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首页> 外文期刊>Planta: An International Journal of Plant Biology >Effects of sugar beet chitinase IV on root-associated fungal community of transgenic silver birch in a field trial
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Effects of sugar beet chitinase IV on root-associated fungal community of transgenic silver birch in a field trial

机译:甜菜几丁质酶IV对田间转基因白桦树根相关真菌群落的影响

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Heterogenous chitinases have been introduced in many plant species with the aim to increase the resistance of plants to fungal diseases. We studied the effects of the heterologous expression of sugar beet chitinase IV on the intensity of ectomycorrhizal (ECM) colonization and the structure of fungal communities in the field trial of 15 transgenic and 8 wild-type silver birch (Betula pendula Roth) genotypes. Fungal sequences were separated in denaturing gradient gel electrophoresis and identified by sequencing the ITS1 region to reveal the operational taxonomic units. ECM colonization was less intense in 7 out of 15 transgenic lines than in the corresponding non-transgenic control plants, but the slight decrease in overall ECM colonization in transgenic lines could not be related to sugar beet chitinase IV expression or total endochitinase activity. One transgenic line showing fairly weak sugar beet chitinase IV expression without significantly increased total endochitinase activity differed significantly from the non-transgenic controls in the structure of fungal community. Five sequences belonging to three different fungal genera (Hebeloma, Inocybe, Laccaria) were indicative of wildtype genotypes, and one sequence (Lactarius) indicated one transgenic line. In cluster analysis, the non-transgenic control grouped together with the transgenic lines indicating that genotype was a more important factor determining the structure of fungal communities than the transgenic status of the plants. With the tested birch lines, no clear evidence for the effect of the heterologous expression of sugar beet chitinase IV on ECM colonization or the structure of fungal community was found.
机译:为了增加植物对真菌病害的抵抗力,已经在许多植物物种中引入了异质几丁质酶。我们在15种转基因和8种野生型桦木(Betula pendula Roth)基因型的田间试验中研究了甜菜几丁质几丁质酶IV异源表达对外生菌根(ECM)定植强度和真菌群落结构的影响。在变性梯度凝胶电泳中分离真菌序列,并通过对ITS1区域进行测序来鉴定,以揭示可操作的分类单位。 15个转基因品系中有7个的ECM定植强度不及相应的非转基因对照植物,但转基因品系中总体ECM定植的轻微下降与甜菜几丁质酶IV的表达或总的内切几丁质酶活性无关。一个显示相当弱的甜菜几丁质酶IV表达而总内切几丁质酶活性没有明显增加的转基因品系与非转基因对照在真菌群落结构上有显着差异。属于三个不同真菌属(Hebeloma,Inocybe,Laccaria)的五个序列表示野生型基因型,而一个序列(乳杆菌)则表示一个转基因系。在聚类分析中,非转基因对照与转基因品系一起分组,表明基因型比决定植物的转基因状态是决定真菌群落结构更重要的因素。对于测试的桦树品系,没有发现甜菜几丁质几丁质酶IV异源表达对ECM定植或真菌群落结构的影响的明确证据。

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