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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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Journal ArticleDOI

Transcriptome profiling of resistance response to Meloidogyne chitwoodi introgressed from wild species Solanum bulbocastanum into cultivated potato

TL;DR: The present study provides the first ever comprehensive insights into transcriptional changes among M. chitwoodi resistant and susceptible potato genotypes after nematode inoculation and has implications in breeding for CRKN resistance in potato.
Journal ArticleDOI

The suppression of tomato defence response genes upon potato cyst nematode infection indicates a key regulatory role of miRNAs

TL;DR: The rescreening of already published, upregulated transcript-derived fragment dataset using the most current tomato transcriptome sequences and in silico analyses of potential miRNA targeting to the full repertoire of tomato R-genes show that miRNA mediated gene suppression may be a key regulatory mechanism during nematode parasitism.
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Pathogen-induced conditioning of the primary xylem vessels - a prerequisite for the formation of bacterial emboli by Pectobacterium atrosepticum.

TL;DR: Novel aspects of plant-Pectobacterium atrosepticum interactions are elucidated and bacterial emboli represent the products of host-pathogen integration, since the formation of these structures requires the action of both partners.
Journal ArticleDOI

Abscisic Acid as a Dominant Signal in Tomato During Salt Stress Predisposition to Phytophthora Root and Crown Rot.

TL;DR: The tomato–Phytophthora capsici interaction was used to examine zoospore chemoattraction and expression of pathogenesis-related genes regulated by salicylic acid (SA) and jasmonic acid (JA) following a salt-stress episode suggested that ABA action during predisposing stress enhances disease through effects on plant responses occurring after initial contact and during ingress by the pathogen.
Journal ArticleDOI

Hormonal Requirements Trigger Different Organogenic Pathways on Tomato Nodal Explants

TL;DR: The results indicated that nodal segments, as described in this protocol, can be used as alternative to other types of explants such as cotyledon, hypocotyl and leaf explants.
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Journal ArticleDOI

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