Effect of biochar rates on A-mycorrhizal fungi performance and maize plant growth, Phosphorus uptake, and soil P availability under calcareous soil conditions

被引:10
作者
Abou El Seoud, I. I. A. [1 ]
机构
[1] Alexandria Univ, Fac Agr, Dept Soil & Agr Chem, Alexandria, Egypt
关键词
A-mycorrhizal fungi; biochar; calcareous soil; maize;
D O I
10.1080/00103624.2020.1869766
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
A pot experiment was carried out to identify the effect of biochar rates on the performance of Arbuscular mycorrhizal fungi (AMF) Rhizoglomus irregularis and the growth and phosphorus (P) uptake of maize (Zea mays L.) plants under calcareous soil conditions. Eight integration treatments, four biochar rates (zero (control) (B0), 5 (B1), 7.5 (B2), 10 g biochar/kg soil (B3)), and two AMF inoculations (untreated (NM) and inoculated with AMF (M)) were arranged in a randomized complete block design (RCBD) with 5 replicates. The results showed that biochar had a positive effect on the growth of maize, P uptake, and available P in soil. It was also found that this positive effect of biochar increases with increasing rates, but it was found that there were no significant differences between the two highest rates of biochar B2 and B3. Plants treated with AMF had an influential role in the maize growth and its elemental content of P, as well as increasing the availability of P in soil. However, it was found that biochar reduces the effect of AMF but does not completely discourage the activity of AMF. Therefore, it is recommended that under the same circumstances of this experiment, using a rate B2 of biochar and treated with AMF which having the highest maize plant growth and its elemental P content.
引用
收藏
页码:815 / 831
页数:17
相关论文
共 88 条
[21]  
Dechassa N., 2001, THESIS HANOVER U FIE
[22]   Charcoal Volatile Matter Content Influences Plant Growth and Soil Nitrogen Transformations [J].
Deenik, Jonathan L. ;
McClellan, Tai ;
Uehara, Goro ;
Antal, Michael J., Jr. ;
Campbell, Sonia .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 2010, 74 (04) :1259-1270
[23]  
DeLuca T.H., 2009, Biochar for Environmental Management, Science and Technology, P251
[24]  
El-Seoud I. I. A. A., 2008, Australian Journal of Basic and Applied Sciences, V2, P234
[25]   The effect of biochars on maize (Zea mays) germination [J].
Free, H. F. ;
McGill, C. R. ;
Rowarth, J. S. ;
Hedley, M. J. .
NEW ZEALAND JOURNAL OF AGRICULTURAL RESEARCH, 2010, 53 (01) :1-4
[26]   A simple technique to eliminate ethylene emissions from biochar amendment in agriculture [J].
Fulton, Will ;
Gray, Myles ;
Prahl, Fredrick ;
Kleber, Markus .
AGRONOMY FOR SUSTAINABLE DEVELOPMENT, 2013, 33 (03) :469-474
[27]  
Gomez K.A., 1984, Statistical Procedures for Agricultural Research, V2, P540
[28]   Fertilizer impacts on cadmium availability in agricultural soils and crops [J].
Grant, C. A. ;
Sheppard, S. C. .
HUMAN AND ECOLOGICAL RISK ASSESSMENT, 2008, 14 (02) :210-228
[29]   A mycorrhizal fungus grows on biochar and captures phosphorus from its surfaces [J].
Hammer, Edith C. ;
Balogh-Brunstad, Zsuzsanna ;
Jakobsen, Iver ;
Olsson, Pal Axel ;
Stipp, Susan L. S. ;
Rillig, Matthias C. .
SOIL BIOLOGY & BIOCHEMISTRY, 2014, 77 :252-260
[30]   Towards growth of arbuscular mycorrhizal fungi independent of a plant host [J].
Hildebrandt, U ;
Janetta, K ;
Bothe, H .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2002, 68 (04) :1919-1924