Ethephon increases photosynthetic-nitrogen use efficiency, proline and antioxidant metabolism to alleviate decrease in photosynthesis under salinity stress in mustard
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作者:
Iqbal, Noushina
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Jamia Hamdard, Dept Bot, Hamdard Nagar, New Delhi 110062, IndiaJamia Hamdard, Dept Bot, Hamdard Nagar, New Delhi 110062, India
Iqbal, Noushina
[1
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Umar, Shahid
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Jamia Hamdard, Dept Bot, Hamdard Nagar, New Delhi 110062, IndiaJamia Hamdard, Dept Bot, Hamdard Nagar, New Delhi 110062, India
Umar, Shahid
[1
]
Per, Tasir S.
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Aligarh Muslim Univ, Dept Bot, Plant Physiol & Biochem Lab, Aligarh, Uttar Pradesh, IndiaJamia Hamdard, Dept Bot, Hamdard Nagar, New Delhi 110062, India
Per, Tasir S.
[2
]
Khan, Nafees A.
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Aligarh Muslim Univ, Dept Bot, Plant Physiol & Biochem Lab, Aligarh, Uttar Pradesh, IndiaJamia Hamdard, Dept Bot, Hamdard Nagar, New Delhi 110062, India
Khan, Nafees A.
[2
]
机构:
[1] Jamia Hamdard, Dept Bot, Hamdard Nagar, New Delhi 110062, India
[2] Aligarh Muslim Univ, Dept Bot, Plant Physiol & Biochem Lab, Aligarh, Uttar Pradesh, India
Salinity is a serious threat to plant growth and development worldwide reducing agricultural productivity each year. Ethylene is an important phytohormone that affects plants performance under normal and abiotic stress conditions. In this study, role of ethylene was investigated in mitigating salinity stress (100 mM NaCl) effects on photosynthesis in mustard plants subjected to different nitrogen (N; 5 and 10 mM) levels. Plants under salinity stress exhibited marked increase in proline and reduced glutathione (GSH) content and activity of antioxidant enzymes. Nitrogen supplementation at 10 mM was better than 200 mu l l(-1) ethephon treatment under no stress. However, under salinity stress, both N and ethephon were equally effective. The combined application of 10 mM N and ethephon to salinity stressed plants produced greatest increase in photosynthesis by increasing proline and antioxidant metabolism. Ethylene evolution was high under salinity stress, but treatment of 10 mM N and 200 mu l l(-1) ethephon greatly decreased ethylene evolution that was equivalent to the 10 mM N treatment alone. This concentration of ethylene decreased the oxidative stress and increased the photosynthetic nitrogen use efficiency (NUE) maximally to increase photosynthesis. The use of ethylene action inhibitor, norbornadiene (NBD) showed reduction in ethylene mediated effects in alleviating salinity. Norbornadiene decreased the photosynthetic-NUE, proline and GSH content that resulted in decrease in photosynthesis under salinity stress. This study indicated that ethylene regulated the proline and antioxidant metabolism under salinity stress to increase photosynthetic functions of mustard grown with low and optimum N. The modulation of ethylene could be adopted in agricultural practices to increase photosynthesis under salinity stress.
机构:
Agricultural and Ecological Research Unit, Indian Statistical Institute, Kolkata 700 108, 203, B.T.RoadAgricultural and Ecological Research Unit, Indian Statistical Institute, Kolkata 700 108, 203, B.T.Road
Nandy P.
Das S.
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Agricultural and Ecological Research Unit, Indian Statistical Institute, Kolkata 700 108, 203, B.T.RoadAgricultural and Ecological Research Unit, Indian Statistical Institute, Kolkata 700 108, 203, B.T.Road
Das S.
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机构:
Ghose M.
Spooner-Hart R.
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Centre for Plant and Food Science (PAFS), University of Western Sydney, Hawkesbury Campus (Building S8), Penrith South DC, NSW 1797Agricultural and Ecological Research Unit, Indian Statistical Institute, Kolkata 700 108, 203, B.T.Road