| Literature DB >> 32610662 |
Mikel Domínguez-Arrizabalaga1, Maite Villanueva1,2, Baltasar Escriche3, Carmen Ancín-Azpilicueta4, Primitivo Caballero1.
Abstract
Bacillus thuringiensis is the most successful microbial insecticide agent and its proteins have been studied for many years due to its toxicity against insects mainly belonging to the orders Lepidoptera, Diptera and Coleoptera, which are pests of agro-forestry and medical-veterinary interest. However, studies on the interactions between this bacterium and the insect species classified in the order Coleoptera are more limited when compared to other insect orders. To date, 45 Cry proteins, 2 Cyt proteins, 11 Vip proteins, and 2 Sip proteins have been reported with activity against coleopteran species. A number of these proteins have been successfully used in some insecticidal formulations and in the construction of transgenic crops to provide protection against main beetle pests. In this review, we provide an update on the activity of Bt toxins against coleopteran insects, as well as specific information about the structure and mode of action of coleopteran Bt proteins.Entities:
Keywords: Bacillus thuringiensis proteins; coleopteran pests; insecticidal activity; mode of action; structure
Year: 2020 PMID: 32610662 PMCID: PMC7404982 DOI: 10.3390/toxins12070430
Source DB: PubMed Journal: Toxins (Basel) ISSN: 2072-6651 Impact factor: 4.546
Figure 1Number of susceptible coleopteran insects to Bt (Bacillus thuringiensis) proteins, grouped into protein families.
Figure 2Relative length of 3-domain Cry proteins of B. thuringiensis, representing both main sizes of approximately 130 and 70 kDa. Dashed parts represent the activated toxin, while the white boxes represent the amino- and carboxy-terminal parts. Adapted from Bravo et al., 2007 [33].
Figure 3Bacillus thuringiensis proteins, with particular activity against coleopteran pests, for which three-dimensional structure has been predicted. (A) Cry3Aa (PBD accession number 4QX1); (B) Cry8Ea (PBD accession number 3EB7); (C) Protein complex Cry23Aa/Cry37Aa (PBD accession number 4RHZ); (D) Binary proteins Cry34Ab and Cry35Ab (PBD accession number 4JOX and 4JPO); (E) Cyt1Aa (PBD accession number 3RON); (F) Secretable protein Vip2Aa with a NAD complex (PBD accession number 1QS2).
Insecticidal activity of Cry and Cyt proteins against coleopteran pests.
| Crystal Type Toxin | Target Insect | Activity (a) | LC50 (b) | Reference | |
|---|---|---|---|---|---|
| Scientific Name | Family | ||||
|
|
| Cerambycidae | N | [ | |
|
| Cerambycidae | N | [ | ||
|
| Coccinellidae | A | [ | ||
|
| Tenebrionidae | LA | [ | ||
|
|
| Chrysomelidae | N | [ | |
|
| Chrysomelidae | N | [ | ||
|
| Chrysomelidae | N | [ | ||
|
| Coccinellidae | N | [ | ||
|
| Coccinellidae | N | [ | ||
|
| Coccinellidae | N | [ | ||
|
| Coccinellidae | N | [ | ||
|
| Curculionidae | N | [ | ||
|
| Curculionidae | N | [ | ||
|
| Scarabaeidae | N | [ | ||
|
|
| Chrysomelidae | N | [ | |
|
| Chrysomelidae | N | [ | ||
|
| Chrysomelidae | N | [ | ||
|
| Coccinellidae | N | [ | ||
|
| Curculionidae | N | [ | ||
|
| Curculionidae | N | [ | ||
|
| Nitidulidae | N | [ | ||
|
| Tenebrionidae | N | [ | ||
|
| Scarabaeidae | N | [ | ||
|
|
| Coccinellidae | N | [ | |
|
|
| Coccinellidae | N | [ | |
|
|
| Cerambycidae | N | [ | |
|
| Chrysomelidae | A | [ | ||
|
| Chrysomelidae | A | 1.8 // 5.9 | [ | |
|
| Chrysomelidae | A | 1050 // 142 | [ | |
|
| Chrysomelidae | N | [ | ||
|
| Curculionidae | A | 305.32 | [ | |
|
| Curculionidae | N | [ | ||
|
| Curculionidae | A | [ | ||
|
| Tenebrionidae | N | [ | ||
|
|
| Tenebrionidae | N | [ | |
|
|
| Tenebrionidae | N | [ | |
|
|
| Tenebrionidae | N | [ | |
|
|
| Laemophloeidae | N | [ | |
|
| Tenebrionidae | N | [ | ||
|
|
| Tenebrionidae | N | [ | |
|
|
| Chrysomelidae | A | [ | |
|
| Chrysomelidae | N | [ | ||
|
| Chrysomelidae | N | [ | ||
|
| Chrysomelidae | A | 33.7 // 10 | [ | |
|
| Chrysomelidae | N | [ | ||
|
| Curculionidae | A | 21.5 // 230 | [ | |
|
| Curculionidae | N | [ | ||
|
| Tenebrionidae | N | [ | ||
|
| Tenebrionidae | N | [ | ||
|
|
| Chrysomelidae | N | [ | |
|
| Chrysomelidae | N | [ | ||
|
|
| Chrysomelidae | N | [ | |
|
|
| Chrysomelidae | N | [ | |
|
| Chrysomelidae | N | [ | ||
|
|
| Chrysomelidae | N | [ | |
|
| Chrysomelidae | N | [ | ||
|
|
| Chrysomelidae | N | [ | |
|
| Chrysomelidae | N | [ | ||
|
| Chrysomelidae | N | [ | ||
|
| Coccinellidae | N | [ | ||
|
| Curculionidae | N | [ | ||
|
|
| Coccinellidae | N | [ | |
|
| Nitidulidae | N | [ | ||
|
|
| Bostrichidae | A | 1.17 μg/mg | [ |
|
| Brentidae | A | 1.88 μg/g | [ | |
|
| Brentidae | A | 1.99 μg/g | [ | |
|
| Cerambycidae | A | [ | ||
|
| Chrysomelidae | A | [ | ||
|
| Chrysomelidae | A | [ | ||
|
| Chrysomelidae | A | 0.475 mg/mL | [ | |
|
| Chrysomelidae | A | [ | ||
|
| Chrysomelidae | A | [ | ||
|
| Chrysomelidae | A | 2.22 // 1.8 | [ | |
|
| Chrysomelidae | A | 2.68 // 1.33 | [ | |
|
| Chrysomelidae | A | 3.82 | [ | |
|
| Chrysomelidae | N | [ | ||
|
| Chrysomelidae | N | [ | ||
|
| Chrysomelidae | A | 1.84 // 3.56 | [ | |
|
| Chrysomelidae | A | 1.11 | [ | |
|
| Chrysomelidae | A | [ | ||
|
| Chrysomelidae | N | [ | ||
|
| Chrysomelidae | A | 1.13 // 3.09 | [ | |
|
| Chrysomelidae | A | 0.22 mg/ml | [ | |
|
| Chrysomelidae | A | 0.12 μg/cm2 | [ | |
|
| Coccinellidae | N | [ | ||
|
| Coccinellidae | N | [ | ||
|
| Coccinellidae | N | [ | ||
|
| Coccinellidae | A | [ | ||
|
| Curculionidae | N | [ | ||
|
| Curculionidae | N | [ | ||
|
| Curculionidae | N | [ | ||
|
| Curculionidae | A | [ | ||
|
| Curculionidae | A | 152 ng/cm2 | [ | |
|
| Curculionidae | LA | [ | ||
|
| Curculionidae | A | [ | ||
|
| Scarabaeidae | A | [ | ||
|
| Scarabaeidae | N | [ | ||
|
| Scarabaeidae | A | [ | ||
|
| Scarabaeidae | N | [ | ||
|
| Tenebrionidae | A | 9.58 // 8 μg/cm2 | [ | |
|
| Tenebrionidae | N | [ | ||
|
| Tenebrionidae | A | 0.46 g/10 g | [ | |
|
| Tenebrionidae | A | 11.4 μg/larve | [ | |
|
| Tenebrionidae | A | [ | ||
|
|
| Brentidae | A | 1.304 μg/g | [ |
|
| Brentidae | A | 1.273 μg/g | [ | |
|
| Chrysomelidae | A | [ | ||
|
| Chrysomelidae | A | 107 ng/mm2 | [ | |
|
| Chrysomelidae | A | 1.35 ng/mm2 | [ | |
|
| Coccinellidae | N | [ | ||
|
| Scarabaeidae | A | 1 | [ | |
|
| Tenebrionidae | A | 1.60 g/10 g | [ | |
|
| Tenebrionidae | A | 13.55 mg/mL | [ | |
|
|
| Brentidae | A | 1.83 μg/g | [ |
|
| Brentidae | A | 1.82 μg/g | [ | |
|
| Cerambycidae | N | [ | ||
|
| Chrysomelidae | A | 9.49 // 1.18 | [ | |
|
| Chrysomelidae | A | 2.10 // 5.18 | [ | |
|
| Chrysomelidae | A | 6.86 // 6.54 | [ | |
|
| Tenebrionidae | A | 26.52 // 50 μg/cm2 | [ | |
|
|
| Brentidae | A | 0.69 μg/g | [ |
|
| Brentidae | A | 0.57 μg/g | [ | |
|
| Chrysomelidae | A | 0.7 // 320.13 | [ | |
|
| Tenebrionidae | N | [ | ||
|
|
| Chrysomelidae | A | 77 µg/cm2 | [ |
|
| Curculionidae | A | [ | ||
|
| Curculionidae | A | [ | ||
|
|
| Curculionidae | A | 280 ng/μl | [ |
|
|
| Brentidae | A | 0.44 μg/g | [ |
|
| Brentidae | A | 0.34 μg/g | [ | |
|
| Cerambycidae | N | [ | ||
|
| Chrysomelidae | N | [ | ||
|
| Chrysomelidae | A | 13.1 // 18.8 | [ | |
|
| Curculionidae | N | [ | ||
|
|
| Chrysomelidae | A | [ | |
|
| Chrysomelidae | N | [ | ||
|
| Chrysomelidae | A | 293.79 | [ | |
|
| Chrysomelidae | N | [ | ||
|
| Coccinellidae | A | 209 | [ | |
|
| Scarabaeidae | N | [ | ||
|
| Tenebrionidae | LA | [ | ||
|
|
| Chrysomelidae | A | [ | |
| Scarabaeidae | A | [ | |||
|
| Tenebrionidae | LA | [ | ||
|
|
| Scarabaeidae | A | 5.72 μg/g | [ |
|
| Scarabaeidae | A | 2.00 μg/g | [ | |
|
| Tenebrionidae | N | [ | ||
|
|
| Chrysomelidae | A | [ | |
| Scarabaeidae | A | [ | |||
|
| Scarabaeidae | A | [ | ||
|
| Scarabaeidae | A | [ | ||
|
| Scarabaeidae | A | [ | ||
|
|
| Chrysomelidae | A | [ | |
|
| Chrysomelidae | A | [ | ||
|
| Chrysomelidae | A | [ | ||
|
|
| Cerambycidae | N | [ | |
|
| Chrysomelidae | N | [ | ||
|
| Chrysomelidae | N | [ | ||
|
| Coccinellidae | A | [ | ||
|
| Scarabaeidae | A | 1.75 × 10 × 108 CFU/g | [ | |
|
| Scarabaeidae | A | 1.6 × 10 × 108 CFU/g | [ | |
|
| Scarabaeidae | A | [ | ||
|
| Scarabaeidae | A | [ | ||
|
| Scarabaeidae | A | 9.24 × 10 × 108 CFU/g | [ | |
|
| Scarabaeidae | A | 12.3 μg/g | [ | |
|
| Tenebrionidae | A | 7.71 // 10 μg/cm2 | [ | |
|
| Tenebrionidae | N | [ | ||
|
|
| Scarabaeidae | A | [ | |
|
| Scarabaeidae | A | [ | ||
|
| Scarabaeidae | A | 17.0 μg/g | [ | |
|
|
| Scarabaeidae | A | 19.6 μg/g | [ |
|
|
| Chrysomelidae | A | [ | |
|
| Scarabaeidae | A | [ | ||
|
| Scarabaeidae | A | 0.9 × 10 × 108 CFU/mL | [ | |
|
| Scarabaeidae | A | [ | ||
|
| Tenebrionidae | N | [ | ||
|
| Tenebrionidae | N | [ | ||
|
|
| Scarabaeidae | N | [ | |
|
| Scarabaeidae | N | [ | ||
|
| Scarabaeidae | N | [ | ||
|
| Tenebrionidae | N | [ | ||
|
|
| Scarabaeidae | N | [ | |
|
| Scarabaeidae | N | [ | ||
|
|
| Curculionidae | A | 2.83–8.93 | [ |
|
|
| Scarabaeidae | N | [ | |
|
| Scarabaeidae | N | [ | ||
|
| Scarabaeidae | A | 3.18 × 10 × 1010 CFU/g | [ | |
|
|
| Scarabaeidae | A | [ | |
|
|
| Chrysomelidae | N | [ | |
|
| Chrysomelidae | N | [ | ||
|
| Chrysomelidae | N | [ | ||
|
| Curculionidae | N | [ | ||
|
|
| Scarabaeidae | A | [ | |
|
| Tenebrionidae | N | [ | ||
|
|
| Curculionidae | A | 7.12 | [ |
|
|
| Tenebrionidae | LA | [ | |
|
|
| Chrysomelidae | N | [ | |
|
|
| Scarabaeidae | A | [ | |
|
|
| Curculionidae | A | 0.75 μg/well | [ |
|
| Tenebrionidae | A | 1.25 g/10 g | [ | |
|
|
| Brentidae | A | 1.01 μg/g | [ |
|
| Brentidae | A | 0.78 μg/g | [ | |
|
| Chrysomelidae | A | 39.4 μg/cm2 | [ | |
|
| Chrysomelidae | N | [ | ||
|
| Chrysomelidae | N | [ | ||
|
| Curculionidae | A | 3.12 μg/well | [ | |
|
|
| Chrysomelidae | N | [ | |
|
| Curculionidae | A | [ | ||
|
|
| Brentidae | A | 0.46 μg/g | [ |
|
| Brentidae | A | 0.42 μg/g | [ | |
|
| Chrysomelidae | A | [ | ||
|
| Curculionidae | A | [ | ||
|
| Scarabaeidae | A | [ | ||
|
| Tenebrionidae | A | 6.30 μg SC/μL | [ | |
|
|
| Chrysomelidae | N | [ | |
|
|
| Chrysomelidae | LA | [ | |
|
| Chrysomelidae | N | [ | ||
|
|
| Chrysomelidae | N | [ | |
|
|
| Chrysomelidae | A | 34.1 μg/well | [ |
|
| Chrysomelidae | A | 34 μg/cm2 | [ | |
|
|
| Bostrichidae | N | [ | |
|
| Chrysomelidae | A | [ | ||
|
| Chrysomelidae | A | 3 μg/cm2 | [ | |
|
| Cucujidae | LA | [ | ||
|
| Curculionidae | LA | [ | ||
|
| Dermestidae | N | [ | ||
|
| Tenebrionidae | LA | [ | ||
|
| Tenebrionidae | LA | [ | ||
|
| Tenebrionidae | N | [ | ||
|
|
| Chrysomelidae | A | 7 μg/cm2 | [ |
|
|
| Chrysomelidae | A | [ | |
|
|
| Chrysomelidae | N | [ | |
|
|
| Chrysomelidae | N | [ | |
|
|
| Chrysomelidae | N | [ | |
|
|
| Chrysomelidae | A | 147.3 μg/well | [ |
|
|
| Tenebrionidae | A | 1.25 g/10 g | [ |
|
|
| Chrysomelidae | N | [ | |
|
|
| Scarabaeidae | A | [ | |
|
|
| Scarabaeidae | N | [ | |
|
|
| Chrysomelidae | N | [ | |
|
| Chrysomelidae | N | [ | ||
|
| Chrysomelidae | A | [ | ||
|
| Tenebrionidae | A | 1.45 g/10 g | [ | |
|
|
| Chrysomelidae | A | [ | |
|
| Tenebrionidae | N | [ | ||
|
|
| Chrysomelidae | A | 132.6 | [ |
|
|
| Chrysomelidae | A | 25 μg/well | [ |
|
| Chrysomelidae | A | 10.8 μg/well | [ | |
|
| Chrysomelidae | A | [ | ||
|
| Curculionidae | A | 50.7 | [ | |
|
| Scarabaeidae | A | [ | ||
|
| Tenebrionidae | A | [ | ||
(a) The parameter is mortality. A = active; N = not active; LA = low activity, with significant inhibition of growth; (b) LC50 = lethal concentration that causes 50% mortality of the insects. Data are expressed in μg/mL, unless otherwise stated. “//” separate two different values of the LC50.
Figure 4Schematic representation of the particularities in the mechanism of action of crystal proteins against coleopteran pests. (1) Crystal solubilizes in the acidic conditions of the coleopteran midgut lumen and (2) activates into toxin by proteolytic processing of the protoxin by the specific digestive enzymes, specially cysteine and aspartic proteases. (3) Toxins are able to bind to a first receptor (CADR), (4) oligomerizate and (5) form an oligomeric pre-pore structure that (6) is able to bind to a second specific receptor (ADAM metalloproteases/GPI-anchored alkaline phosphatases/sodium solute symporters). This event induces the insertion into the membrane, leading to (7) pore formation and finally to cell lysis.
Insecticidal activity of Vip and Sip proteins against coleopteran pests.
| Crystal Type Toxin | Target Insect | Activity (a) | LC50 (b) | Reference | |
|---|---|---|---|---|---|
| Scientific Name | Family | ||||
|
|
| Chrysomelidae | A | [ | |
|
| Chrysomelidae | A | [ | ||
|
| Chrysomelidae | A | 1.07 | [ | |
|
| Chrysomelidae | A | 24 | [ | |
|
|
| Chrysomelidae | A | 1.05 | [ |
|
| Scarabaeidae | N | [ | ||
|
|
| Chrysomelidae | N | [ | |
|
|
| Scarabaeidae | N | [ | |
|
| Tenebrionidae | N | [ | ||
|
|
| Scarabaeidae | N | [ | |
|
| Scarabaeidae | N | [ | ||
|
| Scarabaeidae | N | [ | ||
|
|
| Chrysomelidae | N | [ | |
|
|
| Chrysomelidae | N | [ | |
|
|
| Tenebrionidae | N | [ | |
|
|
| Chrysomelidae | N | [ | |
|
|
| Scarabaeidae | N | [ | |
|
| Tenebrionidae | N | [ | ||
|
|
| Scarabaeidae | N | [ | |
|
| Scarabaeidae | N | [ | ||
|
| Scarabaeidae | N | [ | ||
|
|
| Chrysomelidae | A | [ | |
|
| Chrysomelidae | A | [ | ||
|
| Chrysomelidae | A | [ | ||
|
| Chrysomelidae | N | [ | ||
|
| Tenebrionidae | N | [ | ||
|
|
| Chrysomelidae | A | [ | |
|
|
| Chrysomelidae | N | [ | |
|
|
| Chrysomelidae | N | [ | |
|
|
| Tenebrionidae | N | [ | |
|
|
| Scarabaeidae | N | [ | |
|
| Tenebrionidae | N | [ | ||
|
|
| Scarabaeidae | A | 220 ng/g soil | [ |
|
| Scarabaeidae | A | 120 ng/g soil | [ | |
|
| Scarabaeidae | A | 80 // 2.33 ng/g soil | [ | |
|
|
| Tenebrionidae | N | [ | |
|
|
| Chrysomelidae | A | 213 | [ |
|
| Chrysomelidae | A | 4.91 | [ | |
|
| Chrysomelidae | A | 437 | [ | |
|
| Chrysomelidae | A | 37 | [ | |
|
| Curculionidae | A | 207 | [ | |
|
|
| Chrysomelidae | A | [ | |
|
|
| Chrysomelidae | A | [ | |
|
|
| Tenebrionidae | N | [ | |
(a) The parameter is mortality. A = active; N = not active; (b) LC50 = lethal concentration that causes 50% mortality of the insects. data are expressed in μg/mL, unless otherwise stated. “//” separate two different values of the LC50.