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1 ssing systems and motor pathways used in the defense reaction.
2 degrading peptidoglycan, and initiating host defense reactions.
3 port and/or re-uptake, as can occur in plant defense reactions.
4 emoprotein thought to primarily mediate host defense reactions.
5 crobial pathogens and to induce a variety of defense reactions.
6 ce of invading pathogens and initiating host defense reactions.
7 10 is involved in the chronic stages of host defense reactions.
8 e inflammatory injury without affecting host defense reactions.
9 ions, plant-pathogen interactions, and plant defense reactions.
10 t cytokine implicated in a variety of immune defense reactions.
11 and migration and hence a mediator of immune defense reactions.
12 togein and flagellin, two elicitors of plant defense reactions.
13 often discussed with regard to their role in defense reactions, a common physiological function has n
15 ferent lymphocyte subpopulations in the host defense reaction against influenza virus infection, taki
16 ents that participate in hemostatic and host defense reactions and deliver pro- and antiangiogenic fa
17 the increased energy demand to trigger plant defense reactions and to deprive the fungus by changing
18 e associated with the activation of pathogen defense reactions, and that this latter pathway also ind
19 iochemical and transcriptional activation of defense reactions at distal sites is compromised in cpk5
20 genous biochemical pathways activated during defense reactions can counter-regulate inflammation and
21 genous biochemical pathways activated during defense reactions can counter-regulate inflammation and
24 oxygen species (ROS), and elicitors of plant defense reactions, have been shown to induce stomatal cl
26 e.g. locomotion, respiration, swallowing and defense reactions), in the absence of peripheral feedbac
30 se (IBD) may result from an exaggerated host defense reaction of the intestinal epithelium to endogen
31 lyanionic molecules outside cells to promote defense reactions on the one side but to provoke cardiov
32 y the host plant leads to the induction of a defense reaction that often culminates in a hypersensiti
33 l major bladder pathologies and represents a defense reaction to injury involving a mandatory partici
34 understanding of the biochemistry of midgut defense reactions to parasite invasion and how these may
35 oanthranilic acid (DCA), efficiently induced defense reactions to the phytopathogens H. parasitica an
36 ma-irradiated ARD soil suggests that typical defense reactions towards biotic stress take place in AR
37 le replant disease affected plants suggested defense reactions towards biotic stress to occur which d
39 itive response (HR), a complex multicellular defense reaction where programmed cell death of cells su
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