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Candidate Resistant Genes of Sand Pear (Pyrus pyrifolia Nakai) to Alternaria alternata Revealed by Transcriptome Sequencing

机译:转录组测序揭示沙梨(Pyrus pyrifolia Nakai)对交链孢菌的候选抗性基因

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摘要

Pear black spot (PBS) disease, which is caused by Alternaria alternata (Aa), is one of the most serious diseases affecting sand pear (Pyrus pyrifolia Nakai) cultivation worldwide. To investigate the defense mechanisms of sand pear in response to Aa, the transcriptome of a sand pear germplasm with differential resistance to Aa was analyzed using Illumina paired-end sequencing. Four libraries derived from PBS-resistant and PBS-susceptible sand pear leaves were characterized through inoculation or mock-inoculation. In total, 20.5 Gbp of sequence data and 101,632,565 reads were generated, representing 44717 genes. Approximately 66% of the genes or sequenced reads could be aligned to the pear reference genome. A large number (5213) of differentially expressed genes related to PBS resistance were obtained; 34 microsatellites were detected in these genes, and 28 genes were found to be closely related to PBS resistance. Using a transcriptome analysis in response to PBS inoculation and comparison analysis to the PHI database, 4 genes (Pbr039001, Pbr001627, Pbr025080 and Pbr023112) were considered to be promising candidates for sand pear resistance to PBS. This study provides insight into changes in the transcriptome of sand pear in response to PBS infection, and the findings have improved our understanding of the resistance mechanism of sand pear to PBS and will facilitate future gene discovery and functional genome studies of sand pear.
机译:梨黑斑病(PBS)是由Alternaria alternata(Aa)引起的,是影响全世界沙梨(Pyrus pyrifolia Nakai)种植的最严重疾病之一。为了研究沙梨对Aa的防御机制,使用Illumina双末端测序技术分析了对Aa具有不同抗性的沙梨种质的转录组。通过接种或模拟接种对来自PBS抗性和PBS敏感沙梨叶的四个文库进行了表征。总共产生了20.5 Gbp的序列数据和101,632,565个读数,代表了44717个基因。大约66%的基因或测序读数可与梨参考基因组比对。获得了大量(5213)与PBS抗性相关的差异表达基因;在这些基因中检测到34个微卫星,并且发现28个基因与PBS抗性密切相关。使用响应PBS接种的转录组分析和对PHI数据库的比较分析,认为4个基因(Pbr039001,Pbr001627,Pbr025080和Pbr023112)有望成为耐沙梨抗PBS的候选基因。这项研究提供了对响应PBS感染的沙梨转录组变化的见解,这些发现提高了我们对沙梨对PBS的抗性机制的了解,并将有助于将来对沙梨进行基因发现和功能基因组研究。

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