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1                              qPCR-1 detected Rhizopus and Mucor DNA in 20 (39%) of 51 serial plasma s
2                           Fungal isolates of Rhizopus and Mucor species were not detected, either, al
3 rm transcriptomics with three representative Rhizopus and Mucor strains and with human airway epithel
4 ediated killing of Aspergillus fumigatus and Rhizopus arrhizus by 4-fold and 15-fold, respectively (P
5 ecies], 6 Paecilomyces lilacinus isolates, 6 Rhizopus arrhizus isolates, 23 Scedosporium sp. isolates
6 m, Fusarium solani, Pseudallescheria boydii, Rhizopus arrhizus, Blastomyces dermatitidis, Histoplasma
7 spermum, Fusarium oxysporum/Fusarium solani, Rhizopus arrhizus, Rhizopus microsporus, Mucor indicus,
8 , Phialophora spp., Pseudallescheria boydii, Rhizopus arrhizus, Scedosporium prolificans, and Sporoth
9 activity against Cryptococcus neoformans and Rhizopus arrhizus.
10 ces cerevisiae, Pseudallescheria boydii, and Rhizopus arrhizus.
11  Fusarium spp., Pseudallescheria boydii, and Rhizopus arrhizus.
12  required for the mutualistic outcome of the Rhizopus-Burkholderia symbiosis.
13 o respond differently towards elicitation by Rhizopus during germination.
14 tes isolates (74% of which were of the genus Rhizopus) had different molecular fingerprinting profile
15         Environmental isolates of the fungus Rhizopus have been shown to harbor a bacterial endosymbi
16             Previously, we demonstrated that Rhizopus invades the endothelium via binding of fungal C
17 strated synergy against 14/15 Zygomycetes (9 Rhizopus isolates and 5 Mucor isolates).
18 says using hydrolysis probes targeting Mucor/Rhizopus, Lichtheimia (formerly Absidia), and Rhizomucor
19  completely protected endothelial cells from Rhizopus-mediated invasion and damage.
20 cteria, we studied a symbiosis of the fungus Rhizopus microsporus (Mucoromycotina) and its Burkholder
21 ediction in the mutualism between the fungus Rhizopus microsporus (Rm, Mucoromycotina) and a beta-pro
22              The rice seedling blight fungus Rhizopus microsporus and its endosymbiont Burkholderia r
23 toxin, the endosymbiont of the rice pathogen Rhizopus microsporus controls the ability of the fungus
24 eport four cases of cutaneous infection with Rhizopus microsporus in vulnerable preterm infants in on
25 xysporum/Fusarium solani, Rhizopus arrhizus, Rhizopus microsporus, Mucor indicus, and Cunninghamella
26 lation and identification of the predominant Rhizopus microsporus-induced metabolites revealed ent-ka
27 licons of the first qPCR assay (qPCR-1) from Rhizopus, Mucor, and Rhizomucor species were distinguish
28  sensitive and specific for the detection of Rhizopus, Mucor, Rhizomucor, and Cunninghamella species
29 ) amounts increased by over 30% for SSF with Rhizopus oligosporus and by >21% for SSF with A. niger.
30 distillery wastes with Aspergillus niger and Rhizopus oligosporus were investigated.
31 ivalents (RCE)/g DW), whereas application of Rhizopus onto the seedlings increased the isoflavonoid c
32 nse to extracts of Candida, Aspergillus, and Rhizopus organisms.
33                 The main fungal species were Rhizopus oryzae (32%) and Lichtheimia species (29%).
34 (butylene succinate) (PBS) and the lipase of Rhizopus oryzae (RoL), we detected complete hydrolysis o
35 y using 14 clinical isolates of Zygomycetes (Rhizopus oryzae [5 isolates], Cunninghamella spp. [3 iso
36   Deferasirox effectively chelated iron from Rhizopus oryzae and demonstrated cidal activity in vitro
37 omonas reinhardtii, Mucor circinelloides and Rhizopus oryzae but was dissimilar to the non-oleaginous
38     In this work, the effect of SSF with the Rhizopus oryzae fungus on the phenolic acid content of r
39 host cell receptors for Candida albicans and Rhizopus oryzae has been demonstrated in experimental an
40                                              Rhizopus oryzae is the most common cause of mucormycosis
41                                              Rhizopus oryzae is the most common cause of zygomycosis,
42 g in their terephthalate-to-adipate ratio by Rhizopus oryzae lipase and Fusarium solani cutinase.
43  polyesters by two fungal esterases (FsC and Rhizopus oryzae lipase) at different temperatures.
44 state cultivation (SSC) time of rice bran by Rhizopus oryzae on gamma-oryzanol recovery and its antio
45                  Recent genome sequencing of Rhizopus oryzae revealed evidence of a whole-genome dupl
46  clinical isolates of Zygomycetes, including Rhizopus oryzae strains, we found no evidence that bacte
47 ucormycetes, we enriched and cultivated anti-Rhizopus oryzae T cells from healthy individuals.
48                     In contrast, exposure of Rhizopus oryzae to itraconazole, amphotericin B, or casp
49     A flux analysis of glucose metabolism in Rhizopus oryzae was achieved using [14C]-labeled glucose
50  sought to examine the effects of statins on Rhizopus oryzae, a common cause of mucormycosis.
51  Aspergillus fumigatus, Aspergillus terreus, Rhizopus oryzae, Fusarium solani, Fusarium oxysporum, Sc
52 iquid state fermentation (Bacillus subtilis, Rhizopus oryzae, Saccharomyces cerevisiae, Lactobacillus
53                                  A mutant of Rhizopus oryzae, the most common cause of mucormycosis,
54 ion and damage of human endothelial cells by Rhizopus oryzae, the most common etiologic species of Mu
55 the in vivo activity of posaconazole against Rhizopus oryzae, the Mucorales species most commonly ass
56  with or without subsequent elicitation with Rhizopus oryzae.
57 most common etiologic agent of mucormycosis, Rhizopus oryzae.
58 action methods for Aspergillus fumigatus and Rhizopus oryzae.
59  Fusarium, Mucor, Paecilomyces, Penicillium, Rhizopus, Scedosporium, Sporothrix, or other aspergilli
60                  The zygomycete cultured was Rhizopus schipperae.
61 r sp. (two species), Paecilomyces lilacinus, Rhizopus sp. (two species), and Scedosporium sp. (two sp
62 dominant fungal genera were Aspergillus sp., Rhizopus sp., Penicillium sp. and Sarocladium sp., occur
63 t amplify Candida, Scedosporium, Fusarium or Rhizopus species and its clinical sensitivity is demonst
64 eimia species, Rhizomucor species, and Mucor/Rhizopus species in 4, 3, and 2 patients, respectively).
65 ans (n=10, 22%), Aspergillus spp (n=6, 13%), Rhizopus spp (n=l), and others (n=4).
66 he agreement was 100% for all species except Rhizopus spp. (83%) and Paecilomyces varioti (0%) with R
67 was used, the agreement ranged from 50% with Rhizopus spp. to 100% with Fusarium spp., P. boydii, P.
68 er incubation for 24 h (Aspergillus spp. and Rhizopus spp.) and 48 h (all species except Rhizopus spp
69  Rhizopus spp.) and 48 h (all species except Rhizopus spp.) at 35 degrees C.
70 d zygomycetes (including Absidia, Mucor, and Rhizopus spp.) were determined by using the Clinical and
71 eus, Fusarium spp., Pseudallescheria boydii, Rhizopus spp., Paecilomyces variotii, and an Acremonium
72 moniae, Salmonellae typhi, Candida albicans, Rhizopus stolonifer, Aspergillus niger and Penicillium n
73 s of IC50 between 1519 and 3310 mg/L against Rhizopus stolonifer, Botrytis cinerea, Fusarium oxysporu
74 ed by fermenting soybean or other beans with Rhizopus strains and usually eaten deep-fried, steamed o
75 nt isoflavonoid subclasses in seedlings with Rhizopus varied per species.
76                                              Rhizopus was the most frequent genus (43%).

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