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利用MAT系统进行基因工程改造的白杨中PsMTA1基因的表达与重金属耐受性以及对8-羟基-2'-脱氧鸟苷介导的DNA损伤的保护作用相关。

Expression of the PsMTA1 gene in white poplar engineered with the MAT system is associated with heavy metal tolerance and protection against 8-hydroxy-2'-deoxyguanosine mediated-DNA damage.

作者信息

Balestrazzi Alma, Botti Silvia, Zelasco Samantha, Biondi Stefania, Franchin Cinzia, Calligari Paolo, Racchi Milvia, Turchi Adelaide, Lingua Guido, Berta Graziella, Carbonera Daniela

机构信息

Dipartimento di Genetica e Microbiologia, Università di Pavia, Pavia, Italy.

出版信息

Plant Cell Rep. 2009 Aug;28(8):1179-92. doi: 10.1007/s00299-009-0719-x. Epub 2009 Jun 9.

DOI:10.1007/s00299-009-0719-x
PMID:19506883
Abstract

Marker-free transgenic white poplar (Populus alba L., cv 'Villafranca') plants, expressing the PsMT (A1) gene from Pisum sativum for a metallothionein-like protein, were produced by Agrobacterium tumefaciens-mediated transformation. The 35SCaMV-PsMT (A1)-NosT cassette was inserted into the ipt-type vector pMAT22. The occurrence of the abnormal ipt-shooty phenotype allowed the visual selection of transformants, while the yeast site-specific recombination R/RS system was responsible for the excision of the undesired vector sequences with the consequent recovery of normal marker-free transgenic plants. Molecular analyses confirmed the presence of the 35SCaMV-PsMT (A1)-NosT cassette and transgene expression. Five selected lines were further characterized, revealing the ability to withstand heavy metal toxicity. They survived 0.1 mM CuCl(2), a concentration which strongly affected the nontransgenic plants. Moreover, root development was only slightly affected by the ectopic expression of the transgene. Reactive oxygen species were accumulated to a lower extent in leaf tissues of multi-auto-transformation (MAT)-PsMT(A1) plants exposed to copper and zinc, compared to control plants. Tolerance to photo-oxidative stress induced by paraquat was another distinctive feature of the MAT-PsMT(A1) lines. Finally, low levels of DNA damage were detected by quantifying the amounts of 8-hydroxy-2'-deoxyguanosine in leaf tissues of the transgenic plants exposed to copper.

摘要

通过根癌农杆菌介导的转化,培育出了无标记转基因银白杨(Populus alba L.,品种‘Villafranca’)植株,其表达来自豌豆的PsMT(A1)基因,该基因编码一种类金属硫蛋白。35SCaMV - PsMT(A1)- NosT盒被插入到ipt型载体pMAT22中。ipt - 丛生芽异常表型的出现使得能够对转化体进行视觉筛选,而酵母位点特异性重组R/RS系统负责切除不需要的载体序列,从而获得正常的无标记转基因植株。分子分析证实了35SCaMV - PsMT(A1)- NosT盒的存在和转基因的表达。对五个选定的株系进行了进一步的特性分析,结果显示它们具有耐受重金属毒性的能力。它们在0.1 mM CuCl₂浓度下存活,而该浓度对非转基因植株有强烈影响。此外,转基因的异位表达对根系发育的影响较小。与对照植株相比,暴露于铜和锌的多自动转化(MAT)- PsMT(A1)植株叶片组织中活性氧的积累程度较低。对百草枯诱导的光氧化胁迫的耐受性是MAT - PsMT(A1)株系的另一个显著特征。最后,通过定量检测暴露于铜的转基因植株叶片组织中8 - 羟基 - 2'- 脱氧鸟苷的含量,发现DNA损伤水平较低。

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