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Salinity response pattern of glyoxalase I gene from halophyte plant Aeluropus littoralis در word

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 Salinity response pattern of glyoxalase I gene from halophyte plant Aeluropus littoralis در word دارای 6 صفحه می باشد و دارای تنظیمات در microsoft word می باشد و آماده پرینت یا چاپ است

فایل ورد Salinity response pattern of glyoxalase I gene from halophyte plant Aeluropus littoralis در word  کاملا فرمت بندی و تنظیم شده در استاندارد دانشگاه  و مراکز دولتی می باشد.

توجه : در صورت  مشاهده  بهم ريختگي احتمالي در متون زير ،دليل ان کپي کردن اين مطالب از داخل فایل ورد مي باشد و در فايل اصلي Salinity response pattern of glyoxalase I gene from halophyte plant Aeluropus littoralis در word،به هيچ وجه بهم ريختگي وجود ندارد


بخشی از متن Salinity response pattern of glyoxalase I gene from halophyte plant Aeluropus littoralis در word :

سال انتشار : 1394

نام کنفرانس یا همایش : دومين کنفرانس بين المللي توسعه پايدار، راهکارها و چالش ها با محوريت کشاورزي، منابع طبيعي، محيط زيست و گردشگري

تعداد صفحات : 6

چکیده مقاله:

Aeluropus littoralis (Gouan) Parlatore is a rhizomatous perennial halophyte monocotyledonous that can withstand environmental stresses such as salinity. In this study, the relative expression of glyoxalase I (GLY I) gene, as one of the main factors causing stress tolerance, were investigated in A.littoralis under salinity and recovery conditions by Real-time PCR. A.littoralis seedlings towards this purpose were subjected gradually to salt stress using 600 mM NaCl. Plant samples, were prepared, separately from the shoot and root tissues after 6 h, 24 h and 1 week behind the salt treatment, as well as 6h, 24h and 1 week after stress removing. Real-Time PCR was performed, in order to the GLY I expression level assessment. The results suggested significant increases of the GLY I expression levels, that were more remarkable among salt stressed treatments compared to the recovered samples. Maximum GLY I activities were observed after 6 and 24h salt stress that were 6 and 3.5 fold higher, respectively, compared to the control. Also these increases were more greater in shoot tissues than root ones. Overexpression of GLY I under NaCl stress, in fact was considered as a salinity tolerance factor in halophyte A.littoralis.

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