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Articles

Effects of plant probiotic bacteria and herbivore-induced plant volatiles on life table parameters of Tetranychus urticae (Acari: Tetranychidae) on kidney bean’s attached leaves

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Pages 520-527 | Received 09 Dec 2020, Accepted 12 Jul 2021, Published online: 01 Aug 2021

References

  • Aktar W, Sengupta D, Chowdhury A. 2009. Impact of pesticides use in agriculture: their benefits and hazards. Interdisciplinary Toxicology. 2:1–12.
  • Bashan Y, Holguin G. 1998. Proposal for the division of plant growth-promoting rhizobacteria into two classifications: biocontrol-PGPB (plant growth-promoting bacteria) and PGPB. Soil Biology and Biochemistry. 30:1225–1228.
  • Bruinsma M, Posthumus MA, Mumm R, Muller JM, Van Loon JJ, Dicke M. 2009. Jasmonic acid-induced volatiles of Brassica oleracea attract parasitoids: effects of time and dose, and comparison with induction by herbivores. Journal of Experimental Botany. 60:2575–2587.
  • Chi H. 1988. Life-table analysis incorporating both sexes and variable development rates among individuals. Environmental Entomology. 17:26–34.
  • Chi H 2020. TWOSEX-MSChart: a computer program for the age-stage, two-sex life table analysis. http://140.120.197.173/ecology/download/twosex-mschart-b100000.rar.
  • Chi H, Liu H. 1985. Two new methods for the study of insect population ecology. Bulletin of the Institute of Zoology, Academia Sinica. 24:225–240.
  • Choh Y, Ozawa R, Takabayashi J. 2004. Effects of exogenous jasmonic acid and benzo (1,2,3) thiadiazole- 7carbothioic acid S-methyl ester (BTH), a functional analogue of salicylic acid, on the egg production of herbivorous mite Tetranychus urticae (Acari: Tetranychidae). Applied Entomology and Zoology. 39:311–314.
  • Choi HK, Song GC, Yi HS, Ryu CM. 2014. Field evaluation of the bacterial volatile derivative 3-pentanol in priming for induced resistance in pepper. Journal of Chemical Ecology. 40:882–892.
  • Conrath U, Beckers GJM, Flors V, Garcia-Agustin P, Jakab G, Mauch F, Newman MA, Pieterse CMJ, Poinssot B, Pozo MJ, et al. 2006. Priming: getting ready for battle. Molecular Plant-Microbe Interactions. 19:1062–1071.
  • Dahmardeh A, Latifi M, Saberi Riseh R. 2018. Effect of induced resistance in bean plants on Tetranychus urticae life table parameters. Systematic and Applied Acarology. 23:1627–1640.
  • De Boer JG, Dicke M. 2004. The role of methyl salicylate in prey searching behavior of the predatory mite Phytoseiulus persimilis. Journal of Chemical Ecology. 30:255–271.
  • Dicke M, Gols R, Ludeking D, Posthumus. M. 1999. Jasmonic acid and herbivory differentially induce carnivore-attracting plant volatiles in lima bean plants. Journal of Chemical Ecology. 25:1907–1922.
  • Dicke M, Sabelis MW. 1988. How plants obtain predatory mites as bodyguards. Netherlands Journal of Zoology. 38:145–168.
  • Dicke M, Van Beek TA, Posthumus MA, Dom NB, van Bokhoven H, De Groot AE. 1990. Isolation and identification of volatile kairomone that affects acarine predator-prey interactions Involvement of host plant in its production. Journal of Chemical Ecology. 16:381–396.
  • Dicke M, Van Loon JA, Soler R. 2009. Chemical complexity of volatiles from plants induced by multiple attack. Nature Chemical Biology. 5:317–324.
  • Durrant WE, Dong X. 2004. Systemic acquired resistance. Annual Review of Phytopathology. 42:185–209.
  • Farouk S, Osman MA. 2011. The effect of plant defense elicitors on common bean (Phaseolus vulgaris L.) growth and yield in absence or presence of spider mite (Tetranychus urticae Koch) infestation. Journal of Stress Physiology & Biochemistry. 7:6–22.
  • Frost CJ, Mescher MC, Carlson JE, de Moraes CM. 2008. Plant defense priming against herbivores: getting ready for a different battle. Plant Physiology. 146:818–824.
  • Fry JD. 1989. Evolutionary adaptation to host plants in a laboratory population of the phytophagous mite Tetranychus urticae Koch. Oecologia. 81:559–565.
  • García-Fraile P, Carro L, Robledo M, Ramírez-Bahena MH, Flores-Félix JD, Fernández MT, Mateos PF, Rivas R, Igual JM, Martínez-Molina E, et al. 2012. Rhizobium promotes non-legumes growth and quality in several production steps: towards a biofertilization of edible raw vegetables healthy for humans. PLoS One. 7:e38122.
  • Garnica‐Vergara A, Barrera‐Ortiz S, Muñoz‐Parra E, Raya‐González J, Méndez‐Bravo A, Macías‐Rodríguez L, Ruiz‐Herrera LF, López‐Bucio J. 2016. The volatile 6‐pentyl‐2H‐pyran‐2‐one from Trichoderma atroviride regulates Arabidopsis thaliana root morphogenesis via auxin signaling and ETHYLENE INSENSITIVE 2 functioning. New Phytologist. 209:1496–1512.
  • Goodman D. 1982. Optimal life histories, optimal notation, and the value of reproductive value. The American Naturalist. 119:803–823.
  • Gould F. 1979. Rapid host range evolution in a population of the phytophagous mite Tetranychus urticae Koch. Evolution. 33:791–802.
  • Huang YB, Chi H. 2013. Life tables of Bactrocera cucurbitae (Diptera: Tephritidae): with an invalidation of the jackknife technique. Journal of Applied Entomology. 137:327–339.
  • Ishiwari H, Suzuki T, Maeda T. 2007. Essential compounds in herbivore-induced plant volatiles that attract the predatory mite Neoseiulus womersleyi. The Journal of Chemical Ecology. 33:1670–1681.
  • Islam MT, Hossain MM. 2012. Plant probiotics in phosphorus nutrition in crops, with special reference to rice. In: Maheshwari DK, editor. Bacteria in agrobiology: plant probiotics. Berlin: Springer-Verlag; p. 325–363.
  • Jafari S, Fathipour Y, Faraji F, Bagheri M. 2010. Demographic response to constant temperature in Neoseiulus barkeri (Phytoseiidae) fed on Tetranychus urticae (Tetranychidae). Systematic and Applied Acarology. 15(2):83–99.
  • Kessler A, Halitschke R. 2007. Specificity and complexity: the impact of herbivore-induced plant responses on arthropod community structure. Current Opinion in Plant Biology. 10:409–414.
  • Khan MMA, Haque E, Paul NC, Abdul Khaleque MD, Al-Garni SMS, Rahman M, Islam MT. 2017. Enhancement of growth and grain yield of rice in nutrient deficient soils by rice probiotic bacteria. Rice Science. 24:264–273.
  • Kloepper JW, Ryu CM. 2006. Bacterial endophytes as elicitors of induced systemic resistance. In: Schulz B, Boyke C, Sieber T, editors. Microbial root endophytes. Berlin: Springer-Verlag. p. 33–52.
  • Li Y, Shao J, Fu Y, Chen Y, Wang H, Xu Z, Feng H, Xun W, Liu Y, Zhang N, et al. 2021. The volatile cedrene from plant beneficial Trichoderma guizhouense modulates Arabidopsis root development through auxin transport and signaling. bioRxiv. 2021.2004.2009.439204.
  • Lugtenberg B, Kamilova F. 2009. Plant-growth-promoting rhizobacteria. Annual Review of Microbiology. 63:541–556.
  • Menendez E, Garcia-Fraile P. 2017. Plant probiotic bacteria: solutions to feed the world. AIMS Microbiology. 3:502–524.
  • Nam MH, Park MS, Kim HG, Yoo SJ. 2009. Biological control of strawberry Fusarium wilt caused by Fusarium oxysporum f. sp. Fragariae using Bacillus velezensis BS87 and RK1 formulation. Journal of Microbiology and Biotechnology. 19:520–524.
  • Niranjan Raj S, Chaluvaraju G, Amruthwsh KNA, Shetty HS. 2003. Induction of growth promotion and resistance against Downy Mildew on Pearl Millet (Pennisetum glaucum) by Rhizobacteria. Plant Disease. 87:380–384.
  • Omer AD, Granett J, Karban R, Villa EM. 2001. Chemically-induced resistance against multiple pests in cotton. International Journal of Pest Management. 47:49–54.
  • Ozawa R, Shimoda T, Kawaguchi M, Arimura G, Horiuchi J, Nishioka T, Takabayashi J. 2000. Lotus japonicus infested with herbivorous mites emits volatile compounds that attract predatory mites. Journal of Plant Research. 113:427–433.
  • Pena-Cortès H, Barrios P, Dorta F, Polanco V, Sanchez C, Sanchez E, Ramirez I. 2005. Involvement of Jasmonic acid and derivatives in plant responses to pathogens and insects and in fruit ripening. Journal of Plant Growth Regulation. 23:246–260.
  • Piechulla B, Lemfack MC, Kai M. 2017. Effects of discrete bioactive microbial volatiles on plants and fungi. Plant & Cell Environment. 40:2042–2067.
  • Pineda A, Zheng S, Van Loon JJA, Pieterse CMJ, Dicke M. 2010. Helping plants to deal with insects: the role of beneficial soil-borne microbes. Trends in Plant Science. 15:507–514.
  • Rashid MH, Khan A, Hossain MT, Chung YR. 2017. Induction of systemic resistance against aphids by endophytic Bacillus velezensis YC7010 via expressing PHYTOALEXIN DEFICIENT4 in Arabidopsis. Frontiers in Plant Science. 8:1–12.
  • Shimoda T. 2010. A key volatile infochemical that elicits a strong olfactory response of the predatory mite Neoseiulus californicus, an important natural enemy of the two-spotted spider mite Tetranychus urticae. Experimental and Applied Acarology. 50:9–22.
  • Singh SP. 1999. Production and utilization. In: Singh SP, editor. Common bean improvement in the twenty-first century. Dordrecht (Netherland): Kluwer. p. 1–24.
  • Song G, Ryu CM. 2013. Two volatile organic compounds trigger plant self-defense against a bacterial pathogen and a sucking insect in cucumber under open field conditions. International Journal of Molecular Sciences. 14:9803–9819.
  • Sun J, Zhang X, Cao C, Mei X, Wang N, Yan S, Zong S, Luo Y, Yang H, Shen Y. 2014. Similar metabolic changes induced by HIPVs exposure as herbivore in Ammopiptanthus mongolicus. PLoS One. 9:e95474.
  • Van Loon LC. 2007. Pant responses to plant growth-promoting rhizobacteria. European Journal of Plant Pathology. 119:243–254.
  • Vazquez-Chimalhua E, Ruiz-Herrera LF, Barrera-Ortiz S, Valencia-Cantero E, Lopez-Bucio J. 2019. The bacterial volatile dimethyl-hexa-decylamine reveals an antagonistic interaction between jasmonic acid and cytokinin in controlling primary root growth of Arabidopsis seedlings. Protoplasma. 256:643–654.
  • Veyrat N, Robert CAM, Turlings TCJ, Erb M. 2016. Herbivore intoxication as a potential primary function of an inducible volatile plant signal. Journal of Ecology. 104:591–600.
  • Warabieda W, Olszak RW. 2010. Effect of exogenous methyl jasmonate on numerical growth of the population of the two-spotted spider mite (Tetranychus urticae Koch.) on strawberry plants and young apple trees. Journal of Plant Protection Research. 50:241–244.
  • Wasternack C, Parthier B. 1997. Jasmonate-signalled plant gene expression. Trends in Plant Science. 2:302–307.
  • Worrall D, Holroyd GF, Moore JP, Glowacz M, Croft P, Taylor JE, Paul ND, Roberts MR. 2012. Treating seeds with activators of plant defence generates long lasting priming of resistance to pests and pathogens. New Phytologist. 193:770–778.
  • Zaid WRA, Mowafy AM, El-Demerdash A. 2018. The effect of Bacillus species on the response of common bean to Tetranychus urticae (Acari: Tetranychidae) infestation. Journal of Plant Protection Research. 1:122–130.
  • Zehnder G, Klopper J, Yao C, Wei G. 1997. Induction of systemic resistance in cucumber against cucumber beetles (Coleoptera: Chrysomelidae) by plant growth-promoting rhizobacteria. Journal of Economic Entomology. 90:391–396.

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