Artigos de revistas sobre o tema "Edible fungus"
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Li, Jian, Junmei Ma, Sufang Fan, Shengquan Mi e Yan Zhang. "Comparison of the Nutritional and Taste Characteristics of 5 Edible Fungus Powders Based on the Composition of Hydrolyzed Amino Acids and Free Amino Acids". Journal of Food Quality 2022 (7 de abril de 2022): 1–10. http://dx.doi.org/10.1155/2022/3618002.
Texto completo da fonteCaroline, Clementia, e Alberta Rika Pratiwi. "BIOPRESERVATIF ALAMI DALAM PEMBUATAN EDIBLE FILM KARAGENAN Eucheuma cottonii DENGAN POLIETILEN GLIKOL SEBAGAI PLASTICIZER". JURNAL AGROTEKNOLOGI 11, n.º 02 (12 de janeiro de 2018): 148. http://dx.doi.org/10.19184/j-agt.v11i02.6523.
Texto completo da fonteGuan, Cheng Bo, Jing Yun Liu, Li Shuan Hu e Qin Zhang. "Composite Environment Monitoring System for Edible Fungus Cultivation Based on ZigBee Technology". Advanced Materials Research 791-793 (setembro de 2013): 975–79. http://dx.doi.org/10.4028/www.scientific.net/amr.791-793.975.
Texto completo da fonteKAYA, Abdullah, Fevzi KILIÇEL, Hacer Sibel KARAPINAR e Yasin UZUN. "Mineral Contents of Some Wild Edible Mushrooms". Journal of Fungus 8, n.º 2 (31 de outubro de 2017): 178–83. http://dx.doi.org/10.15318/fungus.2017.49.
Texto completo da fonteWang, Ying, Bu Tao, Bo Lin Ma e Qing Lin Xue. "The Development and Demonstration of Edible Fungus Circular Agriculture Mode and its Standardization Production Technology". Advanced Materials Research 1010-1012 (agosto de 2014): 2102–8. http://dx.doi.org/10.4028/www.scientific.net/amr.1010-1012.2102.
Texto completo da fonteZhang, Ling Yun, Hua Zhang, Peng Fei Zhang e Qiu Hong Yuan. "Study on the Intelligent Monitoring System for the Industrialized Producing Environment of Edible Fungus Based on the Internet of Things". Applied Mechanics and Materials 427-429 (setembro de 2013): 1028–31. http://dx.doi.org/10.4028/www.scientific.net/amm.427-429.1028.
Texto completo da fonteLi, Hongyan, Lianxin Liu, Jianguo Cui, Jiali Cui, Fang Wang e Feng Zhang. "High-efficiency adsorption and regeneration of methylene blue and aniline onto activated carbon from waste edible fungus residue and its possible mechanism". RSC Advances 10, n.º 24 (2020): 14262–73. http://dx.doi.org/10.1039/d0ra01245a.
Texto completo da fonteZhong, Yuanyuan, Shuting Dong, Yuan Cui, Xiaobo Dong, Huaide Xu e Mei Li. "Recent Advances in Postharvest Irradiation Preservation Technology of Edible Fungi: A Review". Foods 12, n.º 1 (25 de dezembro de 2022): 103. http://dx.doi.org/10.3390/foods12010103.
Texto completo da fonteMurugesan, Priya. "Phytochemical Analysis and Antimicrobial Activity of Edible Lichen". Journal of Drug Delivery and Therapeutics 10, n.º 2-s (15 de abril de 2020): 102–4. http://dx.doi.org/10.22270/jddt.v10i2-s.4016.
Texto completo da fonteChen, Xiang Ning, Wen Bin Jin, Yin Ran Dong, Ling Chuan Meng e Qiang Wei. "Research Progress in Preservation of Postharvest Edible Fungi". Advanced Materials Research 476-478 (fevereiro de 2012): 614–19. http://dx.doi.org/10.4028/www.scientific.net/amr.476-478.614.
Texto completo da fonteLi, Fenni, Junbiao Zhang, Fangjie Yao e Tingdong Fu. "China-Africa Cooperation in Edible Fungus Industry Technology". Chinese Journal of Engineering Science 21, n.º 4 (2019): 105. http://dx.doi.org/10.15302/j-sscae-2019.04.009.
Texto completo da fonteChobot, Vladimir, Lubomír Opletal, Luděk Jáhodář, Asmita V. Patel, Christopher G. Dacke e Gerald Blunden. "Ergosta-4,6,8,22-tetraen-3-one from the edible fungus, Pleurotus ostreatus (oyster fungus)". Phytochemistry 45, n.º 8 (agosto de 1997): 1669–71. http://dx.doi.org/10.1016/s0031-9422(97)00249-5.
Texto completo da fonteJournal, Baghdad Science. "Evaluate the Effectiveness of Agaricus bisporus (Spawn) on Control Damping – off Caused by Pythium aphanidermatum on Cucumber". Baghdad Science Journal 13, n.º 3 (4 de setembro de 2016): 413–18. http://dx.doi.org/10.21123/bsj.13.3.413-418.
Texto completo da fonteAini, Sitti Nurul, Kusmiadi R e Napsiah Mey. "PENGGUNAAN JENIS DAN KONSENTRASI PATI SEBAGAI BAHAN DASAR EDIBLE COATING UNTUK MEMPERTAHANKAN KESEGARAN BUAH JAMBU CINCALO (Syzygium samarangense [Blume] Merr. & L.M. Perry) SELAMA PENYIMPANAN". JURNAL BIOINDUSTRI 1, n.º 2 (28 de junho de 2019): 186–202. http://dx.doi.org/10.31326/jbio.v1i2.346.
Texto completo da fonteYin, Zhenhua, Zhenhua Liang, Changqin Li, Jinmei Wang, Changyang Ma e Wenyi Kang. "Immunomodulatory effects of polysaccharides from edible fungus: a review". Food Science and Human Wellness 10, n.º 4 (julho de 2021): 393–400. http://dx.doi.org/10.1016/j.fshw.2021.04.001.
Texto completo da fonteDAS, KANAD, Manoj Emanuel Hembrom, Arun Kumar Dutta, Arvind Parihar, Soumitra Paloi e Krishnendu Acharya. "Ramaria subalpina (Gomphaceae): a new edible fungus from India". Phytotaxa 246, n.º 2 (10 de fevereiro de 2016): 137. http://dx.doi.org/10.11646/phytotaxa.246.2.5.
Texto completo da fonteJonathan, S. G., e I. O. Fasidi. "Studies on Psathyerella atroumbonata (Pegler), a Nigerian edible fungus". Food Chemistry 81, n.º 4 (junho de 2003): 481–84. http://dx.doi.org/10.1016/s0308-8146(02)00237-6.
Texto completo da fonteZhu, Wenjun, Wei Wei, Shaopeng Zhang, Yonglian Zheng, Ping Chen e Xiaowen Xu. "The Phosphatome of Medicinal and Edible Fungus Wolfiporia cocos". Current Microbiology 75, n.º 2 (12 de setembro de 2017): 124–31. http://dx.doi.org/10.1007/s00284-017-1356-1.
Texto completo da fonteBhanja, Sunil K., Dilip Rout, Pradip Patra, Ipsita K. Sen, Chanchal K. Nandan e Syed S. Islam. "Water-insoluble glucans from the edible fungus Ramaria botrytis". Bioactive Carbohydrates and Dietary Fibre 3, n.º 2 (abril de 2014): 52–58. http://dx.doi.org/10.1016/j.bcdf.2014.01.004.
Texto completo da fonteDai, Quan, Li-Ting Pang, Fa-Lei Zhang, Gang-Qiang Wang, Xue-Mei Li, Ji-Kai Liu e Tao Feng. "Meroterpenoids with Immunosuppressive Activity from Edible Fungus Craterellus odoratus". Molecules 28, n.º 4 (6 de fevereiro de 2023): 1564. http://dx.doi.org/10.3390/molecules28041564.
Texto completo da fonteTkachenko, F. P., e M. P. Prydiuk. "A new record of the rare fungus Hericium erinaceus (Russulales) in Ukraine". Ukrainian Botanical Journal 78, n.º 5 (29 de outubro de 2021): 365–69. http://dx.doi.org/10.15407/ukrbotj78.05.365.
Texto completo da fonteCHOBOT, V., L. OPLETAL, L. JAHODAR, A. V. PATEL, C. G. DACKE e G. BLUNDEN. "ChemInform Abstract: Ergosta-4,6,8,22-tetraen-3-one from the Edible Fungus Pleurotus ostreatus (Oyster Fungus)." ChemInform 28, n.º 46 (3 de agosto de 2010): no. http://dx.doi.org/10.1002/chin.199746195.
Texto completo da fonteXin, Shi Gang, Guo De Li, Fu Long Ren, Na Li e Shi Wei Wu. "Detection and Evaluation of Heavy Metal in Edible Fungi of Liaoning Province". Applied Mechanics and Materials 675-677 (outubro de 2014): 350–53. http://dx.doi.org/10.4028/www.scientific.net/amm.675-677.350.
Texto completo da fonte., Kuang-Ren Chung, e Dean D. Tzeng . "Nutritional Requirements of the Edible Gall-producing Fungus Ustilago esculenta". Journal of Biological Sciences 4, n.º 2 (15 de fevereiro de 2004): 246–52. http://dx.doi.org/10.3923/jbs.2004.246.252.
Texto completo da fonteHe, Xiaohong, Rangpeng Wu, Meiqiong Tan, Zhihao Mu e Jihua Liu. "Enshi sulfur dioxide residues in food risk assessment". E3S Web of Conferences 189 (2020): 02011. http://dx.doi.org/10.1051/e3sconf/202018902011.
Texto completo da fonteShi, Wenyao, Yuzhu Hou, Zezhou Zhang, Xuebin Yin, Xiaohu Zhao e Linxi Yuan. "Determination of Selenium Speciation in High Se-Enriched Edible Fungus Ganoderma lucidum Via Sequential Extraction". Horticulturae 9, n.º 2 (27 de janeiro de 2023): 161. http://dx.doi.org/10.3390/horticulturae9020161.
Texto completo da fonteLei, Zhan, Chen Zhang, Yinjiao Li, Lunzhao Yi e Ying Shang. "Species-Specific Gene, spt5, in the Qualitative and Quantitative Detection of Boletus reticulatus". Journal of Food Quality 2022 (1 de abril de 2022): 1–7. http://dx.doi.org/10.1155/2022/5526810.
Texto completo da fonteSharma, Ajay, Shivam Singh, Braj Mohan Kuiry, Himanshu, Kulveer Singh e Shivani. "Cultivation and processing of edible mushrooms". INTERNATIONAL JOURNAL OF AGRICULTURAL SCIENCES 17, n.º 2 (15 de junho de 2021): 745–50. http://dx.doi.org/10.15740/has/ijas/17.2/745-750.
Texto completo da fontePadmathilake, K. G. E., H. M. S. K. H. Bandara, M. Mallique Qader, N. Savitri Kumar, Lalith Jayasinghe, Hironori Masubuti e Yoshinori Fujimoto. "Talarofuranone, a New Talaroconvolutin Analog from the Endophytic Fungus Talaromyces purpurogenus from Pouteria campechiana Seeds". Natural Product Communications 12, n.º 4 (abril de 2017): 1934578X1701200. http://dx.doi.org/10.1177/1934578x1701200406.
Texto completo da fonteShahryari, Zohre, Mohammad Fazaelipoor, Younes Ghasemi, Patrik Lennartsson e Mohammad Taherzadeh. "Amylase and Xylanase from Edible Fungus Neurospora intermedia: Production and Characterization". Molecules 24, n.º 4 (17 de fevereiro de 2019): 721. http://dx.doi.org/10.3390/molecules24040721.
Texto completo da fonteMao, Chunyu, Xiaodong Yang, Zhuojuan Yang e Hao Liu. "Design of Automatic Production System for Multi-agent Edible Fungus Inoculation". Journal of Physics: Conference Series 1744, n.º 2 (1 de fevereiro de 2021): 022121. http://dx.doi.org/10.1088/1742-6596/1744/2/022121.
Texto completo da fonteHe, Qiang, Yu Yang, Zeng Liu, Dongwei Shao, Donghua Jiang, Lei Xing, Qie Pan e Huizi Shan. "Preparation and characterization of cellulose nanocrystals from spent edible fungus substrate". Journal of the Science of Food and Agriculture 102, n.º 7 (11 de novembro de 2021): 2761–72. http://dx.doi.org/10.1002/jsfa.11617.
Texto completo da fonteWang, Hui-Chun, Tzu-Yi Ke, Ya-Chen Ko, Jue-Jun Lin, Jui-Sheng Chang e Yuan-Bin Cheng. "Anti-Inflammatory Azaphilones from the Edible Alga-Derived Fungus Penicillium sclerotiorum". Marine Drugs 19, n.º 10 (22 de setembro de 2021): 529. http://dx.doi.org/10.3390/md19100529.
Texto completo da fonteKazanas, N. "Pathogenicity of a fungus resembling Wangiella dermatitidis isolated from edible mushrooms." Applied and Environmental Microbiology 51, n.º 2 (1986): 261–67. http://dx.doi.org/10.1128/aem.51.2.261-267.1986.
Texto completo da fonteŽižić, Milan, Joanna Zakrzewska, Kristina Tešanović, Eleonora Bošković, Milica Nešović e Maja Karaman. "Effects of vanadate on the mycelium of edible fungus Coprinus comatus". Journal of Trace Elements in Medicine and Biology 50 (dezembro de 2018): 320–26. http://dx.doi.org/10.1016/j.jtemb.2018.07.017.
Texto completo da fonteYang, Ruiheng, Yan Li, Chuanhua Li, Jianping Xu e Daopeng Bao. "The complete mitochondrial genome of the Basidiomycete edible fungus Pleurotus eryngii". Mitochondrial DNA Part B 1, n.º 1 (1 de janeiro de 2016): 772–74. http://dx.doi.org/10.1080/23802359.2016.1238755.
Texto completo da fonteWu, Ying-Ying, Jun-Jun Shang, Yan Li, Chen-Li Zhou, Di Hou, Jia-Li Li, Qi Tan, Da-Peng Bao e Rui-Heng Yang. "The complete mitochondrial genome of the Basidiomycete edible fungus Hypsizygus marmoreus". Mitochondrial DNA Part B 3, n.º 2 (3 de julho de 2018): 1241–43. http://dx.doi.org/10.1080/23802359.2018.1532343.
Texto completo da fonteYan, Pei-Sheng, Jia-Hui Jiang e Wen-Shan Cui. "Characterization of protoplasts prepared from the edible fungus, Stropharia rugoso-annulata". World Journal of Microbiology and Biotechnology 20, n.º 2 (março de 2004): 173–77. http://dx.doi.org/10.1023/b:wibi.0000021753.22257.27.
Texto completo da fontePrasad, Durga, e Ramji Singh. "Diseases, moulds, insect-pests and mites of mushroom". INTERNATIONAL JOURNAL OF PLANT PROTECTION 13, n.º 2 (15 de outubro de 2020): 211–26. http://dx.doi.org/10.15740/has/ijpp/13.2/211-226.
Texto completo da fonteLi, Dong, Yunpeng Gai, Junlong Meng, Jingyu Liu, Weiming Cai, Fu-Cheng Lin e Hongkai Wang. "GPI-Anchored Protein Homolog IcFBR1 Functions Directly in Morphological Development of Isaria cicadae". Journal of Fungi 8, n.º 11 (31 de outubro de 2022): 1152. http://dx.doi.org/10.3390/jof8111152.
Texto completo da fontePonnusamy, Chandrasekaran, V. V. Sathibabu Uddandrao, Sethumathi Ponnusamy Pudhupalayam, Sengottuvelu Singaravel, Tamilmani Periyasamy, Ponmurugan Ponnusamy, Puniethaa Prabhu, Vadivukkarasi Sasikumar e Saravanan Ganapathy. "Lentinula Edodes (Edible Mushroom) as a Nutraceutical: A Review". Biosciences Biotechnology Research Asia 19, n.º 1 (31 de março de 2022): 1–11. http://dx.doi.org/10.13005/bbra/2964.
Texto completo da fonteCao, Xiang Yu, Wei Yang, Jian Li Lui e Hai Xin Ai. "Isolation Process and Bioactive Activity of Bioactive Polysaccharides from Fungal Mycelium". Advanced Materials Research 726-731 (agosto de 2013): 401–5. http://dx.doi.org/10.4028/www.scientific.net/amr.726-731.401.
Texto completo da fonteXu, Chang, Hui Wang, Yu Huan Liu, Roger Ruan e Yun Li. "Research on Edible Fungi and Algae as Feed Supplement". Advanced Materials Research 518-523 (maio de 2012): 608–13. http://dx.doi.org/10.4028/www.scientific.net/amr.518-523.608.
Texto completo da fonteMartínez-M., L., C. Villanueva-Verduzco e J. Sahagún-Castellanos. "SUSCEPTIBILIDAD Y RESISTENCIA DEL MAÍZ AL HONGO COMESTIBLE HUITLACOCHE (Ustilago maydis Cda.) MEJORANDO SU VIRULENCIA". Revista Chapingo Serie Horticultura VI, n.º 02 (dezembro de 2000): 241–55. http://dx.doi.org/10.5154/r.rchsh.1999.10.069.
Texto completo da fonteJOHANNES, EVA, MUSTIKA TUWO, NATALIA KATAPPANAN, HENRA HENRA e GUSNI WIRIANTI. "Edible Coating Berbasis Pati Ubi Kayu Manihot esculenta Crantz dan Jahe Merah Zingiber officinale var. rubrum Memperpanjang Umur Simpan Buah Tomat Solanum lycopersicum L." Agrotrop : Journal on Agriculture Science 12, n.º 2 (30 de novembro de 2022): 204. http://dx.doi.org/10.24843/ajoas.2022.v12.i02.p03.
Texto completo da fonteChen, Cheng, Rongtao Fu, Jian Wang, Xingyue Li, Xiaojuan Chen, Qiang Li e Daihua Lu. "Genome sequence and transcriptome profiles of pathogenic fungus Paecilomyces penicillatus reveal its interactions with edible fungus Morchella importuna". Computational and Structural Biotechnology Journal 19 (2021): 2607–17. http://dx.doi.org/10.1016/j.csbj.2021.04.065.
Texto completo da fonteKawagishi, Hirokazu. "Chemical studies on bioactive compounds related to higher fungi". Bioscience, Biotechnology, and Biochemistry 85, n.º 1 (janeiro de 2021): 1–7. http://dx.doi.org/10.1093/bbb/zbaa072.
Texto completo da fonteSritharan, Thulasi, N. Savitri Kumar, Lalith Jayasinghe, Hiroshi Araya e Yoshinori Fujimoto. "Isocoumarins and Dihydroisocoumarins From the Endophytic Fungus Biscogniauxia capnodes Isolated From the Fruits of Averrhoa carambola". Natural Product Communications 14, n.º 5 (maio de 2019): 1934578X1985196. http://dx.doi.org/10.1177/1934578x19851969.
Texto completo da fonteZhang, Chenghua, Wangqiu Deng, Wenjuan Yan e Taihui Li. "Whole Genome Sequence of an Edible and Potential Medicinal Fungus, Cordyceps guangdongensis". G3: Genes|Genomes|Genetics 8, n.º 6 (17 de abril de 2018): 1863–70. http://dx.doi.org/10.1534/g3.118.200287.
Texto completo da fonteRickert, Aljona, Verena Krombach, Oliver Hamers, Holger Zorn e Wolfgang Maison. "Enzymatic allylic oxidations with a lyophilisate of the edible fungus Pleurotus sapidus". Green Chemistry 14, n.º 3 (2012): 639. http://dx.doi.org/10.1039/c2gc16317a.
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