质材料(几丁质及其衍生物)来源于可再生资源,主要是贝类废弃物,在开发作为合成农用化学品替代品的生物产品方面具有巨大潜力。最近的研究表明,使用这些生物聚合物有助于控制采后病害,增加植物可利用的养分含量,并引发积极的代谢变化,从而提高植物对病原体的抗性。然而,农用化学品在农业中仍被广泛且大量使用。这一观点弥补了知识和创新方面的差距,以使基于几丁质材料的生物产品在市场上更具竞争力。它还为读者提供了背景知识,以理解为什么这些产品很少被使用以及增加其使用需要考虑的方面。最后,还提供了智利市场上含几丁质或其衍生物的农业生物产品的开发和商业化信息。