Abstract
Growth chamber studies were conducted to investigate the effects of silicon (Si) on the distribution of Cd in rice seedlings (Oryza sativa L., cv. Qiu Guang) grown hydroponically under toxic level of cadmium (Cd). Si added significantly alleviated the toxicity of Cd in aerobic rice seedlings. Si partly overcame the reduction in growth due to Cd. This amelioration was correlated with a reduction in Cd uptake. Si increased Cd accumulation in the roots and restricted the transport of Cd from roots to shoots, where the distribution of Cd in the shoots decreased by 33%. Si reduced the transport of Cd and the apoplastic fluorescence tracer PTS (tri-sodium-8-hydroxy-1, 3, 6-pyrenesulphonate) from roots to shoots by 23 and 36%, respectively. Energy-dispersive X-ray analysis (EDX) showed Cd was mainly deposited in the vicinity of the endodermis and epidermis, Si deposition was heavier in the vicinity of the endodermis than in the epidermis. Although the tracing result of fluorescein isothiocyanate-dextrans showed Si did not change epidermal wall porosity, the significant reduction of apoplastic PTS transport in +Si plants suggested that the heavy deposition of silica in the vicinity of endodermis might offer possible mechanisms by which silicon did at least partially physically block the apoplast bypass flow across the roots, and restrained the apoplastic transport of Cd. In addition, the effect of Si on the subcellular distribution and chemical form of Cd was investigated by fractionation. Si decreased the concentrations of Cd in shoots and roots, but did not remarkably change the distribution ratio of Cd in symplasm and apoplast. Mechanisms by which Si alleviates the toxicity of Cd in rice seedlings are discussed.
This is a preview of subscription content,
to check access.References
J J Bell M E McCully (1970) ArticleTitleA histological study of lateral root initiation and development in Zea mays Protoplasma 70 179–205
H M Chen C R Zheng C Tu Z G Shen (2000) ArticleTitleChemical methods and phytoremediation of soil contaminated with heavy metals Chemosphere 41 229–234 Occurrence Handle1:CAS:528:DC%2BD3cXivFKktro%3D Occurrence Handle10819205
E B Dumbroff D R Pierson (1971) ArticleTitleProbable sites for passive movement of ions across the endodermis Can. J. Bot. 49 35–38
E Epstein (1994) ArticleTitleThe anomaly of silicon in plant biology Proc. Natl. Acad. Sci. USA 91 11–17 Occurrence Handle1:CAS:528:DyaK2cXntlehtA%3D%3D Occurrence Handle11607449
E Epstein (1999) ArticleTitleSilicon Annu. Rev. Plant Physiol. Plant Mol. Biol. 50 641–664 Occurrence Handle1:CAS:528:DyaK1MXkt1yktro%3D Occurrence Handle15012222
R G Gururaja (2000) ArticleTitleStudies on salt tolerance in rice (Oryza sativaL.): role of silicon J. Plant Biol. 27 57–60
K E Hammond D E Evans M J Hodson (1995) ArticleTitleAluminum/silicon interaction in barley (Hordeum vulgareL.) seedlings Plant Soil 173 89–95 Occurrence Handle1:CAS:528:DyaK2MXntlWisLY%3D
T Horiguchi (1987) ArticleTitleMechanism of manganese toxicity and tolerance of plants. IV. Effect of silicon on alleviation of manganese toxicity of rice plants Soil Sci. Plant Nutr. 34 65–73
W J Horst H Marschner (1978) ArticleTitleEffect of silicon on manganese tolerance of beans plants. (Phaseolus vulgarisL.) Plant Soil 50 287–303 Occurrence Handle1:CAS:528:DyaE1cXlslyrtLs%3D
K Iwasski A Matsumura (1999) ArticleTitleEffect of silicon on alleviation of manganese toxicity in pumpkin (Cucurbita moschata Duch cv Shintosa). Soil Sci. Plant Nutr. 45 909–920
K Iwasaki P Maier M Fecht W J Horst (2002) ArticleTitleEffects of silicon supply on apoplastic manganese concentrations in leaves and their relation to manganese tolerance in cowpea (Vigna unguiculata(L.) Walp.) Plant Soil 238 281–288 Occurrence Handle1:CAS:528:DC%2BD38Xitl2qsbo%3D
PS Kidd M Llugany C Poschenrieder B Gunsé J Barceló (2001) ArticleTitleThe role of root exudates in aluminium resistance and silicon-induced amelioration of aluminium toxicity in three varieties of maize (Zea mays L.) J. Exp. Bot. 52 1339–1352 Occurrence Handle1:CAS:528:DC%2BD3MXlsVCmsL0%3D Occurrence Handle11432953
E Lozano-Rodråguez L E Hernández P Bonay R O Carpena-Ruiz (1997) ArticleTitleDistribution of cadmium in shoots and roots tissues of maize and pea plants: physiological disturbances J. Exp. Bot. 48 123–128
A Lux M Laxova S Morita J Abe S Inanage (1999) ArticleTitleEndodermal silification in developing seminal roots of lowland and upland cultivars of rice (Oryza sativa L.). Can J. Bot. 77 955–960 Occurrence Handle1:CAS:528:DC%2BD3cXhtlKlsA%3D%3D
D Neumann U Zurnieden W Schwieger I Leopold O Lichtenberger (1997) ArticleTitleHeavy metal tolerance of Minuartia verna J. Plant Physiol. 151 101–108 Occurrence Handle1:CAS:528:DyaK2sXkvF2rsr8%3D
D Neumann U Zurnieden (2001) ArticleTitleSilicon and heavy metal tolerance of higher plants Phytochemistry 56 685–692 Occurrence Handle1:CAS:528:DC%2BD3MXit1Wgs7g%3D Occurrence Handle11314953
D W Parry S L Soni (1972) ArticleTitleElectron-probe microanalysis of silicon in the roots of Oryza sativa L Ann. Bot. 36 781–783 Occurrence Handle1:CAS:528:DyaE38Xls1Wqt7c%3D
H Rogalla V Römheld (2002) ArticleTitleRole of leaf apoplast in silicon-mediated manganese tolerance of Cucumis sativus L Plant Cell Environ. 25 549–555 Occurrence Handle1:CAS:528:DC%2BD38XjtFOksrY%3D
N K Savant G H Snyder L E Datnoff (1997) ArticleTitleSilicon management and sustainable rice production Adv. Agron. 58 151–199 Occurrence Handle1:CAS:528:DyaK2sXivV2qsA%3D%3D
E Shedletzky M Shmuel T Trainin S Kalman D Delmer (1992) ArticleTitleCell wall structure in cells adapted to growth on the cellulose-synthese inhibitor 2,6-dichlorobenzonitrile Plant Physiol. 100 120–130 Occurrence Handle1:CAS:528:DyaK38XmtlSitLs%3D
L J Wang Y H Wang Q Chen W D Cao M Li F S Zhang (2000) ArticleTitleSilicon induced cadmium tolerance of rice seedlings J. Plant Nutr. 23 1397–1406 Occurrence Handle1:CAS:528:DC%2BD3cXns1Shur0%3D
A R Yeo M E Yeo T J Flowers (1987) ArticleTitleThe contribution of an apoplastic pathway to sodium uptake by rice roots in saline conditions J. Exp. Bot. 38 1141–1153 Occurrence Handle1:CAS:528:DyaL1cXlt1ylug%3D%3D
A R Yeo S A Flowers G Rao K Welfare N Senanayake T J Flowers (1999) ArticleTitleSilicon reduce sodium uptake in rice (Oryza sativaL.) in saline conditions and this is accounted by a reduction in the transpiration bypass flow Plant Cell Environ. 22 559–565 Occurrence Handle1:CAS:528:DyaK1MXktVeis7o%3D
Yoshida S, Forno D A, Cook J H and Gomes K A 1976. Routine procedure for growing rice plants in culture solution. In Laboratory Manual for Physiological Studies of Rice, 3rd Ed. pp. 61–65. The International Rice Research Institute: Los Banos, Laguna, Philippines.
Author information
Authors and Affiliations
Corresponding author
Rights and permissions
About this article
Cite this article
Shi, X., Zhang, C., Wang, H. et al. Effect of Si on the distribution of Cd in rice seedlings. Plant Soil 272, 53–60 (2005). https://doi.org/10.1007/s11104-004-3920-2
Received:
Accepted:
Issue Date:
DOI: https://doi.org/10.1007/s11104-004-3920-2