Silicon Fertilization Improves Physiological Responses in Sugarcane Cultivars Grown Under Water Deficit

Mônica Sartori de Camargo1, Breno Kennedy Lima Bezerra2, Lucas Almeida de Holanda2, Angélica Laureano de Oliveira3, André Cesar Vitti1, M. A. Silva2
1Pólo Centro Sul, Agência Paulista de Tecnologia dos Agronegócios (APTA), Piracicaba, 13412-050, Brazil
2Departamento de Produção e Melhoramento Vegetal, Faculdade de Ciências Agrárias, Universidade do Estado de São Paulo (UNESP), Botucatu, 18603-970, Brazil
3Centro de Ciências Agrárias, Universidade Federal de São Carlos, Araras, 13604-900, Brazil

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Agarie S, Uchida H, Agata W, Kubota F, Kaufman PT (1998) Effects of silicon on transpiration and leaf conductance in rice plants (Oryza sativa L.). Plant Prod Sci 1:89–95

Ahmed M, Qadeer U, Aslam MA (2014) Silicon application and drought tolerance mechanism of sorghum. Afr J Agric Res 6:594–607

Barbosa FS, Coelho RD, Maschio R, Lima JGS, Silva EM (2014) Drought resistance of sugar-cane for different levels of water availability water in the soil. J Braz Assoc Agric Eng 34:203–210

Camargo MS, Amorim L, Gomes Júnior AR (2013) Silicon fertilisation decreases brown rust incidence in sugarcane. Crop Prot 53:72–79

Camargo MS, Korndörfer GH, Wyler P (2014) Silicate fertilization of sugarcane cultivated in tropical soils. Field Crop Res 167:64–75

Camargo MS, Bezerra BLK, Vitti AC, Silva MA, Oliveira AL (2017) Silicon fertilization reduces the deleterious effects of water deficit in sugarcane. J Soil Sci Plant Nutr 17:99–111

Campos PS, Thi ATP (1997) Effect of abscisic acid pretreatment on membrane leakage and lipid composition of Vigna unguiculata leaf discs subjected to osmotic stress. Plant Sci 130:11–18

Elliott CL, Snyder GH (1991) Autoclave-induced digestion for the colometric determination of silicon in rice straw. J Agric Food Chem 39:1118–1119

Eneji AE, Inanaga S, Muranaka S, Li J, Hattori T, An P, Tsuji W (2008) Growth and nutrient use in four grasses under drought stress as mediated by silicon fertilisers. J Plant Nutr 1:355–365

Epstein E (2009) Silicon: its manifold roles in plants. Ann Appl Biol 155:155–160

Ferreira THS, Tsunada MS, Bassi D, Araújo P, Mattiello L, Guidelli GV, Righetto GL, Gonçalves VR, Lakshmanan P, Menossi M (2017) Sugarcane water stress tolerance mechanisms and its implications on developing biotechnology solutions. Front Plant Sci 8:1–18

Gentile A, Ferreira TH, Mattos RS, Dias LI, Hoshino AA, Carneiro MS, Souza GM, Calsa T, Nogueira RM, Endres L, Menossi M (2013) Effects of drought on the microtranscriptome of field-grown sugarcane plants. Planta 237:783–798

Gong HJ, Chen KM, Chen GC, Wang SM, Zhang CL (2003) Effects of silicon on growth of wheat under drought. J Plant Nutr 26:1055–1063

Graça JP, Rodrigues FA, Farias JRB, Oliveira CN, Hoffmann-Campo CB, Zingaretti SM (2010) Physiological parameters in sugarcane cultivars submitted to water deficit. Braz J Plant Physiol 22:189–197

Hattori T, Inanaga S, Araki H, Morita S, Luxová M, Lux A (2005) Application of silicon enhanced drought tolerance in Sorghum bicolor. Physiol Plant 123:459–466

Havaux M (2013) Carotenoids oxidation products as stress signals in plants. Plant J 49:597–606

Hermann ER, Câmara GMS (1999) Um método simples para estimar a área foliar de cana-de-açúcar. Stab 17:32–34

Inman-Bamber NG, Smith DM (2005) Water relations in sugarcane and response to water deficits. Field Crop Res 92:185–202

Kaya C, Tuna L, Higgs D (2006) Effect of silicon on plant growth and mineral nutrition of maize grown under water-stress conditions. J Plant Nutr 29:1469–1480

Korndörfer GH, Coelho NM, Snyder GH, Mizutani CT (1999) An evaluation of soil extractants for silicon availability in upland rice. Braz J Soil Sci 23:101–106

Larcher W (2003) Physiological plant ecology: ecophysiology and stress physiology of functional groups, 4th edn. Springer, New York

Liang YC (1998) Effects of Si on leaf ultrastructure, chlorophyll content and photosynthetic activity in barley under salt-stress. Pedosphere 8:289–296

Lichtenthaler HK, Buschmann C (2001) Chlorophylls and carotenoids: measurement and characterization by UV-VIS. In: Current protocols in food analytical chemistry. John Wiley & Sons, Madison

Lux A, Luxová M, Hattori T, Inanaga S, Sugimoto Y (2002) Silicification in sorghum (Sorghum bicolor) cultivars with different drought tolerance. Physiol Plant 115:87–92

Machado RS, Ribeiro RV, Marchiori PER, Machado DFSP, Machado EC, Landell MGA (2009) Respostas biométricas e fisiológicas ao déficit hídrico em cana-de-açúcar em diferentes fases fenológicas. Pesq Agropec Bras 44:1575–1582

Machado DFSP, Lagoa AMMA, Ribeiro RV, Marchiori PER, Machado EC (2013) Low night temperature and water deficit on photosynthesis of sugarcane. Pesq Agropec Bras 48:487–495

Oliveira CMR, Passos R, Andrade FV, Reis ED, Sturm GM, Souza RB (2010) Corretivos da acidez do solo e níveis de umidade no desenvolvimento da cana-de-açúcar. R Bras Ci Agrárias 5:25–31

Pereira HS, Korndörfer GH, Vidal AA, Camargo MS (2004) Silicon sources for rice crop. Sci Agric 61:522–528

Raij B van, Cantarella H, Quaggio JA, Furlani AMC (1997) Fertilization and liming to São Paulo State. Instituto Agronômico de Campinas, Campinas

Ramesh P (2000) Effect of different levels of drought during the formative phase on growth parameters and its relationship with dry matter accumulation in sugarcane. J Agron Crop Sci 185:83–89

Rede Interuniversitária para Desenvolvimento do Setor Sucroalcooleiro (RIDESA) (2011) Sugarcane cultivars. Revista Censo Varietal. (in Portuguese) http://pmgca.dbv.cca.ufscar.br/htm/downloads.php (accessed 07.07.2016)

Sandhya K, Prakash NB, Meunier JD (2018) Diatomaceous earth as source of silicon on the growth and yield of rice in contrasted soils of southern India. J Soil Sci Plant Nutr 18:344–360

Savant NK, Korndörfer GH, Datnoff LE, Snyder GH (1999) Silicon nutrition and sugarcane production: a review. J Plant Nutr 22:1853–1903

Silva MA, Jifon JF, Silva JAG, Sharma V (2007) Use of physiological parameters as fast tools to screen for drought tolerance in sugarcane. Braz J Plant Physiol 19:193–201

Weatherley PE (1950) Studies in water relations of cotton plant. I. The field measurament of water deficits in leaves. New Phytology 49:81–97