Silicon Alleviates Drought Stress of Rice Plants by Improving Plant Water Status, Photosynthesis and Mineral Nutrient Absorption

Biological Trace Element Research - Tập 142 Số 1 - Trang 67-76 - 2011
Wei Chen1, Xiaogang Yao1,2, Kunzheng Cai1, Jining Chen1
1Key Laboratory of Ecological Agriculture of Ministry of Agriculture, South China Agricultural University, Guangzhou, China
2The College of Life Sciences, Hebei University, Baoding, China

Tóm tắt

Từ khóa


Tài liệu tham khảo

Flowers TJ, Yeo AR (1986) Ion relations of plants under drought and salinity. Aust J Plant Physiol 1:75–91

Jamieson PD, Martin RJ, Francis GS (1995) Drought influences on grain yield of barley, wheat, and maize. New Zeal J Crop Hort 23:55–56

Iturbe-Ormaetxe I, Escuredo PR, Arrese-Igor C et al (1998) Oxidative damage in pea plants exposed to water deficit or paraquat. Plant Physiol 116:173–181

Xu H, Biswas DK, Li WD (2007) Photosynthesis and yield responses of ozone-polluted winter wheat to drought. Photosynthetica 45:582–588

Ma JF (2004) Role of silicon in enhancing the resistance of plants to biotic and abiotic stresses. Soil Sci Plant Nutr 50:11–18

Li QF, Ma CC, Ji J (2009) Effect of silicon on water metabolism in maize plants under drought stress. Acta Ecologica Sinica 29:84163–4168

Liang YC, Zhu J, Li ZJ et al (2008) Role of silicon in enhancing resistance to freezing stress in two contrasting winter wheat cultivars. Environ Exp Bot 64:286–294

Cai KZ, Gao D, Luo SM et al (2008) Physiological and cytological mechanisms of silicon-induced resistance in rice against blast disease. Physiol Plant 134:324–333

Ahmad R, Zaheer SH, Ismail S (1992) Role of silicon in salt tolerance of wheat (Triticum aestivum L.). Plant Sci 85:43–50

Matsui T, Omasa K, Horie T (2001) The difference in sterility due to high temperature during the flowering period among Japanese-rice varieties. Plant Prod Sci 2:90–93

Hammond KE, Evans DE, Hodson MJ (1995) Aluminium/silicon interactions in barley (Hordeumvulgare L.) seedlings. Plant Soil 173:89–95

Shi XH, Zhang CC, Wang H et al (2005) Effect of Si on the distribution of Cd in rice seedlings. Plant Soil 272:53–60

Hattori T, Inanagaa S, Arakib H et al (2005) Application of silicon enhanced drought tolerance in sorghum bicolor. Physiol Plant 123:459–466

Liang YC, Sun WC, Zhu YG et al (2007) Mechanisms of silicon-mediated alleviation of abiotic stresses in higher plants: a review. Environ Pollut 147:422–428

Crusciol CAC, Pulza AL, Lemosb LB et al (2009) Effects of silicon and drought stress on tuber yield and leaf biochemical characteristics in potato. Crop Sci 49:949–954

Zhang X, Tan G, Huang Y (1994) Experimental technology of plant physiology. Liaoning Science and Technology Press, Shenyang, China

Porra RJ, Thompson WA, Kriedemann PE (1989) Determination of accurate extinction coefficients and simultaneous equations for assaying chlorophyll a and b extracted with four different solvents: verification of the concentration of chlorophyll standards by atomic absorption spectroscopy. Biochim Biophys Acta 975:384–394

Van der Vorm PDJ (1987) Dry ashing of plant material and dissolution of the ash in HF for the colorimetric determination of silicon. Commun Soil Sci Plant Anal 18:1181–1189

Farooq M, Wahid A, Lee DJ et al (2009) Advance in drought resistance of rice. Crit Rev Plant Sci 4:199–217

Yao XQ, Chu JZ, Wang GY (2009) Effects of drought stress and selenium supply on growth and physiological characteristics of wheat seedlings. Acta Physiol Plant 5:1031–1036

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

Aiken RM (1996) Root system regulation of whole plant growth. Annu Rev Phytopathol 34:325–46

Gong H, Chen K, Chen G et al (2003) Effects of silicon on growth of wheat under drought. J Plant Nutr 26:1055–1063

Pei ZF, Ming DF, Liu D et al (2010) Silicon Improves the tolerance to water-deficit stress induced by polyethylene plycol in wheat (Triticum aestivum L.) seedlings. J Plant Growth Regul 29:106–115

Agarie S, Agata W, Kubota F et al (1998) Effects of silicon on transpiration and leaf conductance in rice plants (Oryza sativa L.). Plant Prod Sci 2:89–95

Gao X, Zou C, Wang L et al (2006) Silicon decreases transpiration rate and conductance from stomata of maize plants. J Plant Nutr 29:1637–1647

Hattori T, Sonobe K, Inanaga S et al (2008) Effects of silicon on photosynthesis of young cucumber seedlings under osmotic stress. J Plant Nutr 31:1046–1058

Farquhar GD, Sharkey TD (1982) Stomatal conductance and photosynthesis. J Ann Rev Plant Physiol 33:317–345

Schnabel G, Strittmatter G, Noga G (1998) Changes in photosynthetic electron transport in potato cultivars with different field resistance after infection with Phytophthora infestans. J Phytopathol 146:205–210

Shangguan ZP, Shao MA, Dyckmans J (2000) Effects of nitrogen nutrition and water deficit on net photosynthetic rate and chlorophyll fluorescence in winter wheat. J Plant Physiol 156:46–51

Kooten O, Snel JFH (1990) The use of chlorophyll fluorescence nomenclature in plant stress physiology. Photosynth Res 3:147–150

Hu YC, Schmidhalter U (2005) Drought and salinity: a comparison of their effects on mineral nutrition of plants. J Plant Nutr Soil Sci 168:541–549

Patakas A, Nikolaou N, Zioziou E et al (2002) The role of organic solute and ion accumulation in osmotic adjustment in drought-stressed grapevines. Plant Sci 163:361–367

Zhu X, Gong H, Chen G et al (2005) Different solute levels in two spring wheat cultivars induced by progressive field water stress at different developmental stages. J Arid Environ 62:1–14

Chaves MM, Oliveira MM (2005) Mechanisms underlying plant resilience to water deficits: prospects for water-saving agriculture. J Exp Bot 407:2365–2384