Effects of Glomus intraradices on the drought resistance and growth of corn plant (Zea mays L.)
- Authors
-
-
A. S. Banni
Botany Department, Faculty of Science, Benghazi University, Al-Marj, LibyaAuthor -
Salah Hajomer
Botany Department, Faculty of Science, Benghazi University, Al-Marj, LibyaAuthor -
Y. A. Tayeb
Botany Department, Faculty of Science, Benghazi University, Al-Marj, LibyaAuthor -
Elsharif Hafez A.A Elsharif Hafez A.A
Botany Department, Faculty of Science, Benghazi University, Al-Marj, LibyaAuthor
-
- Keywords:
- G. intraradices, corn plant (Zea mays L.), drought resistance
- Abstract
-
A pot experiment was carried out at the greenhouse of Faculty of Agriculture (Saba bacha), Alexandria University. The experiment was conducted to investigate the role of Glomus intraradices fungi in the effects on the growth and water requirement of pot-grown corn (Zea mays L.). Four water regimes (20%, 30%, 40% and 50% of the available soil water content) were conducted. The Arbuscular Mycorrhizal Fungi AMF inoculation could significantly increase plant growth (including plant height, leaf area, and fresh and dry mass), enhance relative leaf water content, transpiration rates and stomatal conductance, and improve plant drought tolerance. The water consumption of the mycorrhizal plants producing 1 g of dry matter was 20%–35% of water content conditions. These findings indicate that the mycorrhizae enhanced the water utilization efficiency.
- Downloads
-
Download data is not yet available.
- References
-
ACSRT(Academy of Scientific Research and Technology) (1999).The national assault for uplifting yield of zea maize .(In Arabic).
Baker,N.(2010).Photosynthesis and the Environ -ment .Kluwer Academic.Netherland.
Dutra, P., Abad M., Almela V., and Agusti M. (1996). Auxin interaction with the vesicular-arbuscular mycorrhizal fungus Glomus intraradices Schenck & Smith improves vegetative growth of two citrus rootstocks. Scientia Horticulturae 66(1):77-83.
Giovannetti, M., and Mosse B. (1980). An evaluation of techniques for measuring vesicular arbuscular mycorrhizal infection in roots. New phytologist 84(3):489-500.
Graham, J., and Syvertsen J. (1984). Influence of vesicular–arbuscular mycorrhiza on the hydraulic conductivity of roots of two citrus rootstocks. New phytologist 97(2):277-284.
Kaya, C., Higgs D., Kirnak H., and Tas I. (2003). Mycorrhizal colonisation improves fruit yield and water use efficiency in watermelon (Citrullus lanatus Thunb.) grown under well-watered and water-stressed conditions. Plant and soil 253(2):287-292.
Khan, I. A., Ahmad S., and Mirza S. (2003). Yield and water use efficiency (WUE) of Avena sativa as influenced by vesicular arbuscular mycorrhizae (VAM). Asian Journal of Plant Sciences.
Liu, R. (1989a). Effects of VA mycorrhizas on the water status of Malus hupehensis. Journal of Laiyang Agricultural College 6(1):34-39.
Liu, R. (1989b). Effects of vesicular-arbuscular mycorrhizas and phosphorus on water status and growth of apple. Journal of plant nutrition (USA).
Liu, R., and Luo X. (1988). Effects of vesiculararbuscular mycorrhizas on the growth, mineral nutrition and water relations of cherry (Cerasus psedocerasus). J. Lai-Yang Agri. College 5(6-13.
Lu, J., Liu M., Mao Y., and Shen L. (2007). Effects of vesicular-arbuscular mycorrhizae on the drought resistance of wild jujube (Zizyphs spinosus Hu) seedlings. Frontiers of Agriculture in China 1(4):468-471.
Murakami-Mizukami, Y., Yamamoto Y., and Yamaki S. (1991). Analyses of indole acetic acid and absclsic acid contents in nodules of soybean plants bearing VA mycorrhizas. Soil Science and Plant Nutrition 37(2):291-298.
Page, A., and Page A. (1982). Methods of soil analysis: chemical and microbiological proerpteis. Amen Society of Agronomy.
Phillips, J. M., and Hayman D. (1970). Improved procedures for clearing roots and staining parasitic and vesicular-arbuscular mycorrhizal fungi for rapid assessment of infection. Transactions of the British mycological Society 55(1):158IN116-161IN118.
Pinior, A., Grunewaldt-Stöcker G., von Alten H., and Strasser R. J. (2005). Mycorrhizal impact on drought stress tolerance of rose plants probed by chlorophyll a fluorescence, proline content and visual scoring. Mycorrhiza 15(8):596.
Rubin, R. L., van Groenigen K. J., and Hungate B. A. (2017). Plant growth promoting rhizobacteria are more effective under drought: a meta-analysis. Plant and soil:1-15.
Snedecor, G., and Cochran W. (1972). Statistical method 6th edition Iowa State University Press. America:243-246.
Wu, Q., Xia R., and Hu Z. (2006). Effect of arbuscular mycorrhiza on the drought tolerance of Poncirus trifoliata seedlings. Frontiers of forestry in China 1(1):100-104.
- Downloads
- Published
- 2017-06-30
- Issue
- Vol. 32 No. 1 (2017)
- Section
- Articles
- License
-

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
Copyright of the articles Published by Almukhtar Journal of Science (MJSc) is retained by the author(s), who grant MJSc a license to publish the article. Authors also grant any third party the right to use the article freely as long as its integrity is maintained and its original authors and cite MJSc as the original publisher. Also, they accept the article remains published by the MJSc website (except in the occasion of a retraction of the article).
How to Cite
Most read articles by the same author(s)
- A. S Banni, Salah Hajomer, Y. A Tayeb, The ability of two Leguminous Plants to increase Zinc metal tolerance by Arbuscular mycorrhizal fungi colonization , Al-Mukhtar Journal of Sciences: Vol. 30 No. 1 (2015)
Similar Articles
- Naeimah Heebah Omar, Mohamed A. M. Adam, Survey of plant parasitic nematode associated with cucumber plant L. Cucumis sativus in Al-Jabal Al-akther region , Al-Mukhtar Journal of Sciences: Vol. 33 No. 1 (2018)
- Ibrahiem El-Zaael Ibrahiem, Fairoz Aly Bobaker, Effect of organic and inorganic nitrogin on plant growth of eggplant (Solanum melongena var. esculenta L) and its chemical composition , Al-Mukhtar Journal of Sciences: Vol. 22 No. 1 (2009)
- Marim salah Bou fatoum, Survey of some land snails in Jabel El-Akhdar area, Libya and the damage caused by Theba pisana To Brassica olerace , Al-Mukhtar Journal of Sciences: Vol. 26 No. 1 (2011)
- Issa. A. Abugharsa, M. K. Ehwaeti, Y. M. Younis, Determine and Control the Powdery Mildew Causal on Cucumber and Squash Plants in El-Wasta Green Mountain , Al-Mukhtar Journal of Sciences: Vol. 17 No. 1 (2008)
- Nwara A. Mohamed, Mohammed A. Saeed, M.G. El-Samman, Issa A. Abugharsa, Biological Control of Early Blight Disease on Tomato Plant on Al-Gabal Al-Akhdar District , Al-Mukhtar Journal of Sciences: Vol. 8 No. 1 (2001)
- Asma S. W. ALmabrok, Mohammed A.M. Adam, Azzeddin M.Y. Alawam, Mahmoud E. M. Ehwaeti, Use of the esterase phenotypes for identification of two Root knot nematodes species, M. incognita and M. javanica for the first time in Libya beside the Pernieal patteren technique , Al-Mukhtar Journal of Sciences: Vol. 26 No. 1 (2011)
- Z.I El-Gali, O.M. El-ssunossie, H. A. Khlifa, Studies on Alternaria and Pestalotiopsis Fungi Causing Foliar Diseases of Pistacia lentiscus In Some Locales at Mid Region of Al-Jabal Al-Akhdar , Al-Mukhtar Journal of Sciences: Vol. 33 No. 1 (2018)
- Mohamed A. Mussa, M. E. Ehwaeti , A. A. El-Maleh, The Damage of diferent densities of M. incognita and M. javanica on tomato cv. Rio grand , Al-Mukhtar Journal of Sciences: Vol. 11 No. 1 (2004)
- Mikaeel Y Fiatori, Gadalla A El-Hassan, Youssif E El-Mahi, Effect of salinitu and sodicity on Bacterial-Plant symbiotic relationship , Al-Mukhtar Journal of Sciences: Vol. 3 No. 1 (1996)
- Abdul Rahman Yousif Al-Fitouri, Abdul Hamid Hassan Al-Mabrouk, Abdul Baqi Mohammed Hussein Al-Ali, Study of the effect of primary density and breeding periods on Intraspecific competition between species of the saw–toothed grain beetle Oryzaephilus surinamensis L (Coleoptera: Cucujidae) , Al-Mukhtar Journal of Sciences: Vol. 33 No. 1 (2018)
You may also start an advanced similarity search for this article.











