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Mol Biotechnol ; 59(8): 334-342, 2017 Aug.
Article in English | MEDLINE | ID: mdl-28667571

ABSTRACT

A significant portion of organic phosphorus comprises of phytates which are not available to wheat for uptake. Hence for enabling wheat to utilize organic phosphorus in form of phytate, transgenic wheat expressing phytase from Aspergillus japonicus under barley root-specific promoter was developed. Transgenic events were initially screened via selection media containing BASTA, followed by PCR and BASTA leaf paint assay after hardening. Out of 138 successfully regenerated To events, only 12 had complete constructs and thus further analyzed. Positive T1 transgenic plants, grown in sand, exhibited 0.08-1.77, 0.02-0.67 and 0.44-2.14 fold increase in phytase activity in root extracts, intact roots and external root solution, respectively, after 4 weeks of phosphorus stress. Based on these results, T2 generation of four best transgenic events was further analyzed which showed up to 1.32, 56.89, and 15.40 fold increase in phytase activity in root extracts, intact roots and external root solution, respectively, while in case of real-time PCR, maximum fold increase of 19.8 in gene expression was observed. Transgenic lines showed 0.01-1.18 fold increase in phosphorus efficiency along with higher phosphorus content when supplied phytate or inorganic phosphorus than control plants. Thus, this transgenic wheat may aid in reducing fertilizer utilization and enhancing wheat yield.


Subject(s)
6-Phytase/metabolism , Phosphorus/metabolism , Phytic Acid/metabolism , Plant Roots/enzymology , Triticum/enzymology , Triticum/genetics , Gene Expression Regulation, Plant/drug effects , Phosphorus/pharmacology , Plants, Genetically Modified , Real-Time Polymerase Chain Reaction , Solutions , Stress, Physiological/drug effects , Triticum/drug effects
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