Rahmani H, Hosseini MS (2012) Social learning in the nonclonial predatory mite, Neoseiulus
californicus (Acari: Phytoseiidae), decreases cost of forgoing activities. In: 20th Iranian plant
protection Congress. Shiraz University, Shiraz, 26–29 August 2012
Rahmani H, Fathipour Y, Kamali K (2009a) Life history and population growth parameters of
Neoseiulus californicus (Acari: Phytoseiidae) fed on Thrips tabaci (Thysanoptera: Thripidae) in
laboratory condition. Syst Appl Acarol 14:91–100
Rahmani H, Hoffmann D, Walzer A, Schausberger P (2009b) Adaptive learning in the foraging
behavior of the predatory mite Phytoseiulus persimilis. Behav Ecol 20:946–950
Rahmani H, Fathipour Y, Kamali K (2010) Spatial distribution and seasonal activity of Panonychus
ulmi (Acari: Tetranychidae) and its predator Zetzellia mali (Acari: Stigmaeidae) in Apple
Orchards of Zanjan, Iran. J Agric Sci Technol 12(2):155–165
Rahmani H, Saboori A, Hajiqanbar H (2012) Acarology. University of Zanjan Press, Zanjan.
(in Farsi)
Rahmani H, Daneshmandi A, Walzer A (2015) Intraguild interactions among three spider mite
predators: predation preference and effects on juvenile development and oviposition. Exp Appl
Acarol 67:493–505
Rasmy AH, El-Banhawy EM (1974) Behaviour and bionomics of the predatory mite, Phytoseius
plumifer (Acarina: Phytoseiidae) as affected by physical surface features of host plant.
Entomophaga 19:255–257
Raut SK, Panigrahi A (1991) The mite Fuscuropoda marginata (C.L. Koch) for the control of pest
slugs Laevicaulis alte (Ferussac). Mod Acarol 12:683–687
Reis PR, Sousa EO, Teodoro AV, Neto MP (2003) Effect of prey densities on the functional and
numerical response of two species of predaceous mites (Acari: Phytoseiidae). Neotrop Entomol
32:461–467
Rezaei M, Askarieh S (2016) Effect of different pollen grains on life table parameters of Neoseiulus
barkeri (Acari: Phytoseiidae). Persian J Acarol 5(3):239–253
Rezaie M, Saboori A, Baniameri V (2018) The effect of strawberry cultivars, infested with
Tetranychus urticae (Acari: Tetranychidae), on the olfactory response of the predatory mite
Neoseiulus californicus (Acari: Phytoseiidae). J Berry Res 8:71–80
Rhodes EM, Liburd OE, Kelts C, Rondon SI, Francis RR (2006) Comparison of single and
combination treatments of Phytoseiulus persimilis, Neoseiulus californicus, and Acramite
(bifenazate) for control of two-spotted spider mites in strawberries. Exp Appl Acarol
39:213–225
Rhule EL, Majerus ME, Jiggins FM, Ware RL (2010) Potential role of the sexually transmitted mite
Coccipolipus hippodamiae in controlling populations of the invasive ladybird Harmonia
axyridis. Biol Control 53:243–247
Riahi E, Fathipour Y, Talebi AA, Mehrabadi M (2016) Pollen quality and predator viability: life
table of Typhlodromus bagdasarjani on seven different plant pollens and two-spotted spider
mite. Syst Appl Acarol 21:1399–1412
Riahi E, Fathipour Y, Talebi AA, Mehrabadi M (2017a) Linking life table and consumption rate of
Amblyseius swirskii (Acari:Phytoseiidae) in presence and absence of different plant pollens.
Ann Entomol Soc Am 110:244–253
Riahi E, Fathipour Y, Talebi AA, Mehrabadi M (2017b) Attempt to develop cost-effective rearing
of Amblyseius swirskii (Acari: Phytoseiidae): assessment of different artificial diets. J Econ
Entomol 110:1525–1532
Riahi E, Fathipour Y, Talebi AA, Mehrabadi M (2018a) Interactions among food diets and rearing
substrates sffect development and population growth rate of Typhlodromus bagdasarjani. Syst
Appl Acarol 23(9):1845–1856
Riahi E, Fathipour Y, Talebi AA, Mehrabadi M (2018b) Factitious prey and artificial diets: do they
all have the potential to facilitate rearing of Typhlodromus bagdasarjani (Acari: Phytoseiidae)?
Int J Acarol 44(2–3):121–128
Riddick EW, Cottrell TE, Kidd KA (2009) Natural enemies of the Coccinellidae: parasites,
pathogens, and parasitoids. Biol Control 51:306–312
136
H. Hajiqanbar and A. Farazmand
californicus (Acari: Phytoseiidae), decreases cost of forgoing activities. In: 20th Iranian plant
protection Congress. Shiraz University, Shiraz, 26–29 August 2012
Rahmani H, Fathipour Y, Kamali K (2009a) Life history and population growth parameters of
Neoseiulus californicus (Acari: Phytoseiidae) fed on Thrips tabaci (Thysanoptera: Thripidae) in
laboratory condition. Syst Appl Acarol 14:91–100
Rahmani H, Hoffmann D, Walzer A, Schausberger P (2009b) Adaptive learning in the foraging
behavior of the predatory mite Phytoseiulus persimilis. Behav Ecol 20:946–950
Rahmani H, Fathipour Y, Kamali K (2010) Spatial distribution and seasonal activity of Panonychus
ulmi (Acari: Tetranychidae) and its predator Zetzellia mali (Acari: Stigmaeidae) in Apple
Orchards of Zanjan, Iran. J Agric Sci Technol 12(2):155–165
Rahmani H, Saboori A, Hajiqanbar H (2012) Acarology. University of Zanjan Press, Zanjan.
(in Farsi)
Rahmani H, Daneshmandi A, Walzer A (2015) Intraguild interactions among three spider mite
predators: predation preference and effects on juvenile development and oviposition. Exp Appl
Acarol 67:493–505
Rasmy AH, El-Banhawy EM (1974) Behaviour and bionomics of the predatory mite, Phytoseius
plumifer (Acarina: Phytoseiidae) as affected by physical surface features of host plant.
Entomophaga 19:255–257
Raut SK, Panigrahi A (1991) The mite Fuscuropoda marginata (C.L. Koch) for the control of pest
slugs Laevicaulis alte (Ferussac). Mod Acarol 12:683–687
Reis PR, Sousa EO, Teodoro AV, Neto MP (2003) Effect of prey densities on the functional and
numerical response of two species of predaceous mites (Acari: Phytoseiidae). Neotrop Entomol
32:461–467
Rezaei M, Askarieh S (2016) Effect of different pollen grains on life table parameters of Neoseiulus
barkeri (Acari: Phytoseiidae). Persian J Acarol 5(3):239–253
Rezaie M, Saboori A, Baniameri V (2018) The effect of strawberry cultivars, infested with
Tetranychus urticae (Acari: Tetranychidae), on the olfactory response of the predatory mite
Neoseiulus californicus (Acari: Phytoseiidae). J Berry Res 8:71–80
Rhodes EM, Liburd OE, Kelts C, Rondon SI, Francis RR (2006) Comparison of single and
combination treatments of Phytoseiulus persimilis, Neoseiulus californicus, and Acramite
(bifenazate) for control of two-spotted spider mites in strawberries. Exp Appl Acarol
39:213–225
Rhule EL, Majerus ME, Jiggins FM, Ware RL (2010) Potential role of the sexually transmitted mite
Coccipolipus hippodamiae in controlling populations of the invasive ladybird Harmonia
axyridis. Biol Control 53:243–247
Riahi E, Fathipour Y, Talebi AA, Mehrabadi M (2016) Pollen quality and predator viability: life
table of Typhlodromus bagdasarjani on seven different plant pollens and two-spotted spider
mite. Syst Appl Acarol 21:1399–1412
Riahi E, Fathipour Y, Talebi AA, Mehrabadi M (2017a) Linking life table and consumption rate of
Amblyseius swirskii (Acari:Phytoseiidae) in presence and absence of different plant pollens.
Ann Entomol Soc Am 110:244–253
Riahi E, Fathipour Y, Talebi AA, Mehrabadi M (2017b) Attempt to develop cost-effective rearing
of Amblyseius swirskii (Acari: Phytoseiidae): assessment of different artificial diets. J Econ
Entomol 110:1525–1532
Riahi E, Fathipour Y, Talebi AA, Mehrabadi M (2018a) Interactions among food diets and rearing
substrates sffect development and population growth rate of Typhlodromus bagdasarjani. Syst
Appl Acarol 23(9):1845–1856
Riahi E, Fathipour Y, Talebi AA, Mehrabadi M (2018b) Factitious prey and artificial diets: do they
all have the potential to facilitate rearing of Typhlodromus bagdasarjani (Acari: Phytoseiidae)?
Int J Acarol 44(2–3):121–128
Riddick EW, Cottrell TE, Kidd KA (2009) Natural enemies of the Coccinellidae: parasites,
pathogens, and parasitoids. Biol Control 51:306–312
136
H. Hajiqanbar and A. Farazmand
