Literature DB >> 15999339

Insecticidal and fungicidal activity of new synthesized chitosan derivatives.

Entsar I Rabea1, Mohamed E I Badawy, Tina M Rogge, Christian V Stevens, Monica Höfte, Walter Steurbaut, Guy Smagghe.   

Abstract

Chitosan, the N-deacetylated derivative of chitin, is a potential biopolysaccharide owing to its specific structure and properties. In this paper, we report on the synthesis of 24 new chitosan derivatives, N-alkyl chitosans (NAC) and N-benzyl chitosans (NBC), that are soluble in dilute aqueous acetic acid. The different derivatives were synthesized by reductive amination and analyzed by 1H NMR spectroscopy. A high degree of substitution (DS) was obtained with N-(butyl)chitosan (DS 0.36) at a 1:1 mole ratio for NAC derivatives and N-(2,4-dichlorobenzyl)chitosan (DS 0.52) for NBC derivatives. Their insecticidal and fungicidal activities were tested against larvae of the cotton leafworm Spodoptera littoralis (Boisduval) (Lepidoptera: Noctuidae), the grey mould Botrytis cinerea Pers (Leotiales: Sclerotiniaceae) and the rice leaf blast Pyricularia grisea Cavara (Teleomorph: Magnaporthe grisea (Hebert) Barr). The oral feeding bioassay indicated that all the derivatives had significant insecticidal activity at 5 g kg(-1) in artificial diet. The most active was N-(2-chloro-6-fluorobenzyl)chitosan, which caused 100% mortality at 0.625 g kg(-1), with an estimated LC50 of 0.32 g kg(-1). Treated larvae ceased feeding after 2-3 days; the mechanism of action remains unknown. In a radial hyphal growth bioassay with both plant pathogens, all derivatives showed a higher fungicidal action than chitosan. N-Dodecylchitosan, N-(p-isopropylbenzyl)chitosan and N-(2,6-dichlorobenzyl)chitosan were the most active against B cinerea, with EC50 values of 0.57, 0.57 and 0.52 g litre(-1), respectively. Against P grisea, N-(m-nitrobenzyl)chitosan was the most active, with 77% inhibition at 5 g litre(-1). The effect of different substitutions is discussed in relation to insecticidal and fungicidal activity. Copyright (c) 2005 Society of Chemical Industry.

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Year:  2005        PMID: 15999339     DOI: 10.1002/ps.1085

Source DB:  PubMed          Journal:  Pest Manag Sci        ISSN: 1526-498X            Impact factor:   4.845


  8 in total

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Review 3.  Chitosan in plant protection.

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Journal:  Mar Drugs       Date:  2010-03-30       Impact factor: 5.118

Review 4.  Design of Chitosan Sterilization Agents by a Structure Combination Strategy and Their Potential Application in Crop Protection.

Authors:  Weixiang Liu; Yukun Qin; Pengcheng Li
Journal:  Molecules       Date:  2021-05-28       Impact factor: 4.411

5.  Testing insecticidal activity of novel chemically synthesized siRNA against Plutella xylostella under laboratory and field conditions.

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Journal:  PLoS One       Date:  2013-05-07       Impact factor: 3.240

Review 6.  The Multifunctional Role of Chitosan in Horticultural Crops; A Review.

Authors:  Rahat Sharif; Muhammad Mujtaba; Mati Ur Rahman; Abdullah Shalmani; Husain Ahmad; Toheed Anwar; Deng Tianchan; Xiping Wang
Journal:  Molecules       Date:  2018-04-10       Impact factor: 4.411

7.  Hydrophobic effect of amphiphilic derivatives of chitosan on the antifungal activity against Aspergillus flavus and Aspergillus parasiticus.

Authors:  Ricchard Hallan Felix Viegas de Souza; Mirelli Takaki; Rafael de Oliveira Pedro; Juliana dos Santos Gabriel; Marcio José Tiera; Vera Ap de Oliveira Tiera
Journal:  Molecules       Date:  2013-04-15       Impact factor: 4.411

Review 8.  Antimicrobial Actions and Applications of Chitosan.

Authors:  Cai-Ling Ke; Fu-Sheng Deng; Chih-Yu Chuang; Ching-Hsuan Lin
Journal:  Polymers (Basel)       Date:  2021-03-15       Impact factor: 4.329

  8 in total

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