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      Induction of insect plant resistance to the spittlebug Mahanarva fimbriolata Stål (Hemiptera: Cercopidae) in sugarcane by silicon application

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      , ,
      Neotropical Entomology
      Sociedade Entomológica do Brasil
      Saccharum officinarum, sugarcane cultivar, silicon, pest

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          Abstract

          Changes in the agroecosystem with the increase of green cane harvesting in Brazil affected the insect populations associated to this crop, and secondary pests like the spittlebug Mahanarva fimbriolata Stål, became much more important. Many studies have demonstrated the active role played by silicon in plant defense against herbivory. The objective of this study was to evaluate the effects of silicon applications on the biology of the spittlebug reared on two resistant (SP79-1011 and SP80-1816) and one susceptible (SP81-3250) sugarcane cultivars. Sugarcane plants were grown under greenhouse conditions and submitted to different treatments: with and without silicon fertilizer in two different soil type (sandy and clay soil). The newly hatched nymphs were transferred to sugarcane roots and placed into boxes with lids, to keep a moistened and dark environment favoring their growth and maintenance of the root system, providing food access to the developing nymphs. After emergence, adult males and females were placed in cages for mating and oviposition. The silicon absorbed and accumulated in the plant caused an increase in nymphal mortality, and depending on the sugarcane cultivar tested this element also provided an increase in the duration of the nymphal stage and a decrease in the longevity of males and females. 'SP79-1011' presented the highest silicon content in leaves, and M. fimbriolata had the highest nymph mortality and the shortest female longevity. The pre-oviposition period, fecundity and egg viability were not affected by the silicon content in plants or the cultivar used.

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          Host plant quality and fecundity in herbivorous insects.

          Host plant quality is a key determinant of the fecundity of herbivorous insects. Components of host plant quality (such as carbon, nitrogen, and defensive metabolites) directly affect potential and achieved herbivore fecundity. The responses of insect herbivores to changes in host plant quality vary within and between feeding guilds. Host plant quality also affects insect reproductive strategies: Egg size and quality, the allocation of resources to eggs, and the choice of oviposition sites may all be influenced by plant quality, as may egg or embryo resorption on poor-quality hosts. Many insect herbivores change the quality of their host plants, affecting both inter- and intraspecific interactions. Higher-trophic level interactions, such as the performance of predators and parasitoids, may also be affected by host plant quality. We conclude that host plant quality affects the fecundity of herbivorous insects at both the individual and the population scale.
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            Silicon nutrition and sugarcane production: A review1

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              Silicon impedes stalk penetration by the borer Eldana saccharina in sugarcane

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                Author and article information

                Journal
                ne
                Neotropical Entomology
                Neotrop. entomol.
                Sociedade Entomológica do Brasil (Londrina, PR, Brazil )
                1519-566X
                1678-8052
                June 2011
                : 40
                : 3
                : 387-392
                Affiliations
                [01] Piracicaba SP orgnameUSP orgdiv1ESALQ orgdiv2Depto Entomologia e Acarologia Brasil
                Article
                S1519-566X2011000300013 S1519-566X(11)04000313
                10.1590/S1519-566X2011000300013
                a435ebb2-e6e6-4225-9005-fb4a599646d9

                This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.

                History
                : 26 March 2010
                : 17 December 2010
                Page count
                Figures: 0, Tables: 0, Equations: 0, References: 22, Pages: 6
                Product

                SciELO Brazil

                Categories
                Pest Management

                Saccharum officinarum,sugarcane cultivar,silicon,pest
                Saccharum officinarum, sugarcane cultivar, silicon, pest

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