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抗根黑腐病和番茄斑萎病毒的单倍体烟草基因型的有效性。

Effectiveness of combining resistance to Thielaviopsis basicola and Tomato spotted wilt virus in haploid tobacco genotypes.

机构信息

Department of Plant Breeding and Biotechnology, Institute of Soil Science and Plant Cultivation, State Research Institute , ul. Czartoryskich 8, PL-24-100 Pulawy, Poland.

出版信息

Breed Sci. 2011 Dec;61(4):389-93. doi: 10.1270/jsbbs.61.389. Epub 2011 Dec 15.

Abstract

Black root rot (BRR) caused by Thielaviopsis basicola as well as Tomato spotted wilt virus (TSWV) are the most serious problems in tobacco growing regions. We crossed the breeding line WGL 3 carrying BRR resistance derived from N.glauca with the line PW-834 the resistance of which to TSWV was transferred from cultivar Polalta. Anthers obtained from F(1) hybrid plants were cultured to induce haploids combining resistance to Th. basicola and TSWV. Flow cytometry analysis revealed 242 haploids and 2 spontaneous doubled haploids among regenerants. All haploids were cloned and then evaluated for BRR as well as TSWV resistance. The presence of pathogens was detected by microscopic evaluation of roots or using DAS-ELISA test. Microscopic assessment showed that, 132 haploids had no symptoms of Th. basicola which, together with the absence of symptoms in the F(1) hybrids, indicated a dominant monogenic mode of inheritance. At the same time only 30 haploids demonstrated resistance to TSWV. SCAR markers associated with TSWV resistance gene detection was applied. The results indicate that small proportion of TSWV-resistant haploids is probably due to the influence of deleterious genes flanking the resistance factor that reduced vitality of gametophytes. Altogether, 24 haploids showed multiple resistance to Th. basicola and TSWV.

摘要

黑根腐病(BRR)由 Thielaviopsis basicola 引起,以及番茄斑萎病毒(TSWV)是烟草种植地区最严重的问题。我们将携带来自 N.glauca 的 BRR 抗性的育种系 WGL 3 与从 Polalta 品种转移对 TSWV 抗性的系 PW-834 杂交。从 F(1)杂种植物获得的花药被培养以诱导结合对 Th. basicola 和 TSWV 的抗性的单倍体。流式细胞术分析显示,再生体中有 242 个单倍体和 2 个自发加倍的单倍体。所有单倍体都被克隆,然后评估其对 BRR 和 TSWV 的抗性。通过对根的显微镜评估或使用 DAS-ELISA 测试来检测病原体的存在。显微镜评估表明,132 个单倍体没有 Th. basicola 的症状,这与 F(1)杂种中没有症状一起表明了显性单基因遗传模式。同时,只有 30 个单倍体对 TSWV 表现出抗性。应用了与 TSWV 抗性基因检测相关的 SCAR 标记。结果表明,少数 TSWV 抗性单倍体可能是由于抗性因子侧翼的有害基因的影响,降低了配子体的活力。总的来说,24 个单倍体对 Th. basicola 和 TSWV 表现出多重抗性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9cae/3406771/9a0bffa09878/bs-61-389f1.jpg

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