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Comparative de novo transcriptome profiles in Asparagus officinalis and A. kiusianus during the early stage of Phomopsis asparagi infection

机译:芦笋光化菌感染初期芦笋和桔梗中从头转录组的比较特征

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摘要

Asparagus kiusianus, an important wild relative of cultivated asparagus (A. officinalis), exhibits resistance to stem blight disease caused by Phomopsis asparagi. However, the mechanisms underlying this resistance are not understood and no transcriptomic or genetic resources are available for this species. De novo transcriptome sequencing of A. officinalis and A. kiusianus stems was performed 24 h after inoculation with P. asparagi. In total, 35,259 and 36,321 transcripts were annotated in A. officinalis and A. kiusianus, respectively. 1,027 up-regulated and 752 down-regulated transcripts were differentially expressed in the two Asparagus species. RNA sequencing data were validated using quantitative real-time reverse transcription PCR. Several defense-related genes including peroxidase 4, cationic peroxidase SPC4-like, pathogenesis-related protein-1-like, and jasmonic acid biosynthesis and signaling-related genes including phospholipase D alpha 1, 12-oxophytodienoate reductase and jasmonate-induced protein 23 KD were up-regulated in A. kiusianus relative to A. officinalis. In addition, infected A. kiusianuns exhibited a substantial increase in jasmonic acid and methyl jasmonate relative to A. officinalis. Peroxidase activity was significantly elevated in infected A. kiusianus compared with infected A. officinalis. Our transcriptomic database provides a resource for identifying novel genes and molecular markers-associated with Phomopsis disease resistance and will facilitate breeding and improvement of cultivated asparagus varieties.
机译:kiusianus芦笋是栽培芦笋的重要野生近缘种(A. officinalis),表现出对由枯萎病菌引起的枯萎病的抵抗力。但是,尚不清楚这种抗性的潜在机制,并且该物种没有转录组或遗传资源。接种天门冬孢菌后24小时,对A. officinalis和A. kiusianus茎进行从头转录组测序。总共在A. officinalis和A. kiusianus中分别标注了35,259和36,321个转录本。在两种芦笋物种中差异表达了1,027个上调转录物和752个下调了转录物。使用定量实时逆转录PCR验证RNA测序数据。几种与防御相关的基因,包括过氧化物酶4 阳离子过氧化物酶SPC4 -发病机理-相关蛋白- 1 - like ,茉莉酸的生物合成和信号相关基因包括磷脂酶D alpha 1 12 < / em>-草二酮二酸酯还原酶茉莉酸-诱导的蛋白质23 KD A 中上调。 kiusianus 相对于 A officinalis 。此外,感染了 A 。相对于 A kiusianuns 的茉莉酸和茉莉酸甲酯含量显着增加。 officinalis 。被感染的 A 中的过氧化物酶活性显着升高。 kiusianus 与受感染的 A 相比。 officinalis 。我们的转录组数据库提供了一种资源,可用于鉴定与ho> Phophpsis 抗病性相关的新基因和分子标记,并将有助于培育和改良栽培的芦笋品种。

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