Agrobacterium-mediated transformation and in vitro evaluation of dehydration tolerance in transgenic tobacco harboring Ca-AFP gene

Tran Thi Ngoc Ha, Hoang Van Duong, Nguyen Huynh Cam Tu, Phan Tuong Loc
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Abstract

We have known that plant defensins have the main roles in biotic stress, especially antifungal activities. In addition, their functions on abiotic stress tolerance have been demonstrated on previous studies, but that information was still limited. Ca-AFP, a plant defensin gene derived from chickpea, was transformed into tobacco leaf disks by Agrobacterium method. After 16 weeks on selection media containing 15 mg/L hygromycin, some regeneration shoot lines were obtained. Four of them showed the positive bands on hpt gene and Ca-AFP gene by PCR screening. These lines were applied on in vitro evaluation of dehydration tolerance using rotary liquid culture, and the water-deficit stress was caused by 2% (w/v) PEG 6000. These four transgenic lines had better growth of adventitious roots (number of adventitious roots, total adventitious root length, and average of root length) and higher rate of biomass increase than the non-transgenic line. The result illustrated that the expression of Ca-AFP gene could mitigate the negative effect of water-deficit stress on transgenic tobacco lines under the in vitro stress condition. These transgenic tobacco lines are potential for water-deficit stress trials on greenhouse in the future.
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农杆菌介导的含Ca-AFP基因转基因烟草的转化及体外脱水耐受性评价
我们已经知道植物防御素在生物胁迫中起主要作用,特别是抗真菌活性。此外,它们在非生物胁迫耐受方面的作用已经在以往的研究中得到证实,但这方面的信息仍然有限。利用农杆菌法将鹰嘴豆植物防御素基因Ca-AFP转化到烟草叶片中。在含15mg /L潮霉素的培养基上培养16周后,获得了一些再生苗系。其中4例经PCR筛选hpt基因和Ca-AFP基因呈阳性条带。利用旋转液体培养对这些品系进行了体外脱水耐受性评价,并对2% (w/v) PEG 6000造成的水分亏缺胁迫进行了研究。4个转基因品系的不定根生长(不定根数、总不定根长和平均根长)和生物量增长率均高于非转基因品系。结果表明,Ca-AFP基因的表达可以减轻水分亏缺胁迫对转基因烟草株系在体外胁迫条件下的负面影响。这些转基因烟草品系在未来的温室亏水胁迫试验中具有潜力。
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