Airenne KJ, Hu YC, Kost TA, Smith RH, Kotin RM, Ono C, Ylä-Herttuala S (2013) Baculovirus: an insect-derived vector for diverse gene transfer applications. MolTher 21(4):739–749
CAS
Google Scholar
Aljabr AM, Rizwan-ul-Haq M, Hussain A, Al-Mubarak AI, Al-Ayied HY (2014) Establishing midgut cell culture from Rhynchophorus ferrugineus (Olivier) and toxicity assessment against ten different insecticides. In Vitro Cell Dev-An 50:296–303
CAS
Article
Google Scholar
Charpentier C, Tian L, Cossette J, Lery X, Belloncik S (2002) Characterization of cell lines developed from the Colorado potato beetle, Leptinotarsa decemlineata Say (Coleoptera: Chrysomelidae). In Vitro Cell Dev-An 38:73–78
CAS
Article
Google Scholar
Chittaranjan S, McConechy M, Hou YC, Freeman JD, Devorkin L, Gorski SM (2009) Steroid hormone control of cell death and cell survival: molecular insights using RNAi. PLoS Genet 5(2):e1000379
Article
Google Scholar
Corley LS, Lavine MD (2006) A review of insect stem cell types. Semin Cell Dev Biol 17:510–517
CAS
Article
Google Scholar
Drugmand JC, Schneider YJ, Agathos SN (2012) Insect cells as factories for bio manufacturing. Biotechnol Adv 30:1140–1157
CAS
Article
Google Scholar
Goodman CL, Stanley D, Ringbauer JA, Beeman RW, Silver K, Park Y (2012) A cell line derived from the red flour beetle Triboliumcastaneum (Coleoptera: Tenebrionidae). In Vitro Cell Dev-An 48:426–433
Article
Google Scholar
Hakim RS, Blackburn MB, Corti P, Gelman DB, Goodman C, Elsen K, Loeb MJ, Lynn D, Soin T, Smagghe G (2007) Growth and mitogenic effects of arylphorin in vivo and in vitro. Arch Insect Biochem 64:63–73
CAS
Article
Google Scholar
Hakim RS, Cacci S, Loeb M, Smagghe G (2009) Primary culture of insect midgut cells. In Vitro Cell Dev-An 45:106–110
Article
Google Scholar
Holecova M, Maryanska-Nadachowska A, Rozek M (2013) Cytogenetic analysis of Otiorhynchus bisulcatus (Fabricius, 1781) and O. (Zadrehus) atroapterus (De Geer, 1775) (Coleoptera, Curculionidae, Entiminae) using C bands, NORs, and DAPI/CMA3 staining. Folia Biol (Krakow) 61:177–183
Article
Google Scholar
Hoshino K, Hirose M, Jwabuchi K (2009) A new insect cell from the longicorn beetle Plagionotus christophi (Coleoptera: Cerambycidae). In Vitro Cell Dev-An 45:19–22
CAS
Article
Google Scholar
Hu J, Feng X, Yang Z, Chen Z, Zhang W (2014) A continuous cell line, SYSU-OfHe-C, from hemocytes of Ostrinia furnacalis possesses immune ability depending on the presence of larval plasma. Dev Comp Immunol 45:10–20
CAS
Article
Google Scholar
Jianghuai L, Fei H, Yongbo Y, Yutao X, Rong P, Hanchao Y, Xianchun L, Jianxin P, Huazhu H, Kaiyu L (2015) Establishment and characterization of a novel cell line from midgut tissue of Helicoverpa armigera(Lepidoptera: Noctuidae). In Vitro Cell Dev-An 51:562–571
Article
Google Scholar
Li J, He F, Yang Y, Xio Y, Peng R, Yao H, Li X, Peng J, Hong H, Liu K (2015) Establishment and characterization of novel cell line from midgut tissue of Helicoverp aarmigera (Lepidoptera: Noctuidae). In Vitro Cell Dev-An 51(6):562–571
CAS
Article
Google Scholar
Loeb MJ (2010) Factors affecting proliferation and differentiation of lepidopteran midgut stem cells. Arch Insect Biochem 74:1–16
CAS
Article
Google Scholar
Long SH, Mcintosh AH, Grasela JJ, Goodman CL (2002) The establishment of a Colorado potato beetle (Coleoptera: Chrysomelidae) pupal cell line. ApplEntomolZool 37:447–450
Google Scholar
Mitsuhashi JA (1995) Continuous cell line from pupal ovaries of the common cutworm, Spodopteralitura (Lepidoptera: Noctuidae). ApplEntomolZool 30(1):75–82
Google Scholar
Mitsuhashi JA (2003) Continuous cell line from the cupreous chafer Anomalacuprea Hope (Insecta: Coleoptera: Scarabaeidae). In Vitro Cell Dev-An 39:399–401
Article
Google Scholar
Pandya P, Upadhyay A, Thakkar B, Parikh P (2018) Evaluating the toxicological effects of agrochemicals on glucocorticoid receptor and serum cortisol level in Mozambique tilapia. Cogent Biol 4(1)
Rozek M, Lachowska D, Holecová M, Kajtoch L (2009) Karyology of parthenogenetic weevils (Coleoptera, Curculionidae): do meiotic prophase stages occur? Micron 40:881–885
Article
Google Scholar
Shao H-L, Zheng W-W, Liu P-C, Wang Q, Wang J-X, Zhao X-F (2008) Establishment of a new cell line from lepidopteran epidermis and hormonal regulation on the genes. PLoS One 3(9):123–127
Article
Google Scholar
Silva AA, Braga LS, Corrêa AS, Holmes VR, Johnston JS, Oppert B, Guedes RNC, Tavares MG (2018) Comparative cytogenetics and derived phylogenic relationship among Sitophilus grain weevils (Coleoptera, Curculionidae, Dryophthorinae). Comp Cytogenet 12(2): 223–245
Singhal S, Thakkar B, Pandya P, Parikh P (2018) Unraveling the diversity, phylogeny, and ecological role of cryptic Coleopteran species of Vadodara district: a first comparative approach from India. J Basic Appl Zool 79:53
Article
Google Scholar
Thakkar B, Parikh P (2018) Effects of host grains on the rice weevil Sitophilus oryzae (L.). Indian J Entomol 80(2018):12–21
Google Scholar
Zhang J, Xue-Mei C, Chun-Dong Z, Qian H, Zhanqi D, Ming-Ya C, Dong X-L, Pan C-X, Lu C, Pan M-H (2014) Differential susceptibilities to BmNPV infection of two cell lines derived from the same silkworm ovarian tissues. PLoS One 9:e105986
Article
Google Scholar
Zheng G, Li M, Li C (2014) Establishment and characterization of three new cell lines from the embryonic tissue of Holotrichia oblita Faldermann (Coleoptera: Scarabaeidae). In Vitro Cell Dev-An 50:483–188
CAS
Article
Google Scholar