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改良 Tapaswini 具有四个 BB 抗性基因,与六个基因/QTL 聚合,具有抗生物和非生物胁迫的能力。

Improved Tapaswini having four BB resistance genes pyramided with six genes/QTLs, resistance/tolerance to biotic and abiotic stresses in rice.

机构信息

Crop Improvement Division, ICAR-National Rice Research Institute, Cuttack, Odisha, 753006, India.

Research Institute of Biotechnology & Medical Converged Science, Dongguk University-Seoul, Ilsandong-gu, Gyeonggi-do, 10326, Republic of Korea.

出版信息

Sci Rep. 2018 Feb 5;8(1):2413. doi: 10.1038/s41598-018-20495-x.

Abstract

Rice, a major food crop, is grown in a wide range of ecological conditions and suffers significant yield losses as it is constantly exposed to a wide range of environmental and biotic stresses. The prevalence of different biotypes/strains has necessitated assembling of numerous resistance genes/QTLs into elite genotypes to confer a broader scale of resistance. The current study reports successful pyramiding of genes/QTLs that confer tolerance/resistance to submergence (Sub1), salinity (Saltol), blast (Pi2, Pi9) and gall midge (Gm1, Gm4) to supplement the four bacterial blight resistance genes (Xa 4, xa5, xa13, Xa21) present in Improved Tapaswini, an elite cultivar. The precise transfer of genes/QTLs was accomplished through effective foreground selection and suitable gene pyramids were identified. Background selection was practiced using morphological and grain quality traits to enhance the recovery of the recurrent parental genome. In the bioassays, the pyramids exhibited higher levels of resistance/ tolerance against the target stresses. The novel feature of the study was successful pyramidization and demonstration of the function of ten genes/QTLs in a new genotype. This success can stimulate several such studies to realize the full potential of molecular plant breeding as the foundation for rice improvement.

摘要

水稻是一种主要的粮食作物,生长在广泛的生态条件下,由于不断受到各种环境和生物胁迫的影响,其产量损失很大。不同生物型/菌株的流行使得有必要将大量的抗性基因/QTL 组装到优良基因型中,以赋予更广泛的抗性。本研究成功地将赋予耐/抗淹(Sub1)、盐(Saltol)、稻瘟病(Pi2、Pi9)和瘿蚊(Gm1、Gm4)的基因/QTL 进行了基因聚合,以补充在优良品种改良 Tapaswini 中存在的四个细菌性条斑病抗性基因(Xa4、xa5、xa13、Xa21)。通过有效的前景选择和合适的基因聚合,精确地转移了基因/QTL。通过形态和籽粒品质性状进行背景选择,以提高轮回亲本基因组的恢复。在生物测定中,这些聚合体表现出更高水平的目标胁迫抗性/耐受性。该研究的新颖之处在于成功地进行了基因聚合,并证明了十个基因/QTL 在新基因型中的功能。这一成功可以激发更多这样的研究,以实现分子植物育种的全部潜力,作为水稻改良的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a42/5799378/e786687afaf6/41598_2018_20495_Fig1_HTML.jpg

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