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38341Metagenomic Insights Into the Structure and Function of Intestinal Microbiota of the Hadal Amphipods“…Here, the intestinal microbiotas of three hadal amphipods, Hirondellea gigas, Scopelocheirus schellenbergi, and Alicella gigantea, from Mariana Trench, Marceau Trench, and New Britain Trench, respectively, were investigated. …”
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38342“…In this study, we investigated the effects of individual and combined heat and osmotic stresses on Arabidopsis susceptibility to the biotrophic pathogen Pseudomonas syringae pv. tomato (Pst) and the necrotrophic pathogen Botrytis cinerea (Bc). …”
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38343por Wen, Schilin D., Sans-Serramitjana, Eulàlia, Santander, Javiera F., Sánchez, Mariela R., Salazar-Aguilar, Paulina, Zepeda, Andrea B., Alvarado, Susana I., Miranda, Ignacia B.“…Extracts of Piper sarmentosus, Cannabis sativa and Bletilla striata provoked a reduction in the severity of the histological inflammation. …”
Publicado 2021
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38344por Romero-Severson, Jeanne, Moran, Thomas E., Shrader, Donna G., Fields, Francisco R., Pandey-Joshi, Susan, Thomas, Clayton L., Palmer, Emily C., Shrout, Joshua D., Pfrender, Michael E., Lee, Shaun W.“…C3 exhibited antibacterial activity against Escherichia coli, Xanthomonas axonopodis, and Pseudomonas syringae. Robust antimicrobial activity of B. safensis C3 was observed when C3 was co-cultured with Bacillus subtilis. …”
Publicado 2021
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38345“…In order to study the effect of land use and its impact on litter decomposition by soil fauna, a litter-bag experiment was conducted in the Pampa Serrana region, Azul district, Argentina. Litter-bags were made in three different mesh-sizes, allowing the access of micro, micro + meso and micro + meso + macrofauna. …”
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38346por Kumimoto, Roderick W., Ellison, Cory T., Toruño, Tania Y., Bak, Aurélie, Zhang, Hongtao, Casteel, Clare L., Coaker, Gitta, Harmer, Stacey L.“…We find xct mutants have enhanced resistance to infection by a virulent bacterial pathogen, Pseudomonas syringae pv. tomato DC3000, and are hyper-responsive to the defense-activating hormone salicylic acid (SA) when compared to wild-type. …”
Publicado 2021
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38347“…Disease severity and cell death caused by JBC1(ΔavrE1) in host and non-host plants were restored through heterologous complementation with avrE1 from Pseudomonas syringae pv. tomato DC3000 (PstDC3000). Overall, our results indicate that avrE1 contributes to cell death during early infection, which consequently increases disease development in host plants. …”
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38348por Zhao, Jiaojie, Bi, Weishuai, Zhao, Shuqing, Su, Jun, Li, Mengyu, Ma, Lisong, Yu, Xiumei, Wang, Xiaodong“…Transcriptome analysis revealed that overexpression of TaLTP3 specifically activated the transcription of pathogenesis-related protein 1a (TaPR1a) and multiple plant hormone pathways, including salicylic acid (SA), jasmonic acid (JA), and auxin, in response to the infection of the model bacterial pathogen Pseudomonas syringae pv. tomato DC3000. Further investigation indicated that TaLTP3 physically associated with wheat TaPR1a protein in the apoplast. …”
Publicado 2021
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38349por Mukhi, Nitika, Brown, Hannah, Gorenkin, Danylo, Ding, Pingtao, Bentham, Adam R., Stevenson, Clare E. M., Jones, Jonathan D. G., Banfield, Mark J.“…The Arabidopsis NLR pair RRS1-R/RPS4 confers disease resistance to different bacterial pathogens by perceiving the structurally distinct effectors AvrRps4 from Pseudomonas syringae pv. pisi and PopP2 from Ralstonia solanacearum via an integrated WRKY domain in RRS1-R. …”
Publicado 2021
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38350por Oppong-Danquah, Ernest, Blümel, Martina, Scarpato, Silvia, Mangoni, Alfonso, Tasdemir, Deniz“…Bioactivity assays revealed antimicrobial activity of compounds 2 and 3 against the phytopathogens M. oryzae and Phytophthora infestans, while pseudoanguillosporin A (6) showed the broadest and strongest anti-phytopathogenic activity against Pseudomonas syringae, Xanthomonas campestris, M. oryzae and P. infestans. …”
Publicado 2022
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38351por O’Connor, Stephanie, Hancock, W. Thane, Ada, Estelle, Anzures, Edlen, Baza, Christine, Aguon, Annette L., Cruz, Doris, Johnson, Eliaser, Mallari, Allan J., McCready, Jill A., Niedenthal, Jack, Pobutsky, Ann, Santos, Anne Marie, Santos, Jose Villagomez, Sasamoto, Jeremy, Tomokane, Portia, Villagomez, Warren, White, Paul“…This report describes the data collected through the World Health Organization’s Pacific Syndromic Surveillance System for the Commonwealth of the Northern Mariana Islands (CNMI), Guam, the Federated States of Micronesia (FSM) and the Republic of the Marshall Islands (RMI). …”
Publicado 2021
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38352“…Additionally, PqbZIP1 significantly inhibited the growth of the Pseudomonas syringae pv. tomato D36E strain in Nicotiana benthamiana, where expressing PqbZIP1 in N. benthamiana increased the jasmonic acid, salicylic acid, and abscisic acid content. …”
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38353por Zeng, Hong-Yun, Bao, He-Nan, Chen, Yi-Li, Chen, Ding-Kang, Zhang, Kun, Liu, Shuai-Kang, Yang, La, Li, Yong-Kang, Yao, Nan“…The loh1-2 and loh1-1 loh3-1 mutants were resistant to the bacterial pathogen Pseudomonas syringae pv maculicola (Psm) DG3 and exhibited programmed cell death (PCD), along with increased LCBs and ceramides, at later stages. …”
Publicado 2022
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38354por La Spada, Federico, Cock, Peter J. A., Randall, Eva, Pane, Antonella, Cooke, David E. L., Cacciola, Santa Olga“…Overall, 1,406,613 Phytophthora internal transcribed spacer 1 (ITS1) sequences and 155 Phytophthora isolates were obtained, which grouped into 21 taxa, five retrieved exclusively by baiting (P. bilorbang; P. cryptogea; P. gonapodyides; P. parvispora and P. pseudocryptogea), 12 exclusively by metabarcoding (P. asparagi; P. occultans; P. psycrophila; P. syringae; P. aleatoria/P. cactorum; P. castanetorum/P. quercina; P. iranica-like; P. unknown sp. 1; P. unknown sp. 2; P. unknown sp. 3; P. unknown sp. 4; P. unknown sp. 5) and four with both techniques (P. citrophthora, P. multivora, P. nicotianae and P. plurivora). …”
Publicado 2022
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38355por Vanga, Bhanupratap R., Panda, Preeti, Shah, Anish S., Thompson, Sarah, Woolley, Rebecca H., Ridgway, Hayley J., Mundy, Dion C., Bulman, Simon“…Using a reference database of trunk pathogen sequences, species previously associated with GTD, such as Cadophora luteo-olivacea, Diplodia seriata, Diplodia mutila, Neofusicoccum australe, and Seimatosporium vitis, were identified as highly represented across the vineyard region. …”
Publicado 2022
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38356por Girardin, Martin P., Guo, Xiao Jing, Gervais, David, Metsaranta, Juha, Campbell, Elizabeth M., Arsenault, André, Isaac-Renton, Miriam, Hogg, Edward H.“…In contrast, the growth of angiosperms with early leaf-out strategies, namely, Populus tremuloides and Betula papyrifera, was better in the coldest years, and gymnosperms with intermediate leaf-out timing, such as widespread Picea mariana and Picea glauca, had no consistent relationship to FFD. …”
Publicado 2022
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38357por Dong, Yanmei, Zhang, Wenying, Li, Jingrui, Wang, Di, Bai, Hongtong, Li, Hui, Shi, Lei“…The promoter of LaMYC4 contained hormone and stress-responsive regulatory elements and was responsive to various treatments, including UV, MeJA treatment, drought, low temperature, Pseudomonas syringae infection, and NaCl treatment. LaMYC4 overexpression increased the levels of sesquiterpenoids, including caryophyllenes, in Arabidopsis and tobacco plants. …”
Publicado 2022
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38358“…Kiwifruit bacterial canker caused by Pseudomonas syringae pv. actinidiae (Psa) is a major threat to kiwifruit worldwide, and effective control measures are still lacking. …”
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38359por Takamiya, Hinako, Kouduka, Mariko, Furutani, Hitoshi, Mukai, Hiroki, Nakagawa, Kaoru, Yamamoto, Takushi, Kato, Shingo, Kodama, Yu, Tomioka, Naotaka, Ito, Motoo, Suzuki, Yohey“…In this study, we reported ultra-small cells directly visualized in grain boundaries of CuFeS(2) inside an extinct metal sulfide chimney from the southern Mariana Trough. Nanoscale solid analyses reveal that ultra-small cells are coated with Cu(2)O nanocrystals in grain boundaries enriched with C, N, and P. …”
Publicado 2022
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38360“…To study SYP132 and associated trafficking of PM H(+)-ATPase 1 (AHA1) and PATHOGENESIS-RELATED PROTEIN1 (PR1) during pathogenesis, we used the virulent Pseudomonas syringae pv. tomato DC3000 (Pst DC3000) bacteria for infection of Arabidopsis (Arabidopsis thaliana) plants. …”
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