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dc.contributor.author
Sabagh, Ayman EL  
dc.contributor.author
Hossain, Akbar  
dc.contributor.author
Islam, Mohammad Sirajul  
dc.contributor.author
Iqbal, Muhammad Aamir  
dc.contributor.author
Fahad, Shah  
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Ratnasekera, Disna  
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Azeem, Faraz  
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Wasaya, Allah  
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Sytar, Oksana  
dc.contributor.author
Kumar, Narendra  
dc.contributor.author
Llanes, Analia Susana  
dc.contributor.author
Erman, Murat  
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Ceritoğlu, Mustafa  
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Arslan, Huseyin  
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Arslan, Doğan  
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Hussain, Sajjad  
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Mubeen, Muhammad  
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Ikram, Muhammad  
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Meena, Ram Swaroop  
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Gharib, Hany  
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Waraich, Ejaz  
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Nasim, Wajid  
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Liu, Liyun  
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Saneoka, Hirofumi  
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Hossain, Akbar  
dc.date.available
2022-10-06T13:49:40Z  
dc.date.issued
2021  
dc.identifier.citation
Sabagh, Ayman EL; Hossain, Akbar; Islam, Mohammad Sirajul; Iqbal, Muhammad Aamir; Fahad, Shah; et al.; Consequences and Mitigation Strategies of Heat Stress for Sustainability of Soybean (Glycine max L. Merr.) Production under the Changing Climate; IntechOpen; 2021; 336-358  
dc.identifier.isbn
978-1-83962-527-5  
dc.identifier.uri
http://hdl.handle.net/11336/172204  
dc.description.abstract
Increasing ambient temperature is a major climatic factor that negatively affects plant growth and development, and causes significant losses in soybean crop yield worldwide. Thus, high temperatures (HT) result in less seed germination, which leads to pathogenic infection, and decreases the economic yield of soybean. In addition, the efficiency of photosynthesis and transpiration of plants are affected by high temperatures, which have negative impact on the physio-biochemical process in the plant system, finally deteriorate the yield and quality of the affected crop. However, plants have several mechanisms of specific cellular detection of HT stress that help in the transduction of signals, producing the activation of transcription factors and genes to counteract the harmful effects caused by the stressful condition. Among the contributors to help the plant in re-establishing cellular homeostasis are the applications of organic stimulants (antioxidants, osmoprotectants, and hormones), which enhance the productivity and quality of soybean against HT stress. In this chapter, we summarized the physiological and biochemical mechanisms of soybean plants at various growth stages under HT. Furthermore, it also depicts the mitigation strategies to overcome the adverse effects of HT on soybean using exogenous applications of bioregulators. These studies intend to increase the understanding of exogenous biochemical compounds that could reduce the adverse effects of HT on the growth, yield, and quality of soybean.  
dc.format
application/pdf  
dc.language.iso
eng  
dc.publisher
IntechOpen  
dc.rights
info:eu-repo/semantics/openAccess  
dc.rights.uri
https://creativecommons.org/licenses/by-nc-sa/2.5/ar/  
dc.subject
Glycine max L.  
dc.subject
Osmoprotectants  
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Crop productivity  
dc.subject
Heat stress  
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Mitigation strategies  
dc.subject.classification
Otras Ciencias Biológicas  
dc.subject.classification
Ciencias Biológicas  
dc.subject.classification
CIENCIAS NATURALES Y EXACTAS  
dc.title
Consequences and Mitigation Strategies of Heat Stress for Sustainability of Soybean (Glycine max L. Merr.) Production under the Changing Climate  
dc.type
info:eu-repo/semantics/publishedVersion  
dc.type
info:eu-repo/semantics/bookPart  
dc.type
info:ar-repo/semantics/parte de libro  
dc.date.updated
2022-09-20T18:46:39Z  
dc.journal.pagination
336-358  
dc.journal.pais
Austria  
dc.journal.ciudad
Vienna  
dc.description.fil
Fil: Sabagh, Ayman EL. University Of Kafrelsheikh; Egipto  
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Fil: Hossain, Akbar. Bangladesh Wheat and Maize Research Institute; Bangladesh  
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Fil: Islam, Mohammad Sirajul. Hajee Mohammad Danesh Science and Technology University; Bangladesh  
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Fil: Iqbal, Muhammad Aamir. University Of Poonch; Pakistán  
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Fil: Fahad, Shah. The University Of Swabi; Pakistán  
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Fil: Ratnasekera, Disna. University Of Ruhuna; Sri Lanka  
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Fil: Azeem, Faraz. Charan Singh University; India  
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Fil: Wasaya, Allah. College Of Agriculture, Bzu; Pakistán  
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Fil: Sytar, Oksana. Kiev National University of Taras Shevchenko; Ucrania. Slovak University of Agriculture in Nitra; Eslovaquia  
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Fil: Kumar, Narendra. Icar-indian Institute Of Pulses Research; India  
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Fil: Llanes, Analia Susana. Universidad Nacional de Rio Cuarto. Facultad de Cs.exactas Fisicoquimicas y Naturales. Instituto de Investigaciones Agrobiotecnologicas. - Consejo Nacional de Investigaciones Cientificas y Tecnicas. Centro Cientifico Tecnologico Conicet - Cordoba. Instituto de Investigaciones Agrobiotecnologicas.; Argentina  
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Fil: Erman, Murat. Siirt University; Turquía  
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Fil: Ceritoğlu, Mustafa. Siirt University; Turquía  
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Fil: Arslan, Huseyin. Siirt University; Turquía  
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Fil: Arslan, Doğan. Siirt University; Turquía  
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Fil: Hussain, Sajjad. COMSATS University Islamabad; Pakistán  
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Fil: Mubeen, Muhammad. COMSATS University Islamabad; Pakistán  
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Fil: Ikram, Muhammad. Bahauddin Zakariya University; Pakistán  
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Fil: Meena, Ram Swaroop. Banaras Hindu University; India  
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Fil: Gharib, Hany. University of Poonch Rawalakot; Egipto  
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Fil: Waraich, Ejaz. Department of Agronomy, Faculty of Agriculture, University of Poonch Rawalakot (AJK); Pakistán  
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Fil: Nasim, Wajid. Bahauddin Zakariya University; Pakistán  
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Fil: Liu, Liyun. Hiroshima University; Japón  
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Fil: Saneoka, Hirofumi. Hiroshima University; Japón  
dc.relation.alternativeid
info:eu-repo/semantics/altIdentifier/doi/http://dx.doi.org/10.5772/intechopen.92098  
dc.relation.alternativeid
info:eu-repo/semantics/altIdentifier/url/https://www.intechopen.com/chapters/71856  
dc.conicet.paginas
418  
dc.source.titulo
Plant Stress Physiology