Matches in SemOpenAlex for { <https://semopenalex.org/work/W4311689595> ?p ?o ?g. }
- W4311689595 abstract "A major threat to forest ecosystems and plantation forestry is the introduction of a non-native pathogen. Among non-domesticated populations with relatively high levels of genetic diversity, a measurable range of susceptibility to resistance can be expected. Identifying genetic determinants of resistant and susceptible individuals can inform the development of new strategies to engineer disease resistance. Here we describe pathogen-induced changes in the proteome of Populus trichocarpa stem tissue in response to Sphaerulia musiva (Septoria canker). This hemibiotrophic fungal pathogen causes stem canker disease in susceptible poplar genotypes. Proteomics analyses were performed on stem tissue harvested across 0-, 12-, 24- and 48-h post-inoculation with Septoria from three genotypes including one resistant (BESC-22) and two susceptible [BESC-801; Nisqually-1 (NQ-1)]. In total, 11,897 Populus proteins at FDR <0.01 were identified across all time points and genotypes. Analysis of protein abundances between genotypes revealed that the resistant poplar genotype (BESC-22) mounts a rapid and sustained defense response involving pattern recognition receptors, calcium signaling proteins, SAR inducers, transcriptional regulators, resistance proteins, and proteins involved with the hypersensitive response. One susceptible genotype (BESC-801) had a downregulated and delayed defense response whereas the second susceptible genotype (NQ-1) lacked a distinct pattern. Overall, the proteome-wide and protein-specific trends suggest that responses to the Septoria canker infection are genotype-specific for the naïve host, Populus trichocarpa ." @default.
- W4311689595 created "2022-12-28" @default.
- W4311689595 creator A5030371611 @default.
- W4311689595 creator A5044622620 @default.
- W4311689595 creator A5052852254 @default.
- W4311689595 creator A5073256238 @default.
- W4311689595 creator A5074909040 @default.
- W4311689595 creator A5075032734 @default.
- W4311689595 creator A5087741198 @default.
- W4311689595 date "2022-12-21" @default.
- W4311689595 modified "2023-09-25" @default.
- W4311689595 title "Proteomics reveals pathways linked to septoria canker resistance and susceptibility in Populus trichocarpa" @default.
- W4311689595 cites W1037789279 @default.
- W4311689595 cites W126458572 @default.
- W4311689595 cites W1587936708 @default.
- W4311689595 cites W1588779850 @default.
- W4311689595 cites W1766136822 @default.
- W4311689595 cites W1859460716 @default.
- W4311689595 cites W1968601944 @default.
- W4311689595 cites W1971932983 @default.
- W4311689595 cites W1975502699 @default.
- W4311689595 cites W1980533529 @default.
- W4311689595 cites W1982272533 @default.
- W4311689595 cites W1985270286 @default.
- W4311689595 cites W1987302907 @default.
- W4311689595 cites W1992776114 @default.
- W4311689595 cites W1995238171 @default.
- W4311689595 cites W1999035938 @default.
- W4311689595 cites W2014367284 @default.
- W4311689595 cites W2015320583 @default.
- W4311689595 cites W2016311241 @default.
- W4311689595 cites W2023145111 @default.
- W4311689595 cites W2023355256 @default.
- W4311689595 cites W2026465178 @default.
- W4311689595 cites W2039812348 @default.
- W4311689595 cites W2041160226 @default.
- W4311689595 cites W2052906858 @default.
- W4311689595 cites W2053054274 @default.
- W4311689595 cites W2053943711 @default.
- W4311689595 cites W2056372653 @default.
- W4311689595 cites W2063888937 @default.
- W4311689595 cites W2067204276 @default.
- W4311689595 cites W2076280502 @default.
- W4311689595 cites W2098562143 @default.
- W4311689595 cites W2103165230 @default.
- W4311689595 cites W2103473048 @default.
- W4311689595 cites W2114766384 @default.
- W4311689595 cites W2125346198 @default.
- W4311689595 cites W2135386827 @default.
- W4311689595 cites W2135553517 @default.
- W4311689595 cites W2140413947 @default.
- W4311689595 cites W2145873406 @default.
- W4311689595 cites W2147830145 @default.
- W4311689595 cites W2149993527 @default.
- W4311689595 cites W2151588555 @default.
- W4311689595 cites W2153467518 @default.
- W4311689595 cites W2154934124 @default.
- W4311689595 cites W2162515800 @default.
- W4311689595 cites W2164487814 @default.
- W4311689595 cites W2169589032 @default.
- W4311689595 cites W2170900122 @default.
- W4311689595 cites W2300490063 @default.
- W4311689595 cites W2331265348 @default.
- W4311689595 cites W2409652788 @default.
- W4311689595 cites W2463195069 @default.
- W4311689595 cites W2479540212 @default.
- W4311689595 cites W2533952488 @default.
- W4311689595 cites W2550601547 @default.
- W4311689595 cites W2578892627 @default.
- W4311689595 cites W2715512513 @default.
- W4311689595 cites W2778922251 @default.
- W4311689595 cites W2792168849 @default.
- W4311689595 cites W2804555086 @default.
- W4311689595 cites W2887839259 @default.
- W4311689595 cites W2889465446 @default.
- W4311689595 cites W2897966195 @default.
- W4311689595 cites W2900003829 @default.
- W4311689595 cites W2911256426 @default.
- W4311689595 cites W2914793058 @default.
- W4311689595 cites W2941099066 @default.
- W4311689595 cites W2944503940 @default.
- W4311689595 cites W2959911937 @default.
- W4311689595 cites W2965898682 @default.
- W4311689595 cites W2972229290 @default.
- W4311689595 cites W2986748950 @default.
- W4311689595 cites W3030351719 @default.
- W4311689595 cites W3036346212 @default.
- W4311689595 cites W3091905339 @default.
- W4311689595 cites W3128061772 @default.
- W4311689595 cites W3150170840 @default.
- W4311689595 cites W3154307109 @default.
- W4311689595 cites W3159995035 @default.
- W4311689595 cites W3164016938 @default.
- W4311689595 cites W3178934807 @default.
- W4311689595 cites W3179233902 @default.
- W4311689595 doi "https://doi.org/10.3389/frans.2022.1020111" @default.
- W4311689595 hasPublicationYear "2022" @default.
- W4311689595 type Work @default.
- W4311689595 citedByCount "1" @default.
- W4311689595 countsByYear W43116895952023 @default.