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利用标记辅助导入抗性基因和表型评价,在优良水稻品种 CO 51 中鉴定出持久和广谱的稻瘟病抗性。

Marker Assisted Introgression of Resistance Genes and Phenotypic Evaluation Enabled Identification of Durable and Broad-Spectrum Blast Resistance in Elite Rice Cultivar, CO 51.

机构信息

Department of Plant Biotechnology, Centre for Plant Molecular Biology and Biotechnology, Tamil Nadu Agricultural University, Coimbatore 641003, India.

Department of Rice, Centre for Plant Breeding and Genetics, Tamil Nadu Agricultural University, Coimbatore 641003, India.

出版信息

Genes (Basel). 2023 Mar 15;14(3):719. doi: 10.3390/genes14030719.

Abstract

Across the globe, rice cultivation is seriously affected by blast disease, caused by . This disease has caused heavy yield loss to farmers over the past few years. In this background, the most affordable and eco-friendly strategy is to introgress blast-resistant genes from donors into elite rice cultivars. However, it is not only challenging to evolve such resistance lines using conventional breeding approaches, but also a time-consuming process. Therefore, the marker-assisted introduction of resistance genes has been proposed as a rapid strategy to develop durable and broad-spectrum resistance in rice cultivars. The current study highlights the successful introgression of a blast resistance gene, i.e., , into CO 51, an elite rice cultivar which already has another resistance gene named . The presence of two blast resistance genes in the advanced backcross breeding materials (BCF) was confirmed in this study through a foreground selection method using functional markers such as NBS4 and Pi54MAS. The selected positive introgressed lines were further genotyped for background selection with 55 SSR markers that are specific to CO 51. Consequently, both as well as pyramided lines, with 82.7% to 88.1% of the recurrent parent genome recovery, were identified and the selected lines were evaluated under hotspot. The analysis outcomes found that both the lines possessed a high level of resistance against blast disease during the seedling stage itself. In addition to this, it was also noticed that the advanced breeding rice lines that carry + were effective in nature and exhibited a higher degree of resistance against blast disease compared to the lines that were introgressed with a single blast resistance gene. Thus, the current study demonstrates a rapid and a successful introgression and pyramiding of two blast resistance genes, with the help of markers, into a susceptible yet high-yielding elite rice cultivar within a short period of time. Those gene pyramided rice lines can be employed as donors to introgress the blast-resistant genes in other popular susceptible cultivars.

摘要

在全球范围内,水稻种植受到稻瘟病的严重影响,这种疾病在过去几年给农民造成了严重的产量损失。在这种背景下,最经济实惠和环保的策略是将来自供体的抗稻瘟病基因导入到优良水稻品种中。然而,利用常规的育种方法不仅难以进化出这种抗性品系,而且是一个耗时的过程。因此,提出了利用标记辅助导入抗性基因的快速策略,以在水稻品种中开发持久和广谱的抗性。本研究成功地将一个稻瘟病抗性基因 导入到 CO 51 中,CO 51 是一个优良的水稻品种,已经有另一个名为 的抗性基因。本研究通过使用功能标记(如 NBS4 和 Pi54MAS)进行前景选择的方法,证实了在高级回交育种材料(BCF)中存在两个稻瘟病抗性基因。选择的阳性导入系进一步用 55 个特异性 CO 51 的 SSR 标记进行背景选择进行基因分型。结果,鉴定出了具有 82.7%至 88.1%的轮回亲本基因组回收率的 和 以及 增效系,同时还在热点条件下对这些选择系进行了评估。分析结果发现,这两个系在苗期本身就具有高水平的稻瘟病抗性。此外,还发现携带 + 的先进育成水稻系在自然条件下是有效的,并且表现出比导入单个稻瘟病抗性基因的系更高程度的抗性。因此,本研究展示了借助标记在短时间内将两个稻瘟病抗性基因快速成功地导入到一个易感但高产的优良水稻品种中,并进行了基因增效。这些基因增效的水稻系可以作为供体,将抗稻瘟病基因导入到其他受欢迎的易感品种中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e55/10048046/55e398817c49/genes-14-00719-g001.jpg

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