SILICON
- 1 June 1999
- journal article
- Published by Annual Reviews in Annual Review of Plant Biology
- Vol. 50 (1) , 641-664
- https://doi.org/10.1146/annurev.arplant.50.1.641
Abstract
▪ Abstract Silicon is present in plants in amounts equivalent to those of such macronutrient elements as calcium, magnesium, and phosphorus, and in grasses often at higher levels than any other inorganic constituent. Yet except for certain algae, including prominently the diatoms, and the Equisetaceae (horsetails or scouring rushes), it is not considered an essential element for plants. As a result it is routinely omitted from formulations of culture solutions and considered a nonentity in much of plant physiological research. But silicon-deprived plants grown in conventional nutrient solutions to which silicon has not been added are in many ways experimental artifacts. They are often structurally weaker than silicon-replete plants, abnormal in growth, development, viability, and reproduction, more susceptible to such abiotic stresses as metal toxicities, and easier prey to disease organisms and to herbivores ranging from phytophagous insects to mammals. Many of these same conditions afflict plants in silicon-poor soils—and there are such. Taken together, the evidence is overwhelming that silicon should be included among the elements having a major bearing on plant life.This publication has 113 references indexed in Scilit:
- Varietal differences in the growth of rice plants in response to aluminum and siliconSoil Science and Plant Nutrition, 1998
- Challenges and prospects for integrated control of powdery mildews in the greenhouseCanadian Journal of Plant Pathology, 1997
- Depletion of plant‐available silicon in soils: A possible cause of declining rice yieldsCommunications in Soil Science and Plant Analysis, 1997
- Effects of silicon on salinity tolerance of two barley cultivarsJournal of Plant Nutrition, 1996
- Does silicon exist in association with organic compounds in rice plant?Soil Science and Plant Nutrition, 1995
- Calcium and silicon binding compounds in cell walls of rice shootsSoil Science and Plant Nutrition, 1995
- Effects of silicon on the toxicity of aluminium to soybeanCommunications in Soil Science and Plant Analysis, 1994
- Variable silicon content of rice cultivars grown on everglades histosols1Journal of Plant Nutrition, 1992
- Response of cotton cultivars to aluminum in solutions with varying silicon concentrationsJournal of Plant Nutrition, 1989
- Comparison of ?ignition? and ?extraction? methods for the determination of organic phosphate in rocks and soilsPlant and Soil, 1967