Morphological and Physiological Responses of Maize Seedlings under Drought and Waterlogging

سال انتشار: 1398
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 74

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شناسه ملی سند علمی:

JR_JASTMO-21-5_011

تاریخ نمایه سازی: 23 آبان 1402

چکیده مقاله:

Waterlogging and drought are severe constrains that limit maize seedling growth in tropical and subtropical regions. It is significant to determine the differences in morphological and physiological responses of maize to drought and excess soil water, with a view toward better breeding and field management. In the present experiment, different levels of soil water availability were initiated at the one-leaf (V۱) stage of two maize cultivars (Denghai۹ and Yidan۶۲۹): Control (CK), Severe Drought (SD), Light Drought (LD), Severe Waterlogging (SW), and Light Waterlogging (LW). The results indicated that waterlogging had more discernible impact on the seedling growth of both cultivars than drought stress. The Relative Growth Rate (RGR) of shoots and roots, along with root length, volume, and surface area were all markedly decreased in both cultivars under waterlogging stress. The malondialdehyde content increased significantly in roots and leaves under waterlogging treatment. In both cultivars, SuperOxide Dismutase (SOD) was mostly activated in roots and leaves at the three-leaf (V۳) stage by waterlogging stress, while the Catalase (CAT) activity apparently increased under drought stress. The activity of Peroxidase (POD) distinctly enhanced in both cultivars under drought and waterlogging stress. Ascorbate Peroxidase (APX) showed constant activity with prolongation of waterlogging stress, and Glutathione Reductase (GR) activity notably increased in roots under waterlogging conditions at the six-leaf (V۶) stage. We concluded that SOD, POD, APX, and GR were the most important antioxidant enzymes under waterlogging conditions, whereas CAT and POD appeared to play key roles under drought stress.

نویسندگان

A. Salah

MOA Key Laboratory of Crop Physiology, Ecology and Cultivation in the Middle Reaches of Yangtze River, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, People Republic of China.

J. Li

MOA Key Laboratory of Crop Physiology, Ecology and Cultivation in the Middle Reaches of Yangtze River, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, People Republic of China.

J. Ge

College of Agronomy and Resources and Environment, Tianjin Agricultural University, Tianjin, People Republic of China.

C. Cao

MOA Key Laboratory of Crop Physiology, Ecology and Cultivation in the Middle Reaches of Yangtze River, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, People Republic of China.

H. Li

Environment and Plant Protection Institute, Chinese Academy of Tropical Agriculture Sciences, Haikou , Hainan, People Republic of China.

Y. Wang

MOA Key Laboratory of Crop Physiology, Ecology and Cultivation in the Middle Reaches of Yangtze River, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, People Republic of China.

Z. Liu

MOA Key Laboratory of Crop Physiology, Ecology and Cultivation in the Middle Reaches of Yangtze River, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, People Republic of China.

M. Zhan

MOA Key Laboratory of Crop Physiology, Ecology and Cultivation in the Middle Reaches of Yangtze River, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, People Republic of China.

M. Zhao

۴Institute of Crop Sciences, Chinese Academy of Agricultural Sciences/Key Laboratory of Crop Physiology and Ecology of Ministry of Agriculture, Beijing, People Republic of China.

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  • Abedi, T. and Pakniyat, H. ۲۰۱۰. Antioxidant Enzyme Changes in ...
  • Aebi, H. E. ۱۹۸۳. Catalase. In: “Methods of Enzymatic Analysis”, ...
  • AICRP. ۲۰۰۶. Directors’ Report. ۴۹th Annual Maize Workshop of all ...
  • Andrade, F. H., Echarte, L., Rizzalli, R., Della Maggiora, A. ...
  • Badawi, G. H., Yamauchi, Y., Shimada, E., Sasaki, R. and ...
  • Cairns, J.E., Sonder, K., Zaidi, P. H. and Verhulst, N. ...
  • Chen, J. X. and Wang, X. F. ۲۰۰۶. Plant Physiology ...
  • Comas, L. H., Becker, S. R., Cruz, V. M. V., ...
  • Dat, J. F., Inzé, D. and Van Breusegem, F. ۲۰۰۱. ...
  • Earl, H. J. and Davis, R. F. ۲۰۰۳. Effect of ...
  • Edmeades, G., Bänziger, M. and Campos, H. ۲۰۰۶. Improving Tolerance ...
  • Edmeades, G. O., Bolanos, J. and Lafitte, H. R. ۱۹۹۲. ...
  • Ekmekçi, Y., Tanyolac, D. and Ayhan, B. ۲۰۰۸. Effects of ...
  • Fageria, N. K., Baligar, V. C. and Clark, R. ۲۰۰۶. ...
  • FAO. ۲۰۱۲. FAOSTAT [Online]. Available: http://www.fao.org/. [Accessed ۲۰۱۳-۰۱-۲۲]۱۶. Ge, T., ...
  • Gechev, T. S., Van Breusegem, F., Stone, J. M., Denev, ...
  • Giannopolitis, C. N. and Ries, S. K. ۱۹۷۷. Superoxide Dismutases ...
  • Grzesiak, M. T., Ostrowska, A., Hura, K. and Rut, G. ...
  • Hao, Z. B., Cang, J. and Xu, Z. ۲۰۰۴. Plant ...
  • Huang, X. H., Yin, X. H., Liu, Y., Li, J. ...
  • Kavas, M., Baloğlu, M. C., Akça, O., Köse, F. S. ...
  • Li, H. ۲۰۰۹. Citrus Tree Abiotic and Biotic Stress and ...
  • Lin, K. H., Chao, P. Y., Yang, C. M. and ...
  • Liu, Y. Z., Bin, T., Zheng, Y. L., Xu, S. ...
  • Lizaso, J. I., Melendez, L. M. and Ramirez, R. ۲۰۰۱. ...
  • Loades, K. W., Bengough, A. G. and Bransby, M. F. ...
  • Mafakheri, A., Siosemardeh, A., Bahramnejad, B., Struik, P. C. and ...
  • Malik, A. I., Colmer, T. D. and Lambers, H. ۲۰۰۱. ...
  • Mejri, M., Siddique, K. H., Saif, T., Abdelly, C. and ...
  • Mittler, R. ۲۰۰۲. Oxidative Stress, Antioxidants and Stress Tolerance. Trends ...
  • Monferran, M. V., Sanchez, Agudo, A. J., Pignata, M. L. ...
  • Nagy, Z., Tuba, Z., Zsoldos, F. and Erdei, L. ۱۹۹۵. ...
  • Nakano, Y. and Asada, K. ۱۹۸۱. Hydrogen Peroxide Is Scavenged ...
  • Pearson, M., Saarinen, M., Nummelin, L. and Heiskanen, J. ۲۰۱۳. ...
  • Prasanna, B. M. ۲۰۱۶. Developing and Deploying Abiotic Stress-Tolerant Maize ...
  • Qadir, S., Qureshi, M. I., Javed, S. and Abdin, M. ...
  • Radford, P. J. ۱۹۶۷. Growth Analysis Formulae-Their Use and Abuse. ...
  • Sairam, R. K. and Saxena, D. C. ۲۰۱۰. Oxidative Stress ...
  • Sairam, R. K., Srivastava, G. C. and Saxena, D. C. ...
  • Sarker, B. C. and Hara, M. ۲۰۱۰. Growth Dynamics and ...
  • Schaedle, M. and Bassham, J. A. ۱۹۷۷. Chloroplast Glutathione Reductase. ...
  • Saeidi, M. and Abdoli, M. ۲۰۱۵. Effect of Drought Stress ...
  • Sharma, P., Jha, A. B., Dubey, R. S., and Pessarakli, ...
  • Tang, B., Xu, S. Z., Zou, X. L., Zheng, Y. ...
  • Tuna, A. L., Kaya, C. and Ashraf, M. ۲۰۱۰. Potassium ...
  • Wang, J., Zhang, H. and Allen, R. D. ۱۹۹۹. Over ...
  • Waraich, E. A., Ahmad, R. and Ashraf, M. Y. ۲۰۱۱. ...
  • Willekens, H., Chamnongpol, S., Davey, M. and Schraudner, M. ۱۹۹۷. ...
  • Yang, Y., Chao, H., Liu, Q., Bo, L. and Wang, ...
  • Zaidi, P. H., Rafique, S., Rai, P. K. and Singh, ...
  • Zhang, J. and Kirkham, M. B. ۱۹۹۶. Antioxidant Responses to ...
  • Zhang, X., Yin, H. B., Chen, S. H., He, J. ...
  • Zhang, Xin. L., Mel, G., Shiqing, L., Shengxiu, L. and ...
  • Zhang, Z., Jiang, H., Wei, Z. and Zheng, Y. ۲۰۰۳. ...
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