Department of Biosciences and Bioengineering, Indian Institute of Technology Roorkee, Roorkee, Uttarakhand, India.
Central Institute of Temperate Horticulture (ICAR-CITH), Srinagar, J&K, India.
Physiol Plant. 2024 May-Jun;176(3):e14377. doi: 10.1111/ppl.14377.
One of the most devastating diseases of apples is scab, caused by the fungus Venturia inaequalis. Most commercial apple varieties are susceptible to this disease; only a few are resistant. Breeding approaches are being used to develop better apple varieties that are resistant to scab. Volatile organic compounds (VOCs) contribute greatly to a plant's phenotype, and their emission profile largely depends on the genotype. In the non-destructive phenotyping of plants, VOCs can be used as biomarkers. In this study, we assessed non-destructively the scab tolerance potential of resistant (cv. 'Prima') and susceptible (cv. 'Oregon Spur') apple cultivars by comparing their major leaf VOC compositions and relative proportions. A comparison of the leaf VOC profiles of the two cultivars revealed 16 different VOCs, with cis-3-hexenyl acetate (3HA) emerging as a biomarker of cultivar differences. V. inaequalis growth was significantly inhibited in vitro by 3HA treatment. 3HA was significantly effective in reducing scab symptoms on V. inaequalis-inoculated leaves of 'Oregon Spur.' The resistant cultivar 'Prima' also exhibited higher lipoxygenase (LOX) activity and α-linolenic acid (ALA) levels, suggesting that V. inaequalis resistance is linked to LOX activity and 3HA biosynthesis. This study proposes 3HA as a potential biomarker for rapid non-destructive screening of scab-resistant apple germplasm of 'Prima' based on leaf VOCs.
苹果最具破坏性的疾病之一是黑星病,由真菌 Venturia inaequalis 引起。大多数商业苹果品种对此病易感;只有少数品种具有抗性。目前正在采用育种方法来开发对黑星病具有抗性的更好的苹果品种。挥发性有机化合物(VOCs)对植物表型有很大贡献,其排放特征在很大程度上取决于基因型。在植物的非破坏性表型分析中,VOCs 可以用作生物标志物。在这项研究中,我们通过比较抗性(品种“Prima”)和易感(品种“Oregon Spur”)苹果品种的主要叶片 VOC 组成和相对比例,非破坏性地评估了它们对黑星病的耐受性潜力。对两个品种叶片 VOC 图谱的比较揭示了 16 种不同的 VOC,其中顺式-3-己烯基乙酸酯(3HA)是品种差异的生物标志物。3HA 在体外显著抑制了 V. inaequalis 的生长。3HA 对“Oregon Spur”叶片上接种 V. inaequalis 的黑星病症状有显著的抑制作用。抗性品种“Prima”还表现出较高的脂氧合酶(LOX)活性和α-亚麻酸(ALA)水平,表明 V. inaequalis 抗性与 LOX 活性和 3HA 生物合成有关。本研究提出 3HA 作为一种基于叶片 VOC 的快速非破坏性筛选“Prima”抗黑星病苹果种质资源的潜在生物标志物。