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在苗期和生殖期对地方水稻品种 Horkuch 的耐盐性 QTL 进行鉴定。

Salt tolerance QTLs of an endemic rice landrace, Horkuch at seedling and reproductive stages.

机构信息

Plant Biotechnology Lab, Department of Biochemistry and Molecular Biology, University of Dhaka, Dhaka, 1000, Bangladesh.

Department of Integrative Biology, University of Texas, Austin, TX, 78712, USA.

出版信息

Sci Rep. 2022 Oct 15;12(1):17306. doi: 10.1038/s41598-022-21737-9.

Abstract

Salinity has a significant negative impact on production of rice. To cope with the increased soil salinity due to climate change, we need to develop salt tolerant rice varieties that can maintain their high yield. Rice landraces indigenous to coastal Bangladesh can be a great resource to study the genetic basis of salt adaptation. In this study, we implemented a QTL analysis framework with a reciprocal mapping population developed from a salt tolerant landrace Horkuch and a high yielding rice variety IR29. Our aim was to detect genetic loci that contributes to the salt adaptive responses of the two different developmental stages of rice which are very sensitive to salinity stress. We identified 14 QTLs for 9 traits and found that most are unique to specific developmental stages. In addition, we detected a significant effect of the cytoplasmic genome on the QTL model for some traits such as leaf total potassium and filled grain weight. This underscores the importance of considering cytoplasm-nuclear interaction for breeding programs. Finally, we identified QTLs co-localization for multiple traits that highlights the possible constraint of multiple QTL selection for breeding programs due to different contributions of a donor allele for different traits.

摘要

盐度对水稻产量有显著的负面影响。为了应对气候变化导致的土壤盐分增加,我们需要开发耐盐水稻品种,以保持其高产量。孟加拉国沿海地区的本地水稻品种是研究盐适应遗传基础的重要资源。在这项研究中,我们使用来自耐盐品种 Horkuch 和高产水稻品种 IR29 的互反作图群体实施了 QTL 分析框架。我们的目的是检测与水稻两个不同发育阶段的盐适应反应相关的遗传位点,这两个阶段对盐胁迫非常敏感。我们鉴定了 14 个 QTL 用于 9 个性状,并发现大多数 QTL 是特定于特定发育阶段的。此外,我们还检测到细胞质基因组对某些性状(如叶片总钾和充实粒重)的 QTL 模型有显著影响。这突显出在育种计划中考虑细胞质-核相互作用的重要性。最后,我们鉴定了多个性状的 QTL 共定位,这突出了由于供体等位基因对不同性状的不同贡献,多个 QTL 选择对育种计划可能存在的限制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fdd/9569374/513d57f5bf76/41598_2022_21737_Fig1_HTML.jpg

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