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Comparative proteomic analysis provides insight into the key proteins involved in novel stem-physical-strength-mediated resistance (SPSMR) mechanism against Sclerotinia sclerotiorum in Brassicaceae

2024-10-01

Abstract excerpt

Sclerotinia sclerotiorum stands out as the most destructive pathogen affecting oilseed Brassica crops. Our study unveils the proteomic basis of a novel resistance mechanism, termed "Stem-Physical-Strength-Mediated-Resistance (SPSMR)," against S. sclerotiorum in Brassicaceae through a comparative proteomic analysis. Field assessments highlight significant differences in stem-physical strength attributes between the...

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Literature Corpus work
f50cda4c-a105-50af-b292-3f4458aa3de6
DOI
10.1007/s10658-024-02903-3
Open publication

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Comparative proteomic analysis provides insight into the key proteins involved in novel stem-physical-strength-mediated resistance (SPSMR) mechanism against Sclerotinia sclerotiorum in BrassicaceaeDOI 10.1007/s10658-024-02903-3
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