213
Views
3
CrossRef citations to date
0
Altmetric
Articles

Development and population growth of the two-spotted spider mite (Tetranychus urticae Koch) on strawberry fertilized with different doses and sources of organic fertilizers

ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon & ORCID Icon
Pages 528-535 | Received 06 Nov 2020, Accepted 02 Aug 2021, Published online: 11 Aug 2021

References

  • Alizade M, Hosseini M, Awal MM, Goldani M, Hosseini A. 2016. Effects of nitrogen fertilization on population growth of two-spotted spider mite. Systematic and Applied Acarology. 21:947–956.
  • Attia S, Grissa KL, Lognay G, Bitume E, Hance T, Mailleux AC. 2013. A review of the major biological approaches to control the worldwide pest Tetranychus urticae (Acari: tetranychidae) with special reference to natural pesticides. Journal of Pest Science. 86:361–386.
  • Awmack CS, Leather SR. 2002. Host plant quality and fecundity in herbivorous insects. Annual Review of Entomology. 47:817–844.
  • Benatto A, Penteado SC, Zawadneak MAC. 2019. Performance of Chaetosiphon fragaefolii (Hemiptera: aphididae) in different strawberry cultivars. Neotropical Entomology. 48:692–698.
  • Birkhofer K, Bezemer TM, Bloem J, Bonkowski M, Christensen S, Dubois D, Ekelund F, Fließbach A, Gunst L, Hedlund K, et al. 2008. Long-term organic farming fosters below and aboveground biota: implications for soil quality, biological control and productivity. Soil Biology and Biochemistry. 40:2297–2308.
  • Centner TJ. 2021. Pesticide usage is compromising people’s health in the United States: ideas for reducing damages. Agriculture. 11:486.
  • Chow A, Chau A, Heinz KM. 2009. Reducing fertilization for cut roses: effect on crop productivity and two-spotted spider mite abundance, distribution, and management. Journal of Economic Entomology. 102:1896–1907.
  • Christel DM 2017. The use of bokashi as a soil fertility amendment in organic spinach cultivation. Magister thesis, University of Vermont, USA 162p
  • Costa AF, Fornazier M, Bhering LL, Martins DDS, Teodoro P, Andrade JDS, Zanuncio Junior JS. 2017. Selection of strawberry cultivars with tolerance to Tetranychus urticae (Acari: tetranychidae) and high yield under different managements. Genetics and Molecular Research. 16:gmr16029599.
  • de Lillo E, Di Palma A, Nuzzaci G. 2001. Morphological adaptations of mite chelicerae to different trophic activities (Acari). Entomologica. 35:125–180.
  • Fahim SF, Momen FM, El-Saiedy ESM. 2020. Life table parameters of Tetranychus urticae (Trombidiformes: tetranychidae) on four strawberry cultivars. Persian Journal of Acarology. 9:43–56.
  • Galina J, Ilha L, Pagnoncelli J. 2013. Cultivo orgânico do morangueiro em substrato. Cadernos De Agroecologia. 8:1–4.
  • Gotyal BS, De RK, Selvaraj K, Satpathy S, Kumar M, Meena PN. 2016. Effect of nitrogen fertilizer on yellow mite infestation in Corchorus spp. Journal of Environmental Biology. 37:431–436.
  • Hata FT, Paula MT, Moreira AA, Ventura MU, Lima RF, Fregonezi GAF, Oliveira ALM. 2021. Abonos orgánicos y fertirrigación con estiércol de pollo hervido para el cultivo de fresas. Revista de la Facultad de Agronomía de la Universidad del Zulia. 38:342–359.
  • Hata FT, Ventura MU, de Souza MSDJ, de Sousa NV, Oliveira BG, Da Silva JB. 2019b. Mineral and organic fertilization affects Tetranychus urticae, pseudofruit production and leaf nutrient content in strawberry. Phytoparasitica. 47:513–521.
  • Hata FT, Ventura MU, Sousa V, Fregonezi GAF. 2019a. Low-cost organic fertilizations and bioactivator for arugula-radish intercropping. Emirates Journal of Food and Agriculture. 31:773–778.
  • Kirisik M, Erler F, Boyaci F, Bayram Y. 2021. Evaluation of resistance in 16 eggplant genotypes to the two-spotted spider mite, Tetranychus urticae Koch (Acari: tetranychidae). Phytoparasitica. 49:275–285.
  • Liu Z, Xu C, Beattie GA, Zhang X, Cen Y. 2019. Influence of different fertilizer types on life table parameters of citrus red mite, Panonychus citri (Acari: tetranychidae). Systematic and Applied Acarology. 24:2209–2218.
  • Maass V, Céspedes C, Cárdenas C. 2020. Effect of Bokashi improved with rock phosphate on parsley cultivation under organic greenhouse management. Chilean Journal of Agricultural Research. 80:444–451.
  • Malavolta E, Vitti E, Oliveira SA. 1997. Avaliação do estado nutricional das plantas: princípios e aplicações. 2 ed. Piracicaba: POTAFOS. p. 319.
  • Marques-Francovig CR, Mikami AY, Dutra V, Carvalho MG, Picareli B, Ventura MU. 2014. Organic fertilization and botanical insecticides to control two-spotted spider mite in strawberry. Ciência Rural. 44:1908–1914.
  • Meck ED, Kennedy GG, Walgenbach JF. 2013. Effect of Tetranychus urticae (Acari: tetranychidae) on yield, quality, and economics of tomato production. Crop Protection. 52:84–90.
  • Meena RS, Kumar S, Datta R, Lal R, Vijayakumar V, Brtnicky M, Sharma MP, Yadav GS, Jhariya MK, Jangir CK, et al. 2020. Impact of agrochemicals on soil microbiota and management: a Review. Land. 9:34.
  • Meftaul IM, Venkateswarlu K, Dharmarajan R, Annamalai P, Megharaj M. 2020. Pesticides in the urban environment: a potential threat that knocks at the door. Science of the Total Environment. 711:134612.
  • Moraes GJ, Flechtmann CHW 2008. Manual de acarologia: acarologia básica e ácaros de plantas cultivadas no Brasil. Editora Holos, Ribeirão Preto.
  • Motahari M, Kheradmand K, Roustaee AM, Talebi AA. 2014. The impact of cucumber nitrogen nutrition on life history traits of Tetranychus urticae (Koch) (Acari: tetranychidae). Acarologia. 54:443–452.
  • Najafabadi SSM, Shoushtari RV, Zamani AA, Arbabi M, Farazmand H. 2011. Effect of nitrogen fertilization on Tetranychus urticae Koch (Acari: tetranychidae) populations on common bean cultivars. American-Eurasian Journal of Agricultural & Environmental Sciences. 11:568–576.
  • Nogueira ARA, Souza GB 2005. Manual de laboratório: solo, água, nutrição vegetal, nutrição animal e alimentos. São Carlos: Embrapa Pecuária Sudeste. 13p.
  • Nyoike TW, Liburd OE. 2013. Effect of Tetranychus urticae (Acari: tetranychidae), on marketable yields of field-grown strawberries in North–Central Florida. Journal of Economic Entomology. 106:1757–1766.
  • Olle M. 2020. Bokashi technology as a promising technology for crop production in Europe. Journal of Horticultural Science and Biotechnology. 96:145–152.
  • Palmieri L, Masuero D, Martinatti P, Baratto G, Martens S, Vrhovsek U. 2017. Genotype‐by‐environment effect on bioactive compounds in strawberry (Fragaria x ananassa Duch.). Journal of the Science of Food and Agriculture. 97:4180–4189.
  • Park YL, Lee JH. 2002. Leaf cell and tissue damage of cucumber caused by two spotted spider mite (Acari: tetranychidae). Journal of Economic Entomology. 95:952–957.
  • Puspitarini RD, Fernando I, Rachmawati R, Hadi MS, Rizali A. 2021. Host plant variability affects the development and reproduction of Tetranychus urticae. International Journal of Acarology 1–6. doi:10.1080/01647954.2021.1915377
  • Quiroz M, Céspedes C. 2019. Bokashi as an amendment and source of nitrogen in sustainable agricultural systems: a review. Journal of Plant Nutrition and Soil Science. 19:237–248.
  • Reganold JP, Andrews PK, Reeve JR, Carpenter-Boggs L, Schadt CW, Alldredge JR, Ross CF, Davies NM, Zhou J. 2010. Fruit and soil quality of organic and conventional strawberry agroecosystems. Plos One. 5:12346.
  • Resende JTV, Lima Filho RB, Ribeiro LK, Corrêa JVW, Maciel CDDG, Youssef K. 2020. Strawberry genotypes with resistance to Tetranychus urticae mediated by leaf trichomes. Ciência e Agrotecnologia. 44:e006920.
  • Rioja C, Zhurov V, Bruinsma K, Grbic M, Grbic V. 2017. Plant-herbivore interactions: a case of an extreme generalist, the two-spotted spider mite Tetranychus urticae. Molecular Plant-Microbe Interactions. 30:935–945.
  • Santamaria ME, Arnaiz A, Rosa-Diaz I, González-Melendi P, Romero-Hernandez G, Ojeda-Martinez DA, Garcia A, Contreras E, Martinez M, Diaz I. 2020. Plant defenses against Tetranychus urticae: mind the gaps. Plants. 9:464.
  • Santos HG, Jacomine PKT, Anjos LHC, Oliveira VA, Lumbreras JF, Coelho MR, Almeida JA, Araujo Filho JC, Oliveira JB, Cunha TJF. 2018. Sistema brasileiro de classificação de solos. 5 edição. Brasília (DF): Embrapa, 2018.
  • Shahbazi H, Aminian H, Sahebani N, Halterman DA. 2010. Biochemical Evaluation of Resistance Responses of Potato to Different Isolates of Alternaria solani. Phytopathology. 100:454–459.
  • Sugawara R, Ullah MS, Ho C-C, Gotoh T. 2018. Impact of temperature-mediated functional responses of Neoseiulus womersleyi and N. longispinosus (Acari: Phytoseiidae) on Tetranychus urticae (Acari: Tetranychidae). Biological Control. 126:26–35.
  • Suski ZW, Badowska T. 1975. Effects of the host plant nutrition on the population of the two spotted spider mite Tetranychus urticae (Koch) (Acarina:Tetranychidae). Ekologia Polska. 23:185–209.
  • Van Raij B, Cantarella H, Quaggio JA, Furlani AMC. 1997. Recomendação de adubação e calagem para o Estado de São Paulo. Campinas, São Paulo: Instituto Agronômico de Campinas; p. 285.
  • Veromann E, Toome M, Kännaste A, Kaasik R, Copolovici L, Flink J, Kovács L, Narits L, Luik A, Niinemets Ü. 2013. Effects of nitrogen fertilization on insect pests, their parasitoids, plant diseases and volatile organic compounds in Brassica napus. Crop Protection. 43:79–88.
  • Warabieda W, Markiewicz M, Wójcik D. 2020. Mutual relations between jasmonic acid and acibenzolar-S-methyl in the induction of resistance to the two-spotted spider mite (Tetranychus urticae) in apple trees. Experimental and Applied Acarology. 82:59–79.
  • Wermelinger B, Oertli JJ, Baumgärtner J. 1991. Environmental factors affecting the life-tables ofTetranychus urticae (Acari: tetranychidae) III. Host-plant nutrition. Host-plant Nutrition. Experimental and Applied Acarology 12:259–274.
  • West K, Nansen C. 2014. Smart use of fertilizer to manage spider mites (Acari: tetranychidae)and other arthropod pests. Plant Science Today. 1:161–164.
  • Yactayo-Chang JP, Tang HV, Mendoza J, Christensen SA, Block AK. 2020. Plant defense chemicals against insect pests. Agronomy. 10:1156.
  • Žanić K, Dumičić G, Škaljac M, Ban SG, Urlić B. 2011. The effects of nitrogen rate and the ratio of NO3-: NH4+on Bemisia tabaci populations in hydroponic tomato crops. Crop Protection. 30:228–233.
  • Zhang Z-Q. 2003. Mites of greenhouses: identification, biology and control. Wallingford (England): CABI. p. 244.
  • Zhu Q, Yang Y, Zhong Y, Lao Z, O’Neill P, Hong D, Zhang K, Zhao S. 2020. Synthesis. Insecticidal Activity, Resistance, Photodegradation and Toxicity of Pyrethroids (A Review). Chemosphere. 254:126779.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.