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FUM Gene Expression Profile and Fumonisin Production by Fusarium verticillioides Inoculated in Bt and Non-Bt Maize

机译:Bt和非Bt玉米接种Fusarium v​​erticillioides的FUM基因表达谱和伏马菌素生产

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摘要

This study aimed to determine the levels of fumonisins produced by Fusarium verticillioides and FUM gene expression on Bt (Bacillus thuringiensis) and non-Bt maize, post harvest, during different periods of incubation. Transgenic hybrids 30F35 YG, 2B710 Hx and their isogenic (30F35 and 2B710) were collected from the field and a subset of 30 samples selected for the experiments. Maize samples were sterilized by gamma radiation at a dose of 20 kGy. Samples were then inoculated with F. verticillioides and analyzed under controlled conditions of temperature and relative humidity for fumonisin B1 and B2 (FB1 and FB2) production and FUM1, FUM3, FUM6, FUM7, FUM8, FUM13, FUM14, FUM15, and FUM19 expression. 2B710 Hx and 30F35 YG kernel samples were virtually intact when compared to the non-Bt hybrids that came from the field. Statistical analysis showed that FB1 production was significantly lower in 30F35 YG and 2B710 Hx than in the 30F35 and 2B710 hybrids (P < 0.05). However, there was no statistical difference for FB2 production (P > 0.05). The kernel injuries observed in the non-Bt samples have possibly facilitated F. verticillioides penetration and promoted FB1 production under controlled conditions. FUM genes were expressed by F. verticillioides in all of the samples. However, there was indication of lower expression of a few FUM genes in the Bt hybrids; and a weak association between FB1 production and the relative expression of some of the FUM genes were observed in the 30F35 YG hybrid.
机译:这项研究的目的是确定收获后不同孵化期的网状镰刀菌产生的伏马菌素水平以及Bt(苏云金芽孢杆菌)和非Bt玉米上的FUM基因表达。从田间收集了转基因杂种30F35 YG,2B710 Hx及其同基因(30F35和2B710),并选择了30个样品的子集进行实验。玉米样品通过伽玛辐射以20 kGy的剂量灭菌。然后将样品接种黄褐葡萄球菌,并在温度和相对湿度的控制条件下分析伏马菌素B1和B2(FB1和FB2)的产生以及FUM1,FUM3,FUM6,FUM7,FUM8,FUM13,FUM14,FUM15和FUM19的表达。与来自现场的非Bt杂种相比,2B710 Hx和30F35 YG内核样品实际上是完整的。统计分析表明,在30F35 YG和2B710 Hx中FB1的产量显着低于30F35和2B710杂种(P <0.05)。但是,FB2的产量没有统计学差异(P> 0.05)。在非Bt样品中观察到的籽粒损伤可能在控制条件下促进了拟南芥的侵染并促进了FB1的产生。 FUM基因在所有样品中均由拟南芥(F. verticillioides)表达。然而,有迹象表明 Bt 杂种中一些FUM基因的表达较低。在30F35 YG杂种中观察到FB1产生与某些 FUM 基因的相对表达之间的弱关联。

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