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利用标记辅助回交育种技术提高巴斯马蒂水稻的生物胁迫抗性的遗传改良。

Genetic Enhancement for Biotic Stress Resistance in Basmati Rice through Marker-Assisted Backcross Breeding.

机构信息

Division of Genetics, ICAR-Indian Agricultural Research Institute, New Delhi 110012, India.

Division of Plant Pathology, ICAR-Indian Agricultural Research Institute, New Delhi 110012, India.

出版信息

Int J Mol Sci. 2023 Nov 8;24(22):16081. doi: 10.3390/ijms242216081.

Abstract

Pusa Basmati 1509 (PB1509) is one of the major foreign-exchange-earning varieties of Basmati rice; it is semi-dwarf and early maturing with exceptional cooking quality and strong aroma. However, it is highly susceptible to various biotic stresses including bacterial blight and blast. Therefore, bacterial blight resistance genes, namely, + and , and fungal blast resistance genes + and were incorporated into the genetic background of recurrent parent (RP) PB1509 using donor parents, namely, Pusa Basmati 1718 (PB1718), Pusa 1927 (P1927), Pusa 1929 (P1929) and Tetep, respectively. Foreground selection was carried out with respective gene-linked markers, stringent phenotypic selection for recurrent parent phenotype, early generation background selection with Simple sequence repeat (SSR) markers, and background analysis at advanced generations with Rice Pan Genome Array comprising 80K SNPs. This has led to the development of Near isogenic lines (NILs), namely, Pusa 3037, Pusa 3054, Pusa 3060 and Pusa 3066 carrying genes + , , + and with genomic similarity of 98.25%, 98.92%, 97.38% and 97.69%, respectively, as compared to the RP. Based on GGE-biplot analysis, Pusa 3037-1-44-3-164-20-249-2 carrying , Pusa 3054-2-47-7-166-24-261-3 carrying , Pusa 3060-3-55-17-157-4-124-1 carrying , and Pusa 3066-4-56-20-159-8-174-1 carrying were identified to be relatively stable and better-performing individuals in the tested environments. Intercrossing between the best BCFs has led to the generation of Pusa 3122 ( + + ), Pusa 3124 ( + + ) and Pusa 3123 ( + + ) with agronomy, grain and cooking quality parameters at par with PB1509. Cultivation of such improved varieties will help farmers reduce the cost of cultivation with decreased pesticide use and improve productivity with ensured safety to consumers.

摘要

Pusa Basmati 1509(PB1509)是长粒巴斯马蒂大米的主要创汇品种之一;它是半矮秆、早熟品种,具有出色的烹饪品质和浓郁的香气。然而,它极易受到各种生物胁迫的影响,包括细菌性枯萎病和稻瘟病。因此,使用供体亲本 Pusa Basmati 1718(PB1718)、Pusa 1927(P1927)、Pusa 1929(P1929)和 Tetep 将细菌性枯萎病抗性基因 + 和 以及真菌稻瘟病抗性基因 + 和 导入轮回亲本(RP)PB1509 的遗传背景中。通过各自的基因连锁标记进行前景选择,对轮回亲本表型进行严格的表型选择,利用简单重复序列(SSR)标记对早期世代进行背景选择,利用包含 80K SNPs 的水稻全基因组芯片对高级世代进行背景分析。这导致了近等基因系(NILs)的发展,即携带基因 + 、 、 + 和 的 Pusa 3037、Pusa 3054、Pusa 3060 和 Pusa 3066,与 RP 相比,基因组相似度分别为 98.25%、98.92%、97.38%和 97.69%。基于 GGE 双标图分析,携带 的 Pusa 3037-1-44-3-164-20-249-2、携带 的 Pusa 3054-2-47-7-166-24-261-3、携带 的 Pusa 3060-3-55-17-157-4-124-1 和携带 的 Pusa 3066-4-56-20-159-8-174-1 被鉴定为在测试环境中相对稳定且表现较好的个体。最佳 BCFs 的杂交导致了 Pusa 3122( + + )、Pusa 3124( + + )和 Pusa 3123( + + )的产生,其农艺性状、籽粒和烹饪品质参数与 PB1509 相当。种植这些改良品种将有助于农民降低种植成本,减少农药使用,提高生产力,并确保消费者的安全。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a134/10671030/fb3a542460ca/ijms-24-16081-g001.jpg

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