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批量分离转录组分析在豌豆中鉴定出抗佩氏假单胞菌的关键表达标记物。

Bulked segregant transcriptome analysis in pea identifies key expression markers for resistance to Peyronellaea pinodes.

机构信息

Institute for Sustainable Agriculture, CSIC, 14004, Córdoba, Spain.

GenXPro GmbH, 60438, Frankfurt Am Main, Germany.

出版信息

Sci Rep. 2022 Oct 28;12(1):18159. doi: 10.1038/s41598-022-22621-2.

Abstract

Peyronellaea pinodes is a devastating pathogen of pea crop. Quantitative trait loci (QTL) associated with resistance have been identified, as well as genes differentially expressed between resistant and susceptible pea lines. The key question is which of these many genes located into these QTLs, or differentially expressed, are the key genes that distinguish resistant from susceptible plants and could be used as markers. To identify these key genes, in the present study we applied MACE (Massive Analysis of cDNA Ends) -Seq to a whole Recombinant Inbred Line population segregating for resistance to this disease and their parental lines and identified those genes which expression was more correlated with the level of resistance. We also compared gene expression profiles between the most resistant and the most susceptible families of the RIL population. A total of 6780 transcripts were differentially expressed between the parental lines after inoculation. Of them, 803 showed the same expression pattern in the bulks formed by the most resistant and most susceptible RIL families. These genes, showing a consistent expression pattern, could be used as expression markers to distinguish resistant from susceptible plants. The analysis of these genes also discovered the crucial mechanisms acting against P. pinodes.

摘要

豌豆多胞锈菌是豌豆作物的一种毁灭性病原体。已经鉴定出与抗性相关的数量性状基因座(QTL),以及在抗性和易感豌豆品系之间差异表达的基因。关键问题是这些位于 QTL 中的许多基因或差异表达的基因中,哪些是区分抗性和易感植物的关键基因,可以用作标记。为了鉴定这些关键基因,本研究应用大规模 cDNA 末端分析(MACE)-Seq 对一个分离出对这种疾病抗性的重组自交系群体及其亲本系进行了分析,并确定了那些与抗性水平相关性更高的基因。我们还比较了 RIL 群体中最抗性和最敏感家系之间的基因表达谱。接种后,亲本系之间共有 6780 个转录本差异表达。其中,803 个在由最抗性和最敏感 RIL 家系组成的群体中表现出相同的表达模式。这些表现出一致表达模式的基因可以用作表达标记来区分抗性和易感植物。对这些基因的分析还发现了对抗豌豆多胞锈菌的关键机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f2f/9616913/6f5a2394005e/41598_2022_22621_Fig1_HTML.jpg

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