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功能分析和 HcrVf1 和 HcrVf2 的表达谱分析,以开发抗疮痂病的 cisgenic 和 intragenic 苹果。

Functional analysis and expression profiling of HcrVf1 and HcrVf2 for development of scab resistant cisgenic and intragenic apples.

机构信息

Wageningen UR Plant Breeding, Wageningen University and Research Centre, Wageningen, The Netherlands.

出版信息

Plant Mol Biol. 2011 Apr;75(6):579-91. doi: 10.1007/s11103-011-9749-1. Epub 2011 Feb 4.

Abstract

Apple scab resistance genes, HcrVf1 and HcrVf2, were isolated including their native promoter, coding and terminator sequences. Two fragment lengths (short and long) of the native gene promoters and the strong apple rubisco gene promoter (P(MdRbc)) were used for both HcrVf genes to test their effect on expression and phenotype. The scab susceptible cultivar 'Gala' was used for plant transformations and after selection of transformants, they were micrografted onto apple seedling rootstocks for scab disease tests. Apple transformants were also tested for HcrVf expression by quantitative RT-PCR (qRT-PCR). For HcrVf1 the long native promoter gave significantly higher expression that the short one; in case of HcrVf2 the difference between the two was not significant. The apple rubisco gene promoter proved to give the highest expression of both HcrVf1 and HcrVf2. The top four expanding leaves were used initially for inoculation with monoconidial isolate EU-B05 which belongs to race 1 of V. inaequalis. Later six other V. inaequalis isolates were used to study the resistance spectra of the individual HcrVf genes. The scab disease assays showed that HcrVf1 did not give resistance against any of the isolates tested regardless of the expression level. The HcrVf2 gene appeared to be the only functional gene for resistance against Vf avirulent isolates of V. inaequalis. HcrVf2 did not provide any resistance to Vf virulent strains, even not in case of overexpression. In conclusion, transformants carrying the apple-derived HcrVf2 gene in a cisgenic as well as in an intragenic configuration were able to reach scab resistance levels comparable to the Vf resistant control cultivar obtained by classical breeding, cv. 'Santana'.

摘要

已分离出苹果黑星病抗性基因 HcrVf1 和 HcrVf2,包括其天然启动子、编码序列和终止子序列。天然基因启动子的两个片段长度(短和长)和强的苹果 Rubisco 基因启动子(P(MdRbc))被用于这两个 HcrVf 基因,以测试它们对表达和表型的影响。易感品种 'Gala' 用于植物转化,在选择转化体后,将其微嫁接在苹果实生砧木上进行黑星病测试。还通过定量 RT-PCR(qRT-PCR)测试了苹果转化体的 HcrVf 表达。对于 HcrVf1,长天然启动子的表达显著高于短启动子;对于 HcrVf2,两者之间没有显著差异。苹果 Rubisco 基因启动子被证明可以最高表达 HcrVf1 和 HcrVf2。最初使用单孢分离物 EU-B05 对前四片展开叶片进行接种,EU-B05 属于 V. inaequalis 的 1 号小种。后来又使用了其他 6 个 V. inaequalis 分离物来研究单个 HcrVf 基因的抗性谱。黑星病测定表明,无论表达水平如何,HcrVf1 都不能抵抗任何测试的分离物。HcrVf2 似乎是唯一对 Vf 无毒分离物具有抗性的基因。HcrVf2 甚至在过表达的情况下也不能提供对 Vf 毒力菌株的抗性。总之,携带苹果来源的 HcrVf2 基因的转化体在顺式和内含子构型中都能够达到与经典选育获得的 Vf 抗性对照品种 'Santana' 相当的黑星病抗性水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbfe/3057008/c620edb0c5cd/11103_2011_9749_Fig1_HTML.jpg

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