A chitin-binding lectin from Moringa oleifera seeds (WSMoL) impairs the digestive physiology of the Mediterranean flour larvae, Anagasta kuehniella

被引:14
|
作者
Ramalho de Oliveira, Caio Fernando [1 ,2 ]
de Moura, Maiara Celine [3 ]
Napoleao, Thiago Henrique [3 ]
Guedes Paiva, Patricia Maria [3 ]
Breitenbach Barroso Coelho, Luana Cassandra [3 ]
Rodrigues Macedo, Maria Ligia [1 ]
机构
[1] Univ Fed Mato Grosso do Sul, LPPFB, Unidade Tecnol Alimentos & Saride Publ, Campo Grande, MS, Brazil
[2] Univ Fed Mato Grosso, Fac Med, Campo Grande, MS, Brazil
[3] Univ Fed Pernambuco, Dept Bioquim & Biofis, Recife, PE, Brazil
关键词
Anagasta kuehniella; Chitin-binding; Lectin; Moringa oleifera; LACANOBIA-OLERACEA LARVAE; SNOWDROP LECTIN; INSECTICIDAL ACTIVITY; PERITROPHIC MEMBRANE; RHIZOCTONIA-SOLANI; TRANSGENIC PLANTS; FUSION PROTEINS; RESISTANCE; GNA; AGGLUTININ;
D O I
10.1016/j.pestbp.2017.01.006
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Biotechnological techniques allow the investigation of alternatives to outdated chemical insecticides for crop protection; some investigations have focused on the identification of molecules tailored from nature for this purpose. We, herein, describe the negative effects of water-soluble lectin from Moringa oleifera seeds (WSMoL) on Anagasta kuehniella development. The chitin-binding lectin, WSMoL, impaired the larval weight gain by 50% and affected the activity of the pest's major digestive enzymes. The commitment of the digestive process became evident after controlled digestion studies, where the capacity of protein digestion was compromised by >90%. Upon acute exposure, the lectin was not resistant to digestion; however, chronic ingestion of WSMoL was able to reverse this feature. Thus, we show that resistance to digestion may not be a prerequisite for a lectin's ability to exert negative effects on larval physiology. The mechanism of action of WSMoL involves binding to chitin with possible disruption to the peritrophic membrane, causing disorder between the endo- and ectoperitrophic spaces. Additionally, results suggest that WSMoL may trigger apoptosis in gut cells, leading to the lower enzymatic activity observed in WSMoL-fed larvae. Although assays employing an artificial diet did not demonstrate effects of WSMoL on A. kuehniella mortality, this lectin may hold potential for exerting insecticide effects on other pest insects, as well for use in other experimental approaches, such as WSMoL-expressing plants. Moreover, the use of WSMoL with other biotechnological tools, such as 'pyramid' crops, may represent a strategy for delaying the evolution of pest resistance to transgenic crops, since its multiple site targets could act in synergism with other insecticide compounds. (C) 2017 Elsevier Inc. All rights reserved.
引用
收藏
页码:67 / 76
页数:10
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