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1 biotic stresses (watermelon mosaic virus and downy mildew).
2 ora parasitica (P.p.) races Emoy2 and Emwa1 (downy mildew).
3 ve high levels of quantitative resistance to downy mildew.
4 e timing and extent of outbreaks of cucurbit downy mildew.
5 of the putative chromatin regulator Enhanced Downy Mildew 2 (EDM2) as a cellular antisilencing factor
6                 We identified EDM2 (enhanced downy mildew 2) in a genetic screen for RPP7 suppressors
7 mMPK4-silenced plants were more resistant to downy mildew and Soybean mosaic virus compared with vect
8 ete, Peronospora parasitica (causal agent of downy mildew), and encodes an NBS-LRR type R protein wit
9                            The perception of downy mildew avirulence (Arabidopsis thaliana Recognized
10 , encodes Dm3 which determines resistance to downy mildew caused by the oomycete Bremia lactucae carr
11 12 activation, and reduced susceptibility to downy mildew disease (Hyaloperonospora arabidopsidis).
12  popular leafy vegetable, are susceptible to downy mildew disease caused by Bremia lactucae.
13 sity of ABA signaling affects the outcome of downy mildew disease.
14  several species of the oomycetes that cause downy mildew diseases.
15  genes conferring resistance to the oomycete downy mildew fungus Bremia lactucae map to the major res
16                   The resurgence of cucurbit downy mildew has dramatically influenced production of c
17 that the 3221 mutant exhibited resistance to downy mildew (Hyaloperonospora arabidopsidis) and green
18 volved in R-gene-mediated resistance against downy mildew in Arabidopsis and their regulatory control
19                 A recent outbreak of sorghum downy mildew in Texas has led to the discovery of both m
20 which confers resistance to Bremia lactucae (downy mildew) in 1033 accessions of Lactuca serriola (pr
21 ly divergent alleles of ATR1NdWsB from eight downy mildew isolates and demonstrate that the ATR1NdWsB
22 hum, maize, sugarcane, pearl millet and rose downy mildew isolates.
23 nome of Hyaloperonospora arabidopsidis (Hpa, downy mildew of Arabidopsis) contains at least 134 candi
24 as well as from 5 related species that cause downy mildew on other hosts, the number of different ban
25  IP18292 in response to inoculation with the downy mildew oomycete pathogen Sclerospora graminicola.
26 ntribute to pearl millet defense against the downy mildew pathogen by activating the expression of de
27                               The biotrophic downy mildew pathogen Hyaloperonospora arabidopsidis enc
28 s required for successful infection with the downy mildew pathogen Hyaloperonospora arabidopsidis.
29                        We study the oomycete downy mildew pathogen of Arabidopsis, Hyaloperonospora a
30            Hyaloperonospora arabidopsidis, a downy mildew pathogen of the model plant Arabidopsis, ha
31 lent/Columbia-0 (Col-0) virulent isolates of downy mildew pathogen.
32  in resolving among phylogenetically related downy mildew pathogens dramatically point out the need f
33 esponding to incursions of new or reemerging downy mildew pathogens.
34 ne confers AtSgt1b-independent resistance to downy mildew (Peronospora parasitica) isolate Hiks1.
35 s (Arabidopsis thaliana) RLPs, including the downy mildew resistance protein RPP27.
36 s were screened for spontaneous mutations in downy mildew resistance.
37 of several R genes that confer bacterial and downy mildew resistance.
38                       We also show here that DOWNY MILDEW RESISTANT6 (AtDMR6), the Arabidopsis homolo
39 rimer pairs studied in detail using DNA from downy mildews that attack maize (P. maydis & P. philippi
40  its common parasite Peronospora parasitica (downy mildew) to study the evolution of resistance speci
41 uences of three Phytophthora species and one downy mildew were identified and could serve as useful p

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