Characterization of multiple disease resistance in melons (Cucumis melo L.) against Meloidogyne incognita, Fusarium oxysporum and tomato leaf curl Palampur virus

Dalvir Singh Dhami, Sukhjeet Kaur, Abhishek Sharma, Sat Pal Sharma, Narpinderjeet Kaur Dhillon, Sandeep Jain
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Abstract

Melon is one of the important cucurbitaceous crops being cultivated widely in India and known for its delicious fruits. Crop is threatened by different biotic stresses including nematodes, fungi and viruses. The use of host resistance is the most economical, eco-compatible and long-lasting strategy to combat plant diseases. Keeping in mind this objective, 64 melon genotypes were screened against the prevalent Meloidogyne incognita, Fusarium oxysporum and tomato leaf curl Palampur virus (ToLCPalV) individually as well as with combined inoculations under artificial conditions. Out of 64 genotypes, three genotypes, MCPS, SM2012-1 and WM11 were found moderately resistant to M. incognita, nine genotypes (MM-KP15103, MM327, MM121103, KP4HM15, MM Sel.-103, SM2013-2, SM2012-1, SM2013-9 and WM11) recorded a resistant reaction against Fusarium wilt while four genotypes, WM11, SM2012-1, SM2013-9 and SM2013-2 exhibited a highly resistant reaction against ToLCPalV. A dendrogram constructed based on the resistance response of all the genotypes divided the genotypes into two groups and all resistant genotypes (MM1804, MM120103, SM2012-1, MM121103, SM2013-2, SM2013-9, WM11 and MM Sel.103) clustered in group II. The resistant genotypes when subjected to simultaneous inoculations of all three pathogens showed an increase in disease severity for each pathogen which negatively altered the resistance response of different genotypes. However, the genotypes SM2012-1, SM2013-9, SM2013-2 and WM-11 showing multiple disease resistance exhibited a good level of resistance even after combined inoculations of three pathogens. This study is the first to our knowledge identifying multiple disease resistance against root-knot nematode, Fusarium wilt and tomato leaf curl Palampur virus in muskmelon.

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甜瓜(Cucumis melo L.)对Meloidogyne incognita、Fusarium oxysporum和番茄卷叶Palampur病毒的多重抗病性特征分析
甜瓜是印度广泛种植的重要葫芦科作物之一,以其美味的果实而闻名。作物受到线虫、真菌和病毒等不同生物胁迫的威胁。利用寄主抗性是防治植物病害的最经济、生态兼容和持久的策略。为了实现这一目标,在人工条件下,对 64 个甜瓜基因型进行了筛选,以了解其对流行的 Meloidogyne incognita、Fusarium oxysporum 和番茄卷叶巴兰普尔病毒(ToLCPalV)的抗性。在 64 个基因型中,发现 MCPS、SM2012-1 和 WM11 这 3 个基因型对 M. incognita 具有中度抗性,MM-KP15103、MM327、MM121103、KP4HM15、MM Sel.-103、SM2013-2、SM2012-1、SM2013-9 和 WM11 这 9 个基因型对镰刀菌枯萎病具有抗性,而 WM11、SM2012-1、SM2013-9 和 SM2013-2 这 4 个基因型对 ToLCPalV 具有高度抗性。根据所有基因型的抗性反应构建的树枝图将基因型分为两组,所有抗性基因型(MM1804、MM120103、SM2012-1、MM121103、SM2013-2、SM2013-9、WM11 和 MM Sel.103)都聚在第二组。抗性基因型在同时接种三种病原体后,每种病原体的病害严重程度都会增加,这对不同基因型的抗性响应产生了负面影响。然而,表现出多重抗病性的基因型 SM2012-1、SM2013-9、SM2013-2 和 WM-11 即使在同时接种三种病原体后仍表现出良好的抗病性。据我们所知,这项研究首次发现了麝香瓜对根结线虫、镰刀菌枯萎病和番茄卷叶帕拉普尔病毒的多重抗病性。
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