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Functional Analysis of the Genotypic Differences in Response of Pea (Pisum sativum L.) to Calcareous-Induced Iron Deficiency

作     者:Sameh Barhoumi Hasna Ellouzi Abdelmajid Krouma 

作者机构:Laboratory of Ecosystems and Biodiversity in Arid Land of TunisiaFaculty of SciencesUniversity of SfaxSfax3000Tunisia Centre of Biotechnology of Borj CedriaHammam Lif2050Tunisia Faculty of Sciences and TechniquesUniversity of KairouanKairouan9100Tunisia 

出 版 物:《Phyton-International Journal of Experimental Botany》 (国际实验植物学杂志(英文))

年 卷 期:2023年第92卷第2期

页      面:521-536页

核心收录:

学科分类:0710[理学-生物学] 09[农学] 0902[农学-园艺学] 090202[农学-蔬菜学] 

基  金:supported by the Ministry of Higher Education and Scientific Research and conducted within the framework of the Partnership for Research and Innovation in the Mediterranean Area(PRIMA) Project DiVicia:Use and management of Vicia species for sustainability and resilience in biodiversity-based farming systems 

主  题:Calcareous-induced Fe deficiency catalase Fe use efficiency photosynthesis superoxide dismutase 

摘      要:Lime-induced iron chlorosis is a major nutritional disorder causing severe plant growth and yield reduction in the calcareous soils of *** understanding the behavior of key metabolic functions of peas on calcareous soils,the identification of useful traits of tolerance,and the exploration of the genotypic differences in response to this constraint remain the most efficient approaches due to their coast,environmental benefits,and *** this purpose,a greenhouse experiment was conducted on three pea genotypes(Alexandra:Alex,Douce de provence:DP,and Merveille de Kelvedon:MK)cultivated on calcareous soil(Fe-deficient)and fertile soil(control).Plant growth,SPAD index,iron nutrition and distribution,photosynthesis,and antioxidant enzymes were deeply analyzed to discriminate genotypic ***-induced iron deficiency reduced SPAD index,plant growth,net photosynthesis,and tissue Fe content against a significant stimulation of the oxidative stress indicators,H2O2 and Malondialdehyde(MDA).Moreover,we reported a significant induction of SOD and CAT activity in shoots and roots of the Alexandra *** use efficiency increased on calcareous soil and clearly discriminated the studied *** genotype was found to be the most tolerant to lime-induced iron *** genotype protects its tissues against oxidative stress by stimulating enzyme activities(SOD and CAT)and develops significant efficiency of Fe uptake,translocation to shoots and use when cultivated on calcareous soil.

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