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agrobacterium mediated transformation of somatic embryos of persian walnut using fld gene for osmotic stress tolerance
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نویسنده
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sheikh beig goharrizi m. a. ,dejahang a. ,tohidfar m. ,izadi darbandi a. ,carillo n. ,hajirezaei m. r. ,vahdati k.
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منبع
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journal of agricultural science and technology - 2016 - دوره : 18 - شماره : 2 - صفحه:423 -435
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چکیده
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Somatic embryos of persian walnut were transformed with two strains of agrobacterium tumefaciens i.e. lba4404 and c58, and two plasmids, namely, pbi121 with nptii and gus genes for improving the transformation protocol, and p6uubifvti plasmid containing the hpt and fld genes. the transformation frequency was 10%. pcr and rtpcr analysis proved the presence and expression of the genes. the transgenic and nontransgenic somatic embryos of persian walnut were exposed to four salinity levels (0, 50, 100, and 200 mm nacl) and four osmotic stress (0, 1.5, 5, and 10% peg) levels. after 20 days, the number of survived, secondary and cotyledonary somatic embryos, as well as fresh and dry weights of embryos were evaluated. in addition, the transgenic and nontransgenic regenerated plantlets with 3 leaves and 2.5 cm length were subjected to 200 mm nacl. in both experiments, the main effects of fldtransformation and stress treatments on evaluated parameters were significant. transgenic somatic embryos showed no significant differences at 0 and 200 mm nacl and 0 and 1.5% peg. significant differences of transgenic vs. nontransgenic somatic embryos were observed at 50 and 100 mm nacl and 5 and 10% peg. nontransgenic plantlets on medium containing 200 mm nacl showed complete necrosis and died after 10 days, while transgenic lines continued growth until 45 days. our results clearly showed that expression of fld gene increased stress tolerance in fld transformant lines of walnut, and also revealed that expression of this specific cyanobacterial protein may provide a powerful tool to improve tolerance to environmental stresses.
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کلیدواژه
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flavodoxin ,salinity stress tolerance ,walnut transformation
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آدرس
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university of tehran, department of horticulture, ایران, university of tehran, department of horticulture, ایران, shahid beheshti university, faculty of new technologies and energy engineering, department of biotechnology, ایران, university of tehran, department of agronomy and crops breeding sciences, ایران, national university of rosario, institute of molecular and cell biology of rosario (ibr-conicet), argentina, leibniz institute of plant genetics and crop plant research (ipk), germany, university of tehran, department of horticulture, ایران
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پست الکترونیکی
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kvahdati@ut.ac.ir
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Authors
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