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1 auses the diseases S. nodorum leaf and glume blotch.
2 with brown-black and yellow-green transverse blotches.
3 onding somatotopy of cytochrome oxidase (CO) blotches.
4 previously been shown for the patterns of CO blotches; (2) in contrast, however, distributions of CN
5 ddle CN region, coincident with the dense CO blotches; (2) neurons immunoreactive for the calcium-bin
10 ylation status and chromatin structure of Pl-Blotched and Pl-Rhoades at different stages in developme
13 001), strands (4.9 [2.9-8.4]; P < .001), and blotches and strands together (6.1 [3.3-11.3]; P < .001)
17 l plant pathogens, namely, a bacterial fruit blotch bacterium Acidovorax avenae subsp. citrulli (Aac)
18 tect four important plant pathogens: a fruit blotch bacterium Acidovorax avenae subsp. citrulli (Aac)
19 the known chromosomal linkage between orange blotch color and ZW, as well as novel genetic associatio
22 the last decade and a half, research on red blotch disease focused on GRBV biology; diagnostics; tra
23 A distinguishing feature of Septoria leaf blotch disease in wheat is the long symptomless growth o
25 cola is the causal agent of Septoria Tritici Blotch disease of wheat and can grow as yeast-like cells
28 nicola/Phaeosphaeria nodorum) (septoria leaf blotch diseases on winter wheat), Oculimacula yallundae/
34 eaks (0.89), typical pigment network (0.83), blotch irregular (0.82), negative network (0.81), irregu
36 d that the lower level of pigmentation in Pl-Blotched is correlated with lower pl mRNA levels and inc
37 la graminicola, incitant of septoria tritici blotch, is a widespread and significant pathogen of whea
42 cular, male and female colour morphs of side-blotched lizards cycle on five- and two-generation (year
43 In this study, male color morphs of side-blotched lizards settle nonrandomly with respect to gene
45 orial and nonterritorial morphotypes of side-blotched lizards, Uta stansburiana, in larger versus sma
48 identified the genetic basis for the orange-blotch (OB) color pattern, a trait under sexually antago
49 e diseases tan spot and Stagonospora nodorum blotch on wheat produce effectors (host-selective toxins
51 pattern of dorsal orange saddles and lateral blotches, our results indicate that melanocytes lacking
52 e-white veil, negative network, off-centered blotch, peripheral-tan structureless areas, atypical ves
55 ion of PVCV transcripts and episomal DNAs in blotched regions and the detection of VSR activity suppo
57 luding drought tolerance, Fusarium and brown blotch resistance, grain size and photoperiod sensitivit
64 a case study we considered Septoria tritici blotch (STB) (Zymoseptoria tritici), an economically imp
67 Zymoseptoria tritici causes Septoria tritici blotch (STB) of wheat, an economically important disease
68 Septoria), the causal agent of Septoria Leaf Blotch (STB), is considered one of the major threats to
69 ptoria tritici which causes Septoria tritici blotch (STB), represents one of the most genetically div
73 septoria tritici, which causes Septoria leaf blotch, the most prevalent disease of wheat worldwide.
74 discovery of its causal agent, grapevine red blotch virus (GRBV), the disease was likely mistaken for
75 age might contribute to the expression of Pl-Blotched, we used methylation-sensitive restriction enzy
76 und that cytosine methylation patterns at Pl-Blotched were indeed recapitulated in culture-rejuvenate