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首页> 外文期刊>Virus Genes >Evaluation of virus resistance and agronomic performance of rice cultivar ASD 16 after transfer of transgene against Rice tungro bacilliform virus by backcross breeding
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Evaluation of virus resistance and agronomic performance of rice cultivar ASD 16 after transfer of transgene against Rice tungro bacilliform virus by backcross breeding

机译:转基因稻育植物稻草植物病毒稻草稻草稻草病毒抗性及农艺性能评价

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摘要

Severe losses of rice yield in south and southeast Asia are caused by Rice tungro disease (RTD) induced by mixed infection of Rice tungro bacilliform virus (RTBV) and Rice tungro spherical virus (RTSV). In order to develop transgene-based resistance against RTBV, one of its genes, ORF IV, was used to generate transgenic resistance based on RNA-interference in the easily transformed rice variety Pusa Basmati-1, and the transgene was subsequently introgressed to rice variety ASD 16, a variety popular in southern India, using transgene marker-assisted selection. Here, we report the evaluation of BC3F4 and BC3F5 generation rice plants for resistance to RTBV as well as for agronomic traits under glasshouse conditions. The BC3F4 and BC3F5 generation rice plants tested showed variable levels of resistance, which was manifested by an average of twofold amelioration in height reduction, 1.5-fold decrease in the reduction in chlorophyll content, and 100- to 10,000-fold reduction in the titers of RTBV, but no reduction of RTSV titers, in three backcrossed lines when compared with the ASD 16 parent. Agronomic traits of some of the backcrossed lines recorded substantial improvements when compared with the ASD 16 parental line after inoculation by RTBV and RTSV. This work represents an important step in transferring RTD resistance to a susceptible popular rice variety, hence enhancing its yield in areas threatened by the disease.
机译:南部和东南亚水稻产量的严重损失是由稻田植物(RTBV)和稻田球形病毒(RTSV)混合感染诱导的水稻屯族病(RTD)引起的。为了产生抗RTBV的基于转基因的抗性,其基因ORF IV是基于易于转化的水稻品种PUSA Basmati-1的RNA干扰产生转基因电阻,并且转基因随后对米品种血糖ASD 16,在印度南部的各种流行,采用了转介标记辅助选择。在这里,我们报告了BC3F4和BC3F5代稻植物的评价,用于抵抗RTBV,以及玻璃条件下的农艺性状。测试的BC3F4和BC3F5生成水稻植物显示出可变的抗性水平,其表现为高度减少的平均水平,叶绿素含量的降低1.5倍,降低100至10,000倍以下的滴度与ASD 16父母相比,RTBV,但在三条回复线中没有减少RTSV滴度。与RTBV和RTSV接种后,与ASD 16父母线相比,一些回复线的农艺性状记录了大量改进。这项工作代表了转移RTD耐受敏感流域品种的重要一步,因此提高了疾病威胁的地区的产量。

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