Darboux I, Nielsen-LeRoux C, Charles JF, Pauron D (2001) The receptor of Bacillus sphaericus
binary toxin in Culex pipiens (Diptera: Culicidae) midgut: molecular cloning and expression.
Insect Biochem Mol Biol 31(10):981–990
Gabarty A, Salem HM, Fouda MA, Abas AA, Ibrahim AA (2014) Pathogencity induced by the
entomopathogenic fungi Beauveria bassiana and Metarhizium anisopliae in Agrotisipsilon
(Hufn.). J Radiat Res Appl Sci 7(1):95–100
Gautam RD (2008) Biological pest suppression. Westville Publishing House, New Delhi, p 288
Gelernter W, Schwab GE (1993) Transgenic bacteria, viruses, algae and other microorganisms as
Bacillus thuringiensis toxin delivery systems. Bacillus thuringiensis, an environmental biopesticide: theory and practice. John Wiley & Sons, New York, pp 89–104
Gill SS, Cowles EA, Pietrantonio PV (1992) The mode of action of Bacillus thuringiensis
endotoxins. Annu Rev Entomol 37(1):615–634
Gupta HCL, Siddiqui AU, Parihar A (2010) Bio pest management. Agrotech Pub, Academy
Huang SH, Xian JD, Kong SZ, Li YC, Xie JH, Lin J et al (2014) Insecticidal activity of pogostone
against Spodoptera litura and Spodoptera exigua (Lepidoptera: Noctuidae). Pest Manag Sci 70
(3):510–516
Kachhawa D (2017) Microorganisms as a biopesticides. J Entomol Zool Stud 5(3):468–473
Kavallieratos NG, Athanassiou CG, Michalaki MP, Batta YA, Rigatos HA, Pashalidou FG, Vayias
BJ (2006) Effect of the combined use of Metarhizium anisopliae (Metschinkoff) Sorokin and
diatomaceous earth for the control of three stored-product beetle species. Crop Prot 25
(10):1087–1094
Koul O (2011) Microbial biopesticides: opportunities and challenges. CAB Rev 6:1–26
Kumar S (2012) Biopesticides: a need for food and environmental safety. J Biofertil Biopestic 3:
e107. https://doi.org/10.4172/2155-6202.1000e107
Kumar S, Singh A (2015) Biopesticides: present status and the future prospects. J Fertil Pestic 6:
e129. https://doi.org/10.4172/2471-2728.1000e129
Kumar KK, Sridhar J, Murali-Baskaran RK, Senthil-Nathan S, Kaushal P, Dara SK, Arthurs S
(2019) Microbial biopesticides for insect pest management in India: current status and future
prospects. J Invertebr Pathol 165:74–81
Lacey LA, Grzywacz D, Shapiro-Ilan DI, Frutos R, Brownbridge M, Goettel MS (2015) Insect
pathogens as biological control agents: back to the future. J Invertebr Pathol 132:1–41
Marrone PG (2014) The market and potential for biopesticides. In: Gross AD, Coats JR, Duke SO,
Seiber JN (eds) Biopesticides: state of the art and future opportunities. American Chemical
Society, Washington, DC, pp 245–258
Mossa ATH (2016) Green pesticides: essential oils as biopesticides in insect-pest management. J
Environ Sci Technol 9(5):354
Olson S (2015) An analysis of the biopesticide market now and where it is going. Outlooks Pest
Manag 26(5):203–206
Pal GK, Kumar B, Shahi SK (2013) Antifungal activity of some common weed extracts against
phytopathogenic fungi Alternaria spp. Int J Univ Pharmacy Life Sci 3(2):6–14
Pedrini N, Crespo R, Juárez MP (2007) Biochemistry of insect epicuticle degradation by
entomopathogenic fungi. Comp Biochem Physiol C Toxicol Pharmacol 146(1-2):124–137
Prasad R, Kumar V, Prasad KS (2014) Nanotechnology in sustainable agriculture: present concerns
and future aspects. Afr J Biotechnol 13(6):705–713
Prasad R, Bhattacharyya A, Nguyen QD (2017) Nanotechnology in sustainable agriculture: recent
developments, challenges and perspectives. Front Microbiol 8:1014. https://doi.org/10.3389/
fmicb.2017.01014
Ruiu L (2018) Microbial biopesticides in agroecosystems. Agronomy 8(11):235
Sabbour MM, Abd-El-Aziz SE, Shadia E (2014) Control of Bruchidius incarnatus and Rhyzopertha
dominica using two entomopathogenic fungi alone or in combination with modified diatomaceous earth. Elixir Entomol 68:22239–22242
Salma M, Jogen CK (2011) A review on the use of biopesticides in insect pest management. Int J
Sci Adv Technol 1:169–178
11 Biopesticides for Pest Management
265
binary toxin in Culex pipiens (Diptera: Culicidae) midgut: molecular cloning and expression.
Insect Biochem Mol Biol 31(10):981–990
Gabarty A, Salem HM, Fouda MA, Abas AA, Ibrahim AA (2014) Pathogencity induced by the
entomopathogenic fungi Beauveria bassiana and Metarhizium anisopliae in Agrotisipsilon
(Hufn.). J Radiat Res Appl Sci 7(1):95–100
Gautam RD (2008) Biological pest suppression. Westville Publishing House, New Delhi, p 288
Gelernter W, Schwab GE (1993) Transgenic bacteria, viruses, algae and other microorganisms as
Bacillus thuringiensis toxin delivery systems. Bacillus thuringiensis, an environmental biopesticide: theory and practice. John Wiley & Sons, New York, pp 89–104
Gill SS, Cowles EA, Pietrantonio PV (1992) The mode of action of Bacillus thuringiensis
endotoxins. Annu Rev Entomol 37(1):615–634
Gupta HCL, Siddiqui AU, Parihar A (2010) Bio pest management. Agrotech Pub, Academy
Huang SH, Xian JD, Kong SZ, Li YC, Xie JH, Lin J et al (2014) Insecticidal activity of pogostone
against Spodoptera litura and Spodoptera exigua (Lepidoptera: Noctuidae). Pest Manag Sci 70
(3):510–516
Kachhawa D (2017) Microorganisms as a biopesticides. J Entomol Zool Stud 5(3):468–473
Kavallieratos NG, Athanassiou CG, Michalaki MP, Batta YA, Rigatos HA, Pashalidou FG, Vayias
BJ (2006) Effect of the combined use of Metarhizium anisopliae (Metschinkoff) Sorokin and
diatomaceous earth for the control of three stored-product beetle species. Crop Prot 25
(10):1087–1094
Koul O (2011) Microbial biopesticides: opportunities and challenges. CAB Rev 6:1–26
Kumar S (2012) Biopesticides: a need for food and environmental safety. J Biofertil Biopestic 3:
e107. https://doi.org/10.4172/2155-6202.1000e107
Kumar S, Singh A (2015) Biopesticides: present status and the future prospects. J Fertil Pestic 6:
e129. https://doi.org/10.4172/2471-2728.1000e129
Kumar KK, Sridhar J, Murali-Baskaran RK, Senthil-Nathan S, Kaushal P, Dara SK, Arthurs S
(2019) Microbial biopesticides for insect pest management in India: current status and future
prospects. J Invertebr Pathol 165:74–81
Lacey LA, Grzywacz D, Shapiro-Ilan DI, Frutos R, Brownbridge M, Goettel MS (2015) Insect
pathogens as biological control agents: back to the future. J Invertebr Pathol 132:1–41
Marrone PG (2014) The market and potential for biopesticides. In: Gross AD, Coats JR, Duke SO,
Seiber JN (eds) Biopesticides: state of the art and future opportunities. American Chemical
Society, Washington, DC, pp 245–258
Mossa ATH (2016) Green pesticides: essential oils as biopesticides in insect-pest management. J
Environ Sci Technol 9(5):354
Olson S (2015) An analysis of the biopesticide market now and where it is going. Outlooks Pest
Manag 26(5):203–206
Pal GK, Kumar B, Shahi SK (2013) Antifungal activity of some common weed extracts against
phytopathogenic fungi Alternaria spp. Int J Univ Pharmacy Life Sci 3(2):6–14
Pedrini N, Crespo R, Juárez MP (2007) Biochemistry of insect epicuticle degradation by
entomopathogenic fungi. Comp Biochem Physiol C Toxicol Pharmacol 146(1-2):124–137
Prasad R, Kumar V, Prasad KS (2014) Nanotechnology in sustainable agriculture: present concerns
and future aspects. Afr J Biotechnol 13(6):705–713
Prasad R, Bhattacharyya A, Nguyen QD (2017) Nanotechnology in sustainable agriculture: recent
developments, challenges and perspectives. Front Microbiol 8:1014. https://doi.org/10.3389/
fmicb.2017.01014
Ruiu L (2018) Microbial biopesticides in agroecosystems. Agronomy 8(11):235
Sabbour MM, Abd-El-Aziz SE, Shadia E (2014) Control of Bruchidius incarnatus and Rhyzopertha
dominica using two entomopathogenic fungi alone or in combination with modified diatomaceous earth. Elixir Entomol 68:22239–22242
Salma M, Jogen CK (2011) A review on the use of biopesticides in insect pest management. Int J
Sci Adv Technol 1:169–178
11 Biopesticides for Pest Management
265
