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转基因番茄和矮牵牛中交替氧化酶的修饰表达影响番茄斑萎病毒抗性水平。

Modified expression of alternative oxidase in transgenic tomato and petunia affects the level of tomato spotted wilt virus resistance.

机构信息

Department of Plant and Environmental Protection Sciences, University of Hawaii, Honolulu, HI 96822, USA.

出版信息

BMC Biotechnol. 2011 Oct 20;11:96. doi: 10.1186/1472-6750-11-96.

Abstract

BACKGROUND

Tomato spotted wilt virus (TSWV) has a very wide host range, and is transmitted in a persistent manner by several species of thrips. These characteristics make this virus difficult to control. We show here that the over-expression of the mitochondrial alternative oxidase (AOX) in tomato and petunia is related to TSWV resistance.

RESULTS

The open reading frame and full-length sequence of the tomato AOX gene LeAox1au were cloned and introduced into tomato 'Healani' and petunia 'Sheer Madness' using Agrobacterium-mediated transformation. Highly expressed AOX transgenic tomato and petunia plants were selfed and transgenic R1 seedlings from 10 tomato lines and 12 petunia lines were used for bioassay. For each assayed line, 22 to 32 tomato R1 progeny in three replications and 39 to 128 petunia progeny in 13 replications were challenged with TSWV. Enzyme-Linked Immunosorbent Assays showed that the TSWV levels in transgenic tomato line FKT4-1 was significantly lower than that of wild-type controls after challenge with TSWV. In addition, transgenic petunia line FKP10 showed significantly less lesion number and smaller lesion size than non-transgenic controls after inoculation by TSWV.

CONCLUSION

In all assayed transgenic tomato lines, a higher percentage of transgenic progeny had lower TSWV levels than non-transgenic plants after challenge with TSWV, and the significantly increased resistant levels of tomato and petunia lines identified in this study indicate that altered expression levels of AOX in tomato and petunia can affect the levels of TSWV resistance.

摘要

背景

番茄斑萎病毒(TSWV)具有非常广泛的宿主范围,并且由几种蓟马以持久的方式传播。这些特征使得这种病毒难以控制。我们在这里表明,在番茄和矮牵牛中过度表达线粒体替代氧化酶(AOX)与 TSWV 抗性有关。

结果

克隆并引入了番茄 AOX 基因 LeAox1au 的开放阅读框和全长序列,使用农杆菌介导的转化将其导入番茄“Healani”和矮牵牛“疯狂的 Sheer”。高度表达 AOX 的转基因番茄和矮牵牛植物自交,从 10 个番茄系和 12 个矮牵牛系中获得转基因 R1 幼苗,用于生物测定。对于每个测定的系,在三个重复中,22 到 32 个番茄 R1 后代和在 13 个重复中 39 到 128 个矮牵牛后代用 TSWV 进行挑战。酶联免疫吸附试验表明,在受到 TSWV 挑战后,转基因番茄系 FKT4-1 的 TSWV 水平明显低于野生型对照。此外,在接种 TSWV 后,转基因矮牵牛系 FKP10 的病斑数量和病斑大小明显小于非转基因对照。

结论

在所有测定的转基因番茄系中,在受到 TSWV 挑战后,具有较低 TSWV 水平的转基因后代的比例高于非转基因植物,并且本研究中鉴定的番茄和矮牵牛系的抗性水平显著增加表明,番茄和矮牵牛中 AOX 的表达水平改变可以影响 TSWV 抗性水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dffe/3226446/6ec54a1e6218/1472-6750-11-96-1.jpg

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