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通过叠加两个抗真菌基因(几丁质酶和葡聚糖酶)增强转基因豌豆(Pisum sativum L.)对真菌病害的抗性。

Enhancing transgenic pea (Pisum sativum L.) resistance against fungal diseases through stacking of two antifungal genes (chitinase and glucanase).

作者信息

Amian Awah Anna, Papenbrock Jutta, Jacobsen Hans-Jörg, Hassan Fathi

机构信息

Gottfried Wilheim Leibniz Universität Hannover, Institute of Plant Biotechnology, Herrenhäuserstrasse 2, Hannover, Germany.

出版信息

GM Crops. 2011 Apr-Jun;2(2):104-9. doi: 10.4161/gmcr.2.2.16125. Epub 2011 Apr 1.

Abstract

One way of enhancing and broadening resistance of plants to different biotic and abiotic stresses is to combine transgenes expressing several genes into a single line. This can be done using different strategies such as crossing, single vector with multiple genes, co-transformation, sequential transformation and IRES elements. In the present study conventional crossing method was used. Parental transgenic lines transformed via Agrobacterium tumefasciens-mediated gene transformation with pGreenII binary vector harbouring a bar gene as selectable marker in combination with the family 19 chitinase gene from Streptomyces olivaceoviridis for one line and 1,3-β-glucanase from barley (Hordeum vulgare) for the other line were used for crossing. Both chitinase and glucanase genes were cloned into pGreenII vector under the control of the constitutive double 35S-promoter from cauliflower mosaic virus. Progenies expressing the two genes were characterised at the molecular level using PCR, RT-PCR and Southern blot analysis, as well as segregation and stability studies of the respective expression levels. Leaf paint assay was used as functional test for herbicide resistant gene. Stable inheritance of the antifungal genes in the transgenic plants was demonstrated. The synergistic effect of crossed plants was tested using in vitro assay which shows higher inhibition of spore germination.

摘要

增强和拓宽植物对不同生物和非生物胁迫抗性的一种方法是将表达多个基因的转基因组合到一个品系中。这可以通过不同策略来实现,如杂交、含多个基因的单一载体、共转化、顺序转化和内部核糖体进入位点(IRES)元件。在本研究中使用了传统的杂交方法。亲本转基因品系是通过根癌农杆菌介导的基因转化获得的,其中一个品系使用携带bar基因作为选择标记的pGreenII二元载体,并与来自橄榄绿链霉菌的19家族几丁质酶基因组合,另一个品系则与来自大麦(Hordeum vulgare)的1,3-β-葡聚糖酶基因组合,用于杂交。几丁质酶基因和葡聚糖酶基因都在花椰菜花叶病毒组成型双35S启动子的控制下克隆到pGreenII载体中。使用PCR、RT-PCR和Southern印迹分析在分子水平上对表达这两个基因的后代进行了表征,以及对各自表达水平的分离和稳定性研究。叶喷试验用作抗除草剂基因的功能测试。证明了转基因植物中抗真菌基因的稳定遗传。使用体外试验测试了杂交植物的协同效应,结果显示对孢子萌发有更高的抑制作用。

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