Combined Boron Toxicity and Salinity Stress—An Insight into Its Interaction in Plants
The continuously changing environment has intensified the occurrence of abiotic stress conditions. Individually, boron (B) toxicity and salinity stress are well recognized as severe stress conditions for plants. However, their coexistence in arid and semi-arid agricultural regions has shown ambiguou...
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doaj-236d1bf457364002852b22e35d4c405d2020-11-24T23:52:10ZengMDPI AGPlants2223-77472019-09-0181036410.3390/plants8100364plants8100364Combined Boron Toxicity and Salinity Stress—An Insight into Its Interaction in PlantsAnamika Pandey0Mohd Kamran Khan1Erdogan Esref Hakki2Sait Gezgin3Mehmet Hamurcu4Department of Soil Science and Plant Nutrition, Faculty of Agriculture, Selcuk University, Konya 42079, TurkeyDepartment of Soil Science and Plant Nutrition, Faculty of Agriculture, Selcuk University, Konya 42079, TurkeyDepartment of Soil Science and Plant Nutrition, Faculty of Agriculture, Selcuk University, Konya 42079, TurkeyDepartment of Soil Science and Plant Nutrition, Faculty of Agriculture, Selcuk University, Konya 42079, TurkeyDepartment of Soil Science and Plant Nutrition, Faculty of Agriculture, Selcuk University, Konya 42079, TurkeyThe continuously changing environment has intensified the occurrence of abiotic stress conditions. Individually, boron (B) toxicity and salinity stress are well recognized as severe stress conditions for plants. However, their coexistence in arid and semi-arid agricultural regions has shown ambiguous effects on plant growth and development. Few studies have reported that combined boron toxicity and high salinity stress have more damaging effects on plant growth than individual B and salt stress, while other studies have highlighted less damaging effects of the combined stress. Hence, it is interesting to understand the positive interaction of this combined stress so that it can be effectively employed for the improvement of crops that generally show the negative effects of this combined stress. In this review, we discussed the possible processes that occur in plants in response to this combined stress condition. We highly suggest that the combined B and salinity stress condition should be considered as a novel stress condition by researchers; hence, we recommend the name “BorSal” for this combined boron toxicity and high salinity state in the soil. Membrane-bound activities, mobility of ions, water transport, pH changes, transpiration, photosynthesis, antioxidant activities, and different molecular transporters are involved in the effects of BorSal interaction in plants. The discussed mechanisms indicate that the BorSal stress state should be studied in light of the involved physiological and molecular processes that occur after B and salt interaction in plants.https://www.mdpi.com/2223-7747/8/10/364combined stressboronnovel stresssalinityshared response |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Anamika Pandey Mohd Kamran Khan Erdogan Esref Hakki Sait Gezgin Mehmet Hamurcu |
spellingShingle |
Anamika Pandey Mohd Kamran Khan Erdogan Esref Hakki Sait Gezgin Mehmet Hamurcu Combined Boron Toxicity and Salinity Stress—An Insight into Its Interaction in Plants Plants combined stress boron novel stress salinity shared response |
author_facet |
Anamika Pandey Mohd Kamran Khan Erdogan Esref Hakki Sait Gezgin Mehmet Hamurcu |
author_sort |
Anamika Pandey |
title |
Combined Boron Toxicity and Salinity Stress—An Insight into Its Interaction in Plants |
title_short |
Combined Boron Toxicity and Salinity Stress—An Insight into Its Interaction in Plants |
title_full |
Combined Boron Toxicity and Salinity Stress—An Insight into Its Interaction in Plants |
title_fullStr |
Combined Boron Toxicity and Salinity Stress—An Insight into Its Interaction in Plants |
title_full_unstemmed |
Combined Boron Toxicity and Salinity Stress—An Insight into Its Interaction in Plants |
title_sort |
combined boron toxicity and salinity stress—an insight into its interaction in plants |
publisher |
MDPI AG |
series |
Plants |
issn |
2223-7747 |
publishDate |
2019-09-01 |
description |
The continuously changing environment has intensified the occurrence of abiotic stress conditions. Individually, boron (B) toxicity and salinity stress are well recognized as severe stress conditions for plants. However, their coexistence in arid and semi-arid agricultural regions has shown ambiguous effects on plant growth and development. Few studies have reported that combined boron toxicity and high salinity stress have more damaging effects on plant growth than individual B and salt stress, while other studies have highlighted less damaging effects of the combined stress. Hence, it is interesting to understand the positive interaction of this combined stress so that it can be effectively employed for the improvement of crops that generally show the negative effects of this combined stress. In this review, we discussed the possible processes that occur in plants in response to this combined stress condition. We highly suggest that the combined B and salinity stress condition should be considered as a novel stress condition by researchers; hence, we recommend the name “BorSal” for this combined boron toxicity and high salinity state in the soil. Membrane-bound activities, mobility of ions, water transport, pH changes, transpiration, photosynthesis, antioxidant activities, and different molecular transporters are involved in the effects of BorSal interaction in plants. The discussed mechanisms indicate that the BorSal stress state should be studied in light of the involved physiological and molecular processes that occur after B and salt interaction in plants. |
topic |
combined stress boron novel stress salinity shared response |
url |
https://www.mdpi.com/2223-7747/8/10/364 |
work_keys_str_mv |
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