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Validation of molecular markers associated with boron tolerance powdery mildew resistance and salinity tolerance in field peas

机译:验证豌豆对硼的耐受性耐白粉病和耐盐性的分子标记

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摘要

Field pea (Pisum sativum L.) is an important grain legume consumed both as human food and animal feed. However, productivity in low rainfall regions can be significantly reduced by inferior soils containing high levels of boron and/or salinity. Furthermore, powdery mildew (PM) (Erysiphe pisi) disease also causes significant yield loss in warmer regions. Breeding for tolerance to these abiotic and biotic stresses are major aims for pea breeding programs and the application of molecular markers for these traits could greatly assist in developing improved germplasm at a faster rate. The current study reports the evaluation of a near diagnostic marker, PsMlo, associated with PM resistance and boron (B) tolerance as well as linked markers associated with salinity tolerance across a diverse set of pea germplasm. The PsMlo1 marker predicted the PM and B phenotypic responses with high levels of accuracy (>80%) across a wide range of field pea genotypes, hence offers the potential to be widely adapted in pea breeding programs. In contrast, linked markers for salinity tolerance were population specific; therefore, application of these markers would be suitable to relevant crosses within the program. Our results also suggest that there are possible new sources of salt tolerance present in field pea germplasm that could be further exploited.
机译:豌豆(Pisum sativum L.)是一种重要的谷物豆类,既作为人类食品又作为动物饲料消费。然而,低降雨地区的硼和/或盐分含量较高的劣质土壤会大大降低生产力。此外,白粉病(Erysiphe pisi)病在较温暖的地区也引起明显的单产下降。对这些非生物和生物胁迫的耐受性育种是豌豆育种计划的主要目标,而针对这些性状的分子标记的应用可以极大地帮助以更快的速度发展改良的种质。本研究报告了对豌豆种质中与PM抗性和硼(B)耐性相关的近诊断标记PsMlo以及与盐分耐性相关的连锁标记的评估。 PsMlo1标记可在广泛的豌豆基因型范围内以较高的准确性(> 80%)预测PM和B表型反应,因此提供了广泛应用于豌豆育种计划的潜力。相反,耐盐性的相关标志物是特定于人群的。因此,这些标记的应用将适合程序中的相关杂交。我们的研究结果还表明,豌豆种质中可能存在新的耐盐性来源,可以进一步开发利用。

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