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Resistant and susceptible responses in tomato to cyst nematode are differentially regulated by salicylic acid.

TLDR
It is found that PR-1(P4) was a hallmark for the cultivar resistance conferred by Hero A against PCN and that nematode parasitism resulted in the inhibition of the SA signaling pathway in the susceptible cultivars.
Abstract
To understand the machinery underlying a tomato cultivar harboring the Hero A gene against cyst nematode using microarrays, we fi rst analyzed tomato gene expression in response to potato cyst nematode (PCN; Globodera rostochiensis ) during the early incompatible and compatible interactions at 3 and 7 days post-inoculation (dpi). Transcript levels of the phenylalanine ammonia lyase ( PAL ) and Myb related genes were up-regulated at 3 dpi in the incompatible interaction. Transcription of the genes encoding pyruvate decarboxylase ( PDC ) and alcohol dehydrogenase ( ADH ) was also up-regulated at 3 dpi in the incompatible interaction. On the other hand, the four genes ( PAL , Myb , PDC and ADH ) were down-regulated in the compatible interaction at 3 dpi. When the expression levels of several pathogenesis-related (PR) protein genes in tomato roots were compared between the incompatible and compatible interactions, the salicylic acid (SA)-dependent PR genes were found to be induced in the incompatible interaction at 3 dpi. The PR-1 ( P4 ) transcript increased to an exceptionally high level at 3 dpi in the cyst nematode-infected resistant plants compared with the uninoculated controls. The free SA levels were elevated to similar levels in both incompatible and compatible interactions. We then confi rmed that PR-1 ( P4 ) was not signifi cantly induced in the NahG tomato harboring the Hero A gene, compared with the resistant cultivar. We thus found that PR-1 ( P4 ) was a hallmark for the cultivar resistance conferred by Hero A against PCN and that nematode parasitism resulted in the inhibition of the SA signaling pathway in the susceptible cultivars.

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Biological and chemical dependent systemic resistance and their significance for the control of root-knot nematodes

TL;DR: The ability of Trichoderma harzianum isolate T10 and insecticidal active neem powder (NP) to induce systemic resistance in tomato against the root-knot nematode Meloidogyne javanica was compared with salicylic acid (SA) and jasmonic acid (JA) as standard elicitors for SAR and ISR.
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Ionic Liquids with Natural Origin Component: A Path to New Plant Protection Products

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Phytohormone signaling pathway analysis method for comparing hormone responses in plant-pest interactions

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Transcriptome Analysis of Cotton (Gossypium hirsutum L.) Genotypes That Are Susceptible, Resistant, and Hypersensitive to Reniform Nematode (Rotylenchulus reniformis)

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A Plant-Feeding Nematode Indirectly Increases the Fitness of an Aphid.

TL;DR: The data suggests a positive, asymmetric interaction between a sedentary endoparasitic nematode and a sap-sucking insect, and additional secondary benefits of controlling individual crop pests are revealed.
References
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