The interactive effect of high temperature and water deficit stress on nitrogen fixation, photosynthesis, chlorophyll fluorescence, seed yield and quality in soybean (Glycine max)

被引:0
作者
Kanchan Jumrani
Virender Singh Bhatia
Sunita Kataria
Anshu Rastogi
机构
[1] Indian Institute of Soybean Research,Division of Plant Physiology
[2] School of Biochemistry,Laboratory of Bioclimatology, Department of Ecology and Environmental Protection, Faculty of Environmental Engineering and Mechanical Engineering
[3] Devi Ahilya Vishwavidyalaya,undefined
[4] Poznan University of Life Sciences,undefined
来源
Plant Physiology Reports | 2024年 / 29卷
关键词
Drought; High temperature; Nitrogen fixation; Photosynthesis; Soybean;
D O I
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中图分类号
学科分类号
摘要
Drought and heat stress are important abiotic stresses restricting plant growth, while the two stresses often occur at the same time in nature, little is known about when these stresses occur in combination. Therefore, attempts were made to understand the impact of water stress imposed under different temperature conditions on various physiological parameters such as nitrogen fixation, photosynthesis, chlorophyll fluorescence, seed yield and quality. Cultivar JS 97–52 was grown in pots under polyhouses maintained at day/night temperatures of 30/22, 34/24, 38/26 and 42/28 °C. At each temperature, pots were divided into two sets, one set was unstressed while second was subjected to water stress at reproductive stage (beginning of seed fill). An increase in temperature and water stress caused the reduction in CO2 exchange, which ultimately affected the nitrogen fixation. Nitrogenase activity was significantly declined in the nodules with an increase in temperature. There was a concomitant decline in leghemoglobin, heme-chrome and ureids content in the nodules which ultimately resulted in the reduction of nitrate reductase activity, chlorophyll content and total free amino acid under high temperatures. A decline in nitrogen and carbon fixation ultimately caused a reduction in seed yield and quality. Water stress when imposed at different temperature further aggravated the effects of temperature, and the combination of water stress and high temperature had more detrimental effect. Thus, understanding the mechanisms by which plants acclimate to water deficit combined with high temperature is crucial for identifying stress tolerant soybean cultivars and to pave the way for obtaining cultivars with higher productivity under combined stress conditions.
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页码:125 / 140
页数:15
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[1]  
Ahmed IM(2013)Genotypic differences in physiological characteristics in the tolerance to drought and salinity combined stress between Tibetan wild and cultivated barley Plant Physiolgy and Biochemistry. 63 49-60
[2]  
Dai H(2010)Molecular analysis of ureide accumulation under drought stress in Plant Cell and Environment. 33 1828-1837
[3]  
Zheng W(2020) L Agronomy Journal. 112 194-204
[4]  
Cao F(2014)Developing functional relationships between temperature and soybean yield and seed quality Journal of Plant Physiology. 171 1076-1090
[5]  
Zhang G(2007)Nodule performance within a changing environmental context Environmental and Experimental Botany 59 99-108
[6]  
Sun D(2008)Effect of elevated temperature and water availability on CO Functional Plant Biology 35 306-317
[7]  
Wu F(2009) exchange and nitrogen fixation of nodulated alfalfa plants Environmental and Experimental Botany 65 18-26
[8]  
Alamillo MJ(2004)Carbon partitioning in N Flora 199 361-376
[9]  
Díaz-Leal JL(2013) fixing Medicago sativa plants exposed to different CO Photosynthetica 51 163-190
[10]  
Sánchez-Moran MV(2014) and temperature conditions Functional Plant Biology. 41 1148-1167