Results 111 to 120 of about 208,417 (290)
Discovery and Biosynthesis of the Novel Glycotetrapeptide Antibiotic Biffamycin A
Angewandte Chemie, EarlyView.Genetic de‐regulation of a silent biosynthetic pathway allowed isolation and characterisation of a novel glycopeptide antibiotic named biffamycin A, which harbours unprecedented 5‐chloro‐4‐methoxy tryptophan and 3R‐hydroxy(α‐D‐mannoysl)‐D‐lysine moieties and is bioactive against MRSA and VRSA.Michael W. Brigham, Edward S. Hems, Daniel C. L. Van, Justin E. Clarke, Sergey Nepogodiev, Julius S. P. Adamson, Christian Bassi, Michael E. Webb, Glyn R. Hemsworth, Orde Q. Munro, Barrie Wilkinson, Ryan F. Seipke +11 morewiley +2 more sourcesHijacking the Host Clock: A Nematode Effector Antagonizes Soybean Circadian Defense and Translation Control
Advanced Science, EarlyView.Soybean employs its circadian clock, governed by GmCCA1, to rhythmically defend against soybean cyst nematodes. The pathogen retaliates by secreting the effector Hg4E02, which hijacks the clock to suppress defense and co‐opt the host's translation machinery for nutrient acquisition.Xingwei Wang, Yufeng Xu, Yanfei Hu, Lijun Cao, Ru Jiang, Changtian Chen, Rick Masonbrink, Thomas Maier, Yuchen Tu, Yabo Shi, Enhui Liu, Lingan Kong, Chan Guo, Wei Zhao, Peng Shi, Wenzhen Du, Andrew Severin, Thomas Baum, Deliang Peng, Huan Peng, Mian Zhou, Wei Wang +21 morewiley +1 more sourceCell wall stress induces alternative fungal cytokinesis and septation strategies [PDF]
, 2013 Peer reviewedPublisher ...Gow, Neil A R, Lenardon, Megan D, Munro, Carol A, Preechasuth, Kanya, Walker, Louise +4 morecore +1 more sourcePlant Genetic Engineering: Technological Pathways, Application Scenarios, and Future Directions
Advanced Science, EarlyView.This review maps the fast‐evolving landscape of plant genetic engineering, linking enabling platforms with trait‐focused applications in architecture optimization, stress resilience, yield improvement, and quality enhancement. It highlights how genome editing, transgenic strategies, and emerging multi‐gene approaches reshape breeding pipelines, while ...Peilin Wang, Wenzhi Wang, Dongjiao Wang, Qibin Wu, Youxiong Que +4 morewiley +1 more sourceThe Aspergillus fumigatus Mucin MsbA Regulates the Cell Wall Integrity Pathway and Controls Recognition of the Fungus by the Immune System
mSphere, 2019 Aspergillus fumigatus is a filamentous fungus which causes invasive pulmonary aspergillosis in immunocompromised individuals. In fungi, cell signaling and cell wall plasticity are crucial for maintaining physiologic processes. In this context, Msb2 is an Isabella Luísa da Silva Gurgel, Karina Talita de Oliveira Santana Jorge, Nathália Luísa Sousa de Oliveira Malacco, Jéssica Amanda Marques Souza, Marina Campos Rocha, Marina Faria Fernandes, Flávia Rayssa Braga Martins, Iran Malavazi, Mauro Martins Teixeira, Frederico Marianetti Soriani +9 moredoaj +1 more sourceArabidopsis thaliana: A model host plant to study plant-pathogen interaction using Chilean field isolates of Botrytis cinerea [PDF]
, 2006 http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0716-97602006000200004&lng=es&nrm=isoOne of the fungal pathogens that causes more agriculture damage is Botrytis cinerea.Codriansky, Yael, Colihueque, Nelson, Gonzalez, Juan, Reyes, Francisca, Salas, Carlos, Santiago, Margarita, Silva, Herman +6 morecore +3 more sourcesBeyond Extracellular Vesicle (EV) Hype: Practical Solutions and Remaining Hurdles in EV Research, Manufacturing, and Clinical Translation
Advanced Science, EarlyView.ABSTRACT
Extracellular vesicles (EVs) are nanoscale mediators of intercellular communication with diverse molecular cargoes that reflect their cell of origin. Advances in isolation, detection, and single‐particle analytics have revealed increasing molecular and functional heterogeneity, while exposing limitations in how EV identity and activity are ...David J. Lundy, Zoe L. Chau, Sheng‐You Chen, Nanami Fujisawa, John J. Hill, Barnett M. Hsu, Joanne K. Liu, Karol W. Mai, James J. Lai +8 morewiley +1 more sourcePleosporales [PDF]
, 2011 One hundred and five generic types of Pleosporales are described and illustrated. A brief introduction and detailed history with short notes on morphology, molecular phylogeny as well as a general conclusion of each genus are provided.A Aptroot, A Aptroot, A Funk, A Hedjaroude, A Leuchtmann, A Leuchtmann, A Munk, A Munk, A Munk, A Pinnoi, A Płachecka, A Sivanesan, A Sivanesan, A Sivanesan, A Sivanesan, A Stamatakis, AC Stolk, AC Stolk, AD Poonyth, AI Romero, AJL Phillips, AMC Tang, AW Ramaley, AY Rossman, AY Rossman, B Aguirre-Hudson, B Auerswald, BC Lodha, BD Borse, BJ Coppins, BS Vieira, BV Boylan, C Bayon, C Moreau, C Roux, C Spegazzini, C Spegazzini, C Spegazzini, C Spegazzini, CA Shearer, CA Shearer, CA Shearer, CA Shearer, CGC Chesters, CGC Chesters, Ch Ramesh, CL Schoch, CL Schoch, Conrad L. Schoch, CY Chen, D Griffiths, D Malloch, D Morakotkarn, DA Johnson, DC Welch, DF Farr, DK Upreti, DL Hawksworth, DL Hawksworth, DL Hawksworth, DL Hawksworth, DL Hawksworth, DL Hawksworth, DL Hawksworth, DL Hawksworth, DL Hawksworth, DL Hawksworth, DMW Silva-Hanlin, DR Reynolds, DT Kowalski, DV Narendra, E Müller, E Müller, E Müller, E Müller, E Müller, E Tanaka, EA Gäumann, EBG Jones, ECY Liew, ECY Liew, EG Simmons, EG Simmons, EG Simmons, EG Simmons, EG Simmons, EM Fries, ER Luck-Allen, ES Luttrell, ES Luttrell, ES Luttrell, EWA Boehm, EWA Boehm, F Arenal, F Chevenet, F Höhnel von, F Höhnel von, F Mirza, F Petrak, F Petrak, F Petrak, F Theissen, F Theissen, FE Clements, FL Stevens, FM Clum, G Arnaud, G Lindau, G Massee, G Moore, G Niessl von, G Notaris de, GJ Samuels, GJ Samuels, GK Mugambi, GK Mugambi, GL Maria, H Kwasna, H Scheinpflug, H Sydow, H Voglmayr, H Zalasky, HA Raja, HC Wetzel, HCJ Godfray, HK Wang, HT Lumbsch, I Hino, I Hino, I Miyake, J Bitzer, J Checa, J Fröhlich, J Guarro, J Guarro, J Guarro, J Kohlmeyer, J Kohlmeyer, J Kohlmeyer, J Kohlmeyer, J Kohlmeyer, J Kohlmeyer, J Kohlmeyer, J Kohlmeyer, J Kohlmeyer, J Kohlmeyer, J Kohlmeyer, J Kohlmeyer, J Kohlmeyer, J Webster, J Webster, J Webster, J Webster, JA Arx von, JA Arx von, JA Arx von, JA Arx von, JA Arx von, JA Arx von, JA Arx von, JA Khan, JC Dianese, JD Gruyter de, JE Stajich, JH Fabre, JL Crane, JM Walker, JN Rai, JR Boise, JR Boise, JR Boise, JR Boise, JW Dong, JW Taylor, JZ Yue, K Hirayama, K Keissler, K Sultana, K Tanaka, K Tanaka, K Tanaka, K Tanaka, K Tanaka, K Tanaka, K Tanaka, K Tanaka, KA Pirozynski, KD Hyde, KD Hyde, KD Hyde, KD Hyde, KD Hyde, KD Hyde, KD Hyde, KD Hyde, KD Hyde, KD Hyde, KD Hyde, KD Hyde, KD Hyde, KD Hyde, KD Hyde, KD Hyde, KD Hyde, KD Hyde, KE Zeiders, Kevin D. Hyde, KJ Leonard, L Cai, L Fuckel, L Fuckel, L Holm, L Holm, L Holm, L Holm, L Holm, L Holm, L Zheng, LE Lorenzo, LE Wehmeyer, LE Wehmeyer, LE Wehmeyer, LE Wehmeyer, LM Holm, LM Winton, LN Vassiljeva, M Morelet, M Ulloa, MC Cooke, MC Saxena, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, ME Barr, MJ Berkeley, ML Davey, MM Aveskamp, MP Câmara, MPS Câmara, MPS Câmara, ND Pattengale, O Constantinescu, OE Eriksson, OE Eriksson, OE Eriksson, OE Eriksson, OE Eriksson, OE Eriksson, OE Eriksson, OE Eriksson, OE Eriksson, OE Eriksson, OE Eriksson, OE Eriksson, OE Eriksson, OE Eriksson, P Inderbitzin, P Inderbitzin, P Inderbitzin, PA Saccardo, PA Saccardo, PA Saccardo, Pedro W. Crous, PF Cannon, PF Cannon, PJ Fisher, PM Kirk, PM Kirk, PR Johnston, QD Wheeler, R DeSalle, R Kodsueb, R Kodsueb, R Prado del, RA Seifert, RA Shoemaker, RA Shoemaker, RA Shoemaker, RA Shoemaker, RA Shoemaker, RA Shoemaker, RA Shoemaker, RA Shoemaker, RA Shoemaker, RA Shoemaker, RF Cain, RF Cain, RF Cain, RF Cain, RS Khan, RS Khan, RWG Dennis, RWG Dennis, S Frisullo, S Marincowitz, S Neumann, S Schatz, S Suetrong, SA Alias, SI Ahmed, SI Ahmed, SK Bose, SM Huhndorf, SM Huhndorf, SM Huhndorf, SM Huhndorf, SR Ellwood, T Kishi, TF Cheng, TR Nag Raj, TW Thompson, V Calatayud, VM Morales, VM Ranghoo, W Kirschtein, W Watson, WJ Kaiser, Y Zhang, Y Zhang, Y Zhang, Y Zhang, Y Zhang, Y Zhang, Ying Zhang, YZh Wang, Z Maciejowska, ZQ Yuan, ZQ Yuan, ZQ Yuan, Å Kruys, Å Kruys +354 morecore +4 more sourcesCrystal Facet‐Polysaccharide Matching in CFS‐P Nanocrystals Drives Fungal Uptake, Vacuole Destruction, and Selective Antifungal Activity
Advanced Science, EarlyView.Facet‐engineered PVP‐capped CuFeSe2 nanocrystals exhibit potent, selective antifungal activity by strongly binding cell‐wall mannan, enabling vacuolar entry and organelle disruption. High‐index facets show superior mannan affinity, validated by theoretical calculations and experiments. CFS‐P induces vacuolar cavitation, mitochondrial abnormalities, and Zhaohui Wang, Xiaojin Deng, Xujuan Huang, Yuhang Pan, Yao Qin, Lu Zhang, Le Xu, Tianyi Qin, Deteng Zhang, Yi Ma, Yalong Wang +10 morewiley +1 more source