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1 t a role for this pathway in the Arabidopsis defence response.
2 side effects such as suppression of the host defence response.
3 equirement for haem synthesis is part of the defence response.
4 clearance of ROS, thus anticipating the host defence response.
5 ssion of p50 induces a temperature-sensitive defence response.
6 e reactive oxygen species (ROS) in the plant defence response.
7 lites, with important functions for pathogen defence responses.
8 ating plant development and conveying stress defence responses.
9  genes to detect specific T3SEs and activate defence responses.
10 ith parallels to plant wound, senescence and defence responses.
11 meostasis, which leads to the suppression of defence responses.
12 al machinery that regulates the induction of defence responses.
13 ps1 also exhibits defects in a wide range of defence responses.
14 ne phosphatase activity that modulates plant defence responses.
15 ra proteins previously shown to elicit plant defence responses.
16 host and uses them to interfere with induced defence responses.
17 ucts of microbial effector genes to activate defence responses.
18  deployment of both pre-formed and inducible defence responses.
19 ion to fine-tune the timing and amplitude of defence responses.
20 (SA), an endogenous signal involved in plant defence responses.
21 o early basal and subsequent secondary plant defence responses.
22 thogen attack and is required for a complete defence response against Pseudomonas syringae.
23 um might be to impair calcium-mediated plant defence responses against low pH.
24 e role of these hormones in modulating plant defence responses against various diseases and pests.
25 r5) mutant, which shows spontaneous pathogen-defence responses and abnormal trichomes, has a point mu
26 erpillar Spodoptera litura, and investigated defence responses and insect resistance in neighbouring
27 s 'donor' plants resulted in no induction of defence responses and no change in insect resistance in
28 fector suppression of plant-inducible innate defence responses and SA synthesis prior to subsequent p
29 on, which is normally associated with active defence responses and systemic acquired resistance.
30 hitin), GO:0002679 (respiratory burst during defence response) and GO:0035556 (intracellular signal t
31  (PAL), which has an important role in plant defence responses, and was purified.
32 RKY30 could have a role in the activation of defence responses at early stages of Arabidopsis growth
33 ctive as a form of elemental defence, normal defence responses became progressively uncoupled from RO
34 ed (i) the transcriptional dynamics of basal defence responses between Arabidopsis thaliana and Pseud
35         TLRs can directly induce innate host defence responses, but the mechanisms of TLR-mediated co
36 t of this hydrolysis then suppresses induced defence responses by interfering with fundamental signal
37 osts, trematode parasites down regulate host defence responses by interfering with key signal-transdu
38                                     Systemic defence responses depend on the spread of signals betwee
39 ssues and/or to MeJA- and ethylene-dependent defence responses engaged against necrotrophic pathogens
40 e nucleus tractus solitarii (NTS) during the defence response evoked by hypothalamic stimulation in t
41 ion of HvNAC6 as a regulator of ABA-mediated defence responses for maintenance of effective basal res
42 tial and conserved primary mediator in plant defence responses, how Ca(2+) signals are sensed and rel
43 orn does not (effectively) inhibit this host defence response in human monocytes.
44  fungus, and for the rapid induction of host defence responses in an incompatible reaction.
45 on processes of leaf senescence and pathogen-defence responses in Arabidopsis.
46 ts is likely to broaden our understanding of defence responses in diverse organisms.
47 thogen-associated molecular patterns) elicit defence responses in plants through extracellular recept
48 ive oxygen species (ROS) and elicited robust defence responses in rice epidermal cells that included
49 hat ultrasound at 20 kHz produces an escape (defence) response in the hooded Lister rat.
50 athway can lead to the induction of a set of defence responses including activation of SAR.
51 llenge to the fetus, but are counteracted by defence responses including marked redistribution of blo
52  secreted effectors, leading to induction of defence responses including the hypersensitive response
53  mutant also failed to elicit localized host defence responses, including papilla formation and autof
54 s a negative regulator of the cell death and defence responses induced through Cf-9, but not Cf-2.
55                                         This defence response is characterized by cell death at the s
56 s established for mutants in which the plant defence response is de-repressed.
57 ssion analysis suggested that pre-priming of defence responses may underlie reduced susceptibility to
58 JAs) regulate Arabidopsis thaliana wound and defence responses, pollen development, and stress-relate
59 ry mode of the transcriptional activation of defence responses previously undescribed in eukaryotes.
60 ctional categories in the asthma groups were defence response, protease inhibitor activity, inflammat
61 ng the molecular regulation of the molluscan defence response provides a new framework for studies th
62 tor, and leads on elicitation to a subset of defence responses qualitatively similar to those normall
63 , salicylic acid accumulation and downstream defence responses, such as callose deposition and pathog
64 for nutrient acquisition and/or unsuccessful defence responses, such as kauralexin production by the
65 NB-LRR proteins leads to strong induction of defence responses termed effector triggered immunity (ET
66  of herbicides that inhibit PPO also induced defence responses that conferred enhanced tolerance to P
67 iated molecular products, TLRs activate host defence responses through their intracellular signalling
68 ground whitefly infestation elicits systemic defence responses throughout the plant.
69  plants carrying these constructs activate a defence response to Avr9 peptide.
70       Our evidence indicates that this plant defence response to certain wavelengths of ultraviolet r
71 important role in the umbilical haemodynamic defence response to hypoxaemia in the late gestation fet
72  of the innate immune system to mount a host defence response to infection, they must recognize produ
73 wn to act as priming agents, enhancing plant defence response to insects.
74 use in mapping Eds16, a gene involved in the defence response to the fungal pathogen Erysiphe orontii
75   Other bacterial species inhibit C. elegans defence responses to a mitochondrial toxin, revealing ba
76 le in the fetal cardiovascular and metabolic defence responses to acute hypoxaemia by affecting sympa
77 t the cardiovascular, metabolic or endocrine defence responses to acute hypoxaemia in the twin fetus.
78  to different mechanisms mediating the fetal defence responses to acute hypoxaemia that occur during
79  dexamethasone on ovine fetal cardiovascular defence responses to acute hypoxaemia, occurring either
80 etal cardiovascular, metabolic and endocrine defence responses to acute hypoxaemia.
81     Interleukin (IL)-1 is a mediator of host defence responses to inflammation and injury, including
82 e is significantly reduced in coi1, in which defence responses to insects, pathogens and wounding are
83                           IL-1 mediates host defence responses to local and systemic disease and inju
84 olic and nutritional stresses, as well as in defence responses to wounding and pathogen attack.
85            CML41 acts independently of other defence responses triggered by flg22 perception and redu
86 are regulated during the activation of plant defence responses, we are studying a group of pathogen-
87   These genes likely are components of basal defence responses, which do not effectively block host p
88  faster transcriptional reprogramming of the defence response with gating of infection-responsive gen

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