* Ibrahim IKA, Mokbel AA, Handoo ZA (2010) Current status of phytoparasitic nematodes and their host plants in Egypt. Nematropica 40, 239-262.
------- Referring to other publications and it does not specify whether the nematode was found in the roots or in the soil.
* EPPO (2023) Pest risk analysis for Tetranychus mexicanus. EPPO, Paris
------- uncertain host (see PRA for details)
* Mendonça RS, Navia D, Diniz IR & Flechtmann CHW (2011) South American spider mites: New hosts and localities. Journal of Insect Science, 11(121), 1–18.
* Parrella G, Gognalons P, Gebre-Selassie K, Vovlas C, Marchoux G (2003) An update of the host range of tomato spotted wilt virus. Journal of Plant Pathology 85(4), 227-264.
------- Artificial transmission.
* Fontenele RS, Bhaskara A, Cobb IN, Majure LC, Salywon AM, Avalos-Calleros JA, Argüello-Astorga GR, Schmidlin K, Roumagnac P, Ribeiro SG, Kraberger S (2021) Identification of the begomoviruses squash leaf curl virus and watermelon chlorotic stunt virus in various plant samples in North America. Viruses 13(5), 810. https://doi.org/10.3390/v13050810
------- listed as 'cotton' without a reference.
* Mendes MAS, Dianese JC, Urben A (2019) Fungos em Plants no Brasil. 2ª Edição ampliada e revisada. – Brasília, DF: Escola Nacional de Gestão Agropecuária, 970 pages.
* Clark SM, LeDoux DG, Seeno TN, Riley EG, Gilbert AJ, Sullivan JM (2004) Host plants of leaf beetle species occurring in the United States and Canada (Coleoptera: Megalopodidae, Orsodacnidae, Chrysomelidae, excluding Bruchinae). Coleopterists Society, Special Publication 2, 1-476.
-------- Adult host.
* Muppudathi SP, Natarajan G, Ganesan MV, Sevugapperumal N, Subbarayalu M, Samuel KJ, Perumal R (2020) Role of Thrips palmi and Parthenium hysterophorus pollen in active spread of tobacco streak virus in the cotton ecosystem, Virus Research, 284, https://doi.org/10.1016/j.virusres.2020.197979.
* Kouadio H, Kouakou M, Bini KK, Koffi KJ, Ossey CL, Kone PW, Adepo-Gourene AB, Ochou OG (2024) Annual and geographical variations in the specific composition of jassids and their damage on cotton in Ivory Coast. Scientific Reports 14(1), 2094. https://doi.org/10.1038/s41598-024-52127-y
* Diaz-Silva F (2011) [Agroecological aspects for the integrated management of Prodiplosis longifila Gagné in the irrigation of Chavimochic]. Escuela de Ciencias Biológicas, Universidad de Trujillo, Trujillo, PERU (in Spanish).
* Faske TR, Kandel Y, Allen TW, Grabau ZJ, Hu J, Kemerait RC, Lawrence GW, Lawrence KS, Mehl HL, Overstreet C, Thiessen LD (2022) Meta-Analysis of the Field Efficacy of Seed-and Soil-Applied Nematicides on Meloidogyne incognita and Rotylenchulus reniformis Across the US Cotton Belt. Plant Disease 106(8), 2228-2238.
* Mound LA, Palmer JM (1981) Identification, distribution and host-plants of the pest species of Scirtothrips (Thysanoptera: Thripidae). Bulletin of Entomological Research 71, 467-479.
* Klassen W, Seal DR, Ciomperlik MA, Fieslemann DA (2008) The chilli thrips, Scirtothrips dorsalis: current status in the Greater Caribbean Region. Proceeedings of the Caribbean food crops society, 44(1), 103-117.
* Abdel-Salam FA, Elbadry EA, Abo Elghar MR, Hassan SM, Asal MA (1971) The effect of four host plants on the pupal development and adult fecundity of the cotton leafworm Spodoptera littoralis (Boisd.). Zeitschrift fur Angewandte Entomologie 68(3), 326-330.
* Ochoa R, Aguilar H & Vargas C (1994) Phytophagous mites of America Central: an illustrated guide. CATIE.
* Aranda B & Flechtman C (1971) A report on the Tetranychidae of Paraguay. Proceedings of the Entomological Society of Washington, 73, 29–33.
* Reed W (1974) The false codling moth, Cryptophlebia leucotreta Mayr. (Lepidoptera: Olethreutidae) as a pest of cotton in Uganda. Cotton Growing Review 51: 213-225.
* Hamburger M, Zarabi L, Weiss M, Argaman Q, Kuslitzky W & Klein K (2001) False codling moth (Cryptophlebia leucotreta) in Israel. Phytoparasitica, 29(1): 84-84.
* Amutha M, Rachana RR (2022) A new host record for the invasive thrips Thrips parvispinus Karny from India. Indian Journal of Entomology, 1–3. https://doi.org/10.55446/IJE.2021.354
* Burke HR, Clark WE, Cate JR, Fryxell PA (1986) Origin and dispersal of the boll weevil. Bulletin of the Entomological Society of America 32(4), 228-238.
* Camino-Vilaro M, Castro-Hernandez L, Abreu-Herrera Y, Mena-Portales J, Cantillo-Perez T (2019) Fungi associated with invasive plant species in Cuba. Phytotaxa 419(3), 239-267.
* Mendes MAS, Dianese JC, Urben A (2019) Fungos em Plants no Brasil. 2ª Edição ampliada e revisada. – Brasília, DF: Escola Nacional de Gestão Agropecuária, 970 pages.
* Mulrean EN, Hine RB, Mueller JP (1984) Effect of Phymatotrichum root rot on yield and seed and lint quality in Gossypium hirsutum and G. barbadense. Plant Disease 68(5), 381-383.
* Ibrahim SS, Hassanein MK, Ali BAA (2017) Biological aspects of Spodoptera littoralis (Boisd) as affected by changes in exposed cotton to CO2 and heat stress. Bulletin of the Entomological Society of Egypt, Economy 43, 189-204.
* Mohamed HA, Alkordy MW, Atta AA (2019) Effect of host plants on biology of Spodoptera littoralis (Boisd.). Egyptian Academic Journal of Biological Sciences 12(6), 65-73.
* Delannoy E, Lyon BR, Marmey P, Jalloul A, Daniel JF, Montillet JL, Essenberg M, Nicole M (2005) Resistance of cotton towards Xanthomonas campestris pv. malvacearum. Annu. Rev. Phytopathol 43, 63-82.