Physiological, metabolic, and stomatal adjustments in response to salt stress in Jatropha curcas

盐度 光合作用 生物 盐生植物 麻疯树 嗜盐菌 植物 园艺 生态学 细菌 遗传学
作者
Marcelo F. Pompelli,P. P. B. Ferreira,Agnaldo Rodrigues de Melo Chaves,Regina Célia Bressan Queiroz de Figueiredo,Auxiliadora Oliveira Martins,Alfredo Jarma‐Orozco,Arvind Bhatt,Willian Batista‐Silva,Laurício Endres,Wagner L. Araújo
出处
期刊:Plant Physiology and Biochemistry [Elsevier BV]
卷期号:168: 116-127 被引量:19
标识
DOI:10.1016/j.plaphy.2021.09.039
摘要

Salinity is a major issue affecting photosynthesis and crop production worldwide. High salinity induces both osmotic and ionic stress in plant tissues as a result of complex interactions among morphological, physiological, and biochemical processes. Salinity, in turn, can provoke inactivation of some enzymes in the Calvin-Benson cycle and therefore affect the fine adjustment of electron transport in photosystem I and carbon related reactions. Here, we used three contrasting Jatropha curcas genotypes namely CNPAE183 (considered tolerant to salinity), CNPAE218 (sensible), and JCAL171 (intermediate) to understand salinity responses. By performing a long-term (12 months) experiment in land conditions, we investigated distinct mechanisms used by J. curcas to cope with threatening salinity effects by analyzing gas exchange, mineral nutrition and metabolic responses. First, our results highlighted the plasticity of stomatal development and density in J. curcas under salt stress. It also demonstrated that the CNPAE183 presented higher salt-tolerance whereas CNPAE218 displayed a more sensitive salt-tolerance response. Our results also revealed that both tolerance and sensitivity to salinity were connected with an extensive metabolite reprogramming in the Calvin-Benson cycle and Tricarboxylic Acid cycle intermediates with significant changes in amino acids and organic acids. Collectively, these results indicate that the CNPAE183 and CNPAE218 genotypes demonstrated certain characteristics of salt-tolerant-like and salt-sensitive-like genotypes, respectively. Overall, our results highlight the significance of metabolites associated with salt responses and further provide a useful selection criterion in during screening for salt tolerance in J. curcas in breeding programmes.
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