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| 1 | Waste production in aquaculture:Sources,components and managements in different culture systems显示文摘The intensification of aquaculture has emerged as a viable alternative for increasing aquaculture production due to competition that arose from the use of natural resources,such as land and water,by other production and developmental sectors.However,intensification demands increased inputs,such as fish and feed per unit culture area and,therefore,increased waste generation from the aquaculture production systems.The impact of waste products from aquaculture has increased public concern and threatens the sustainability of aquaculture practices.The need for increasing the production of aquaculture products cannot be overemphasized and,therefore,there is a need to develop culture systems that will increase fish production with efficient waste management in order to limit environmental degradation resulting from aquaculture wastes and ensure its sustainability.This paper reviewed various aspects of waste production from aquaculture,their sources,components,and methods of management,in different culture systems,primarily discussing waste production from feed,chemicals,and pathogens.We aimed to establish the sources of wastes,their contents,and potential harms to both the fish culture and the environment.Suggestions for managing wastes in different culture systems were made to ensure an improved and sustainable aquaculture production. | Akeem Babatunde Dauda Abdullateef Ajadi Adenike Susan Tola-Fabunmi Ayoola Olusegun Akinwole | 2019 | Aquaculture and Fisheries2019,4,3: | 19 |
| 2 | Protein Phosphorylation and Phosphoproteome:An Overview of Rice显示文摘Protein phosphorylation,one of the major post-translational modifications,plays a crucial role in cell signaling,DNA replication,gene expression and differentiation;and alters enzyme activity and other biological activities;and regulates cell proliferation and enlargement,phytohormone biosynthesis and signaling,plant disease resistance,and grain filling and quality during rice seed development.Research work on protein phosphorylation started in the 1950 s with the discovery of phosphorylase a and phosphorylase b which are phospho and dephospho forms of the same enzyme.Over the last decade,rice proteomics has accomplished tremendous progress in setting up techniques to proteome nearly all tissues,organs and organelles.The progress made in this field is evident in number of research works.However,research on rice protein phosphorylation is still at its infancy and there are still many unanswered questions.In this review,the general description of protein phosphorylation,including history,structure,frequency of occurrence and function,are discussed.This work also elucidates the different methods for identification,qualification and finally,the progress in rice phosphoproteome research and perspectives. | Abolore Adijat AJADI Amara CISSE Shakeel AHMAD WANG Yifeng SHU Yazhou LI Shufan LIU Xixi Babatunde Kazeem BELLO Sani Muhammad TAJO TONG Xiaohong ZHANG Jian | 2020 | Rice science2020,27,3: | 5 |
| 3 | WRKY72 Negatively Regulates Seed Germination Through Interfering Gibberellin Pathway in Rice显示文摘Seed germination is associated with grain yield and quality in crop production.Gibberellic acid(GA)serves as a major phytohormone in the promotion of seed germination.It is synthesized in the embryos and transmitted to the aleurone layers,where GA triggers the synthesis and secretion of a set of hydrolases,especiallyα-amylase.Subsequently,the storage nutrients such as starch in the endosperm are digested by these hydrolases and absorbed by the embryo to sustain seed germination and early seedling establishment(Kaneko et al,2002).The detailed GA biosynthesis process has been well studied and thoroughly reviewed in several literatures(Sakamoto et al,2004;Reinecke et al,2013).Briefly,geranylgeranyl diphosphate(GGDP)is turned into ent-kaurene by two terpene synthases,ent-copalyl diphosphate synthase(CPS)and ent-kaurene synthase(KS).Subsequently,the conversion of GA precursor ent-kaurene to ent-kaurenoic acid is catalyzed by ent-kaurene oxidase(KO),and that from ent-kaurenoic acid to GA12 is catalyzed by ent-kaurenoic acid oxidase(KAO).Ultimately,GA12 is converted to various GA intermediates and bioactive GAs by GA20-oxidase(GA20ox)and GA3-oxidase(GA3ox),respectively. | Wang Huimei Hou Yuxuan Wang Shuang Tong Xiaohong Tang Liqun Abolore Adijat Ajadi Zhang Jian Wang Yifeng | 2021 | Rice science2021,28,1: | 2 |
| 4 | Tramadol improved the efficacy of ketamine-xylazine anaesthesia in young pigs显示文摘 | Ajadi A R Olusa T A Smith O F Ajibola E S Adeleye O E Adenubi O T Makinde F A | | 0,,: | 1 |
| 5 | Evaluation of the phenoliccontents and antioxidant capacities of two Malaysian floral honeys显示文摘 | Ajadi A M Kamaruddin M Y | 2004 | Food Chemistry2004,85,2: | 1 |
| 6 | Tramadol improved the efficacy of ketamine-xylazine anaesthesia in young pigs显示文摘 | Ajadi AR Olusa T A Smith O F at al | 2009 | Vet Anaesth Analg2009,36,6: | 1 |
| 7 | Perception of Learners on Electronic Examination in Open and Distance Learning Institutions: A Case Study of National Open University of Nigeria显示文摘 | Olubiyi Adeniyi Adewale Timothy Olugbenga Ajadi Juliet O. Inegbedion | 2011 | US-China Education Review(A)2011,1,5X: | 0 |