Borji F, Jalili P, Jafari S, Rahmani H (2011) Effect of starvation on aggressiveness against spider
mites and conspecifics in the predatory mite Neoseiulus californicus (Acari: Phytoseiidae). In:
First Persian Congress of acarology, international center for science, high technology &
environmental sciences, Kerman, 22–23 December 2011
Borji F, Jalili P, Jafari S, Rahmani H (2014) Effect of feeding on intraguild predator on aggressiveness of Phytoseiulus persimilis against Tetranychus urticae. In: 3rd Integrated Pest Management Conference (IPMC), University of Kerman, Kerman, 21–22 January 2014
Bostanian NJ, Akalach M (2006) The effect of indoxacarb and five other insecticides on
Phytoseiulus persimilis (Acari: Phytoseiidae), Amblyseius fallacies (Acari: Phytoseiidae) and
nymph of Orius insidiosus (Hemiptera: Anthocoridae). Pest Manag Sci 62:334–339
Brown JM, Wilson DS (1992) Local specialization of phoretic mites on sympatric carrion beetle
hosts. Ecology 73:463–478
Bruce WA, LeCato GL (1980) Pyemotes tritici: a potential new agent for biological control of the
red imported fire ant, Solenopsis invicta (Acari: Pyemotidae). Int J Acarol 6:271–274
Cadogan BL, Laing JE (1977) A technique for rearing the predaceous mite Balaustium putmani
(Acarina: Erythraeidae), with notes on its biology and life history. Can Entomol 109:1535–1544
Cakmak I, Janssen A, Sabelis MW, Baspinar H (2009) Biological control of an acarine pest by
single and multiple natural enemies. Biol Control 50:60–65
Calvo FJ, Bolckmans K, Belda JE (2012) Biological control-based IPM in sweet pepper greenhouses using Amblyseius swirskii (Acari: Phytoseiidae). Biocontrol Sci Tech 22(12):1398–1416
Calvo FJ, Knapp M, van Houten YM, Hoogerbrugge H, Belda JE (2014) Amblyseius swirskii: what
made this predatory mite such a successful biocontrol agent? Exp Appl Acarol 65(4):419–33
Camporese P, Duso C (1995) Life history and life table parameters of the predatory mite
Typhlodromus talbii. Entomol Exp Appl 77:149–157
Castagnoli M (1984) Contributo alla conoscenza dei Tideidi (Acarina: Tydeidae) delle piante
coltivate in Italia [in Italian with English summary]. Redia 67:307–322
Castilho RC, Venancio R, Narita JPZ (2015) Mesostigmata as biological control agents, with
emphasis on Rhodacaroidea and Parasitoidea. In: Carrillo D, de Moraes GJ, Peña JE (eds)
Prospects for biological control of plant feeding mites and other harmful organisms. Springer
International, Cham, pp 1–31
Castro TMMG (2008) Estudos taxonômicos e biológicos de Cunaxidae (Acari: Prostigmata) do
Brasil. Thesis, University of São Paulo
Cédola CV, Sánchez NE, Liljesthröm GG (2001) Effect of tomato leaf hairiness on functional and
numerical response of Neoseiulus californicus (Acari: Phytoseiidae). Exp Appl Acarol
25:819–831
Chant DA (1961) An experiment in biological control of Tetranychus telarius (L.) (Acarina:
Tetranychidae) in a greenhouse using the predacious mite Phytoseiulus persimilis
(Phytoseiidae). Can Entomol 93:437–443
Chi H (1988) Life-table analysis incorporating both sexes and variable development rate among
individuals. Environ Entomol 17(1):26–34
Chi H (1990) Timing of control based on the stage structure of pest populations: a simulation
approach. J Econ Entomol 83(4):1143–1150
Chi H (1994) Periodic mass rearing and harvesting based on the theories of both the age-specific life
table and the age-stage, two-sex life table. Environ Entomol 23(3):535–542
Chi H, Liu H (1985) Two new methods for the study of insect population ecology. Bull Inst Zool
Acad Sinica 24(2):225–240
Childers CC, Rock GC (1981) Observations on the occurrence and feeding habits of Balaustium
putmani (Acari: Erythraeidae) in North Carolina apple orchards. Int J Acarol 7:63–68
Chow A, Chau A, Heinz KM (2010) Compatibility of Amblyseius (Typhlodromips) swirskii
(Athias-Henriot) (Acari: Phytoseiidae) and Orius insidiosus (Hemiptera: Anthocoridae) for
biological control of Frankliniella occidentalis (Thysanoptera: Thripidae) on roses. Biol Control 53:188–196
3 Biological Control of Pests by Mites in Iran
123
mites and conspecifics in the predatory mite Neoseiulus californicus (Acari: Phytoseiidae). In:
First Persian Congress of acarology, international center for science, high technology &
environmental sciences, Kerman, 22–23 December 2011
Borji F, Jalili P, Jafari S, Rahmani H (2014) Effect of feeding on intraguild predator on aggressiveness of Phytoseiulus persimilis against Tetranychus urticae. In: 3rd Integrated Pest Management Conference (IPMC), University of Kerman, Kerman, 21–22 January 2014
Bostanian NJ, Akalach M (2006) The effect of indoxacarb and five other insecticides on
Phytoseiulus persimilis (Acari: Phytoseiidae), Amblyseius fallacies (Acari: Phytoseiidae) and
nymph of Orius insidiosus (Hemiptera: Anthocoridae). Pest Manag Sci 62:334–339
Brown JM, Wilson DS (1992) Local specialization of phoretic mites on sympatric carrion beetle
hosts. Ecology 73:463–478
Bruce WA, LeCato GL (1980) Pyemotes tritici: a potential new agent for biological control of the
red imported fire ant, Solenopsis invicta (Acari: Pyemotidae). Int J Acarol 6:271–274
Cadogan BL, Laing JE (1977) A technique for rearing the predaceous mite Balaustium putmani
(Acarina: Erythraeidae), with notes on its biology and life history. Can Entomol 109:1535–1544
Cakmak I, Janssen A, Sabelis MW, Baspinar H (2009) Biological control of an acarine pest by
single and multiple natural enemies. Biol Control 50:60–65
Calvo FJ, Bolckmans K, Belda JE (2012) Biological control-based IPM in sweet pepper greenhouses using Amblyseius swirskii (Acari: Phytoseiidae). Biocontrol Sci Tech 22(12):1398–1416
Calvo FJ, Knapp M, van Houten YM, Hoogerbrugge H, Belda JE (2014) Amblyseius swirskii: what
made this predatory mite such a successful biocontrol agent? Exp Appl Acarol 65(4):419–33
Camporese P, Duso C (1995) Life history and life table parameters of the predatory mite
Typhlodromus talbii. Entomol Exp Appl 77:149–157
Castagnoli M (1984) Contributo alla conoscenza dei Tideidi (Acarina: Tydeidae) delle piante
coltivate in Italia [in Italian with English summary]. Redia 67:307–322
Castilho RC, Venancio R, Narita JPZ (2015) Mesostigmata as biological control agents, with
emphasis on Rhodacaroidea and Parasitoidea. In: Carrillo D, de Moraes GJ, Peña JE (eds)
Prospects for biological control of plant feeding mites and other harmful organisms. Springer
International, Cham, pp 1–31
Castro TMMG (2008) Estudos taxonômicos e biológicos de Cunaxidae (Acari: Prostigmata) do
Brasil. Thesis, University of São Paulo
Cédola CV, Sánchez NE, Liljesthröm GG (2001) Effect of tomato leaf hairiness on functional and
numerical response of Neoseiulus californicus (Acari: Phytoseiidae). Exp Appl Acarol
25:819–831
Chant DA (1961) An experiment in biological control of Tetranychus telarius (L.) (Acarina:
Tetranychidae) in a greenhouse using the predacious mite Phytoseiulus persimilis
(Phytoseiidae). Can Entomol 93:437–443
Chi H (1988) Life-table analysis incorporating both sexes and variable development rate among
individuals. Environ Entomol 17(1):26–34
Chi H (1990) Timing of control based on the stage structure of pest populations: a simulation
approach. J Econ Entomol 83(4):1143–1150
Chi H (1994) Periodic mass rearing and harvesting based on the theories of both the age-specific life
table and the age-stage, two-sex life table. Environ Entomol 23(3):535–542
Chi H, Liu H (1985) Two new methods for the study of insect population ecology. Bull Inst Zool
Acad Sinica 24(2):225–240
Childers CC, Rock GC (1981) Observations on the occurrence and feeding habits of Balaustium
putmani (Acari: Erythraeidae) in North Carolina apple orchards. Int J Acarol 7:63–68
Chow A, Chau A, Heinz KM (2010) Compatibility of Amblyseius (Typhlodromips) swirskii
(Athias-Henriot) (Acari: Phytoseiidae) and Orius insidiosus (Hemiptera: Anthocoridae) for
biological control of Frankliniella occidentalis (Thysanoptera: Thripidae) on roses. Biol Control 53:188–196
3 Biological Control of Pests by Mites in Iran
123
