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23篇 您的检索式:作者名="Sariah"
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1Induction of Tolerance to Fusarium Wilt and Defense-Related Mechanisms in the Plantlets of Susceptible Berangan Banana Pre-Inoculated with Pseudomonas sp.(UPMP3) and Burkholderia sp.(UPMB3)显示文摘This study is aimed at assessing the ability of two endophytic bacteria originally isolated from healthy oil palm roots,Pseudomonas sp.(UPMP3) and Burkholderia sp.(UPMB3) to induce resistance in susceptible Berangan banana against Fusarium oxysporum race 4(FocR4).Increased accumulation of resistance-related enzymes such as peroxidase(PO),phenylalanine ammonia lyase(PAL),lignithioglycolic acid(LTGA),and pathogenesis-related(PR) proteins(chitinase and β-1,3-glucanase) has been observed in plantlets treated with endophytic bacteria UPMP3 and UPMB3 singly or as mixture under glasshouse conditions.Pre-inoculation of banana plantlets with UPMP3 showed a significant reduction in Fusarium wilt incidence 72 d after challenged inoculation with FocR4.UPMB3 was less effective in suppressing Fusarium wilt compared to UPMP3,whereas,the mixture of both endophytes showed an intermediate effect.Based on these results,it is concluded that UPMP3 could be a promising biological control agent that can trigger resistance against Fusarium wilt in susceptible Berangan banana.Elya Masya Mohd Fishal Sariah Meon Wong Mui Yun 2010Agricultural Sciences in China2010,9,8:15
2Bioassay method for testing Fusarium wilt disease tolerance in transgenic banana显示文摘SREERAMANAN S MAZIAH M SARIAH C 2006Scientia Horticulturae2006,108,:1
3Bioassay method for testing Fusarium wilt disease tolerance in transgenic ba- nana 显示文摘SUBRAMANIAM S MAZIAH M SARIAH M 2006Scientia Horticulturae2006,108,4:1
4Bioplastic classifications and innovations in antibacterial,antifungal,and antioxidant applications显示文摘Conventional plastics exacerbate climate change by generating substantial amounts of greenhouse gases and solid wastes throughout their lifecycle.To address the environmental and economic challenges associated with petroleum-based plastics,bioplastics have emerged as a viable alternative.Bioplastics are a type of plastic that are either biobased,biodegradable,or both.Due to their biodegradability and renewability,bioplastics are established as earth-friendly materials that can replace nonrenewable plastics.However,early bioplastic development has been hindered by higher production costs and inferior mechanical and barrier properties compared to conventional plastics.Nevertheless,studies have shown that the addition of additives and fillers can enhance bioplastic properties.Recent advancements in bioplastics have incorporated special additives like antibacterial,antifungal,and antioxidant agents,offering added values and unique properties for specific applications in various sectors.For instance,integrating antibacterial additives into bioplastics enables the creation of active food packaging,extending the shelf-life of food by inhibiting spoilage-causing bacteria and microorganisms.Moreover,bioplastics with antioxidant additives can be applied in wound dressings,accelerating wound healing by preventing oxidative damage to cells and tissues.These innovative bioplastic developments offer promising opportunities for developing sustainable and practical solutions in various fields.Within this review are two main focuses:an outline of the bioplastic classifications to understand how they fit in as the coveted conventional plastics substitute and an overview of the recent bioplastic innovations in the antibacterial,antifungal,and antioxidant applications.We cover the use of different polymers and additives,presenting the findings and potential applications within the last decade.Although current research primarily focuses on food packaging and biomedicine,the exploration of bioplastics with specialized properties is still in its early stages,offering a wide range of undiscovered opportunities.Sariah Abang Farrah Wong Rosalam Sarbatly Jamilah Sariau Rubiyah Baini Normah Awang Besar 2023Journal of Bioresources and Bioproducts2023,8,4:1
5Field per- formanee of bio-primed seeds to suppress Colletotri- chum truncatum causing damping-off and seedling stand of soybean 显示文摘Begum M M Sariah M Puteh A B 2010Biological Control2010,53,1:1
6Toxicity of targeted therapy: Implications for response and impact of genetic polymorphisms显示文摘Sariah Liu Razelle Kurzrock 2014Cancer Treatment Reviews2014,,7:1
7Risk and protective factors for relapse among Individuals with schizophrenia:A Qualitative study in Dar es Salaam, Tanzania 显示文摘Sariah AE Outwater AH Malima KI 2014BMC Psychiatry2014,30,14:1
8Endophytic microorganisms as potential growth promoters of banana显示文摘Adeline S. Y. Ting Sariah Meon Jugah Kadir Son Radu Gurmit Singh 2008BioControl2008,,3:1
9Bioassay method for testing Fusarium wilt disease tolerance in transgenic banana显示文摘Sreeramanan Subramaniam M. Maziah M. Sariah M.P. Puad R. Xavier 2006Scientia Horticulturae2006,,4:1
10Bio-efficacy of microbial-fortified rice straw compost on rice blast disease severity, growth and yield of aerobic rice显示文摘Ng L C Sariah M Sariam O 2012Australasian Plant Pathology2012,41,5:1
11Bioassay method for testing Fusarium wilt disease tolerance in transgenic banana 显示文摘Subramaniam S Maziah M Sariah M 2006Scientia Horticulturae2006,108,:1
12Field performance of bio- primed seeds to suppress causing damping- off and seeding stand of soybean 显示文摘Begum M M Sariah M Puteh A B 2010Biological Control2010,53,1:1
13The role of hydrophobic amino acid grafts in the enhancement of membrane-disruptive activity of pH-responsive pseudo-peptides显示文摘Rongjun Chen Sariah Khormaee Mark E. Eccleston Nigel K.H. Slater 2008Biomaterials2008,,10:1
14Optimizing the tih angle of solar collectors 显示文摘ADNAN SARIAH MALI ALAKHRAS I A ALOMARI 2002Renewable Energy2002,26,4:1
15Effect of Seed Bacterization on Plant Growth Response and Induction of Disease Resistance in Chilli显示文摘This study aimed to examine the induction of disease resistance,and growth response in chilli plants elicited by plant growth promoting endophytic bacteria [Pseudomonas aeruginosa (UPMP3),Burkholderia cepacia (UPMB3),and Serratia marcescens (UPMS3)]. Seed bacterization with UPMP3 and UPMB3 significantly increased peroxidase (PO),polyphenol oxidase (PPO),and phenylalanine ammonia-lyase (PAL) activities. This increase corresponded to greater reduction in pre-and post-emergence damping-off caused by Sclerotium rolfsii. UPMS3 alone or as mixture with UPMP3 and UPMB3 did not show any significant reduction in disease incidence. However,all the isolates tested did not inhibit the seed germination and seedling establishment in chilli.Yasmeen Siddiqui Sariah Meon 2009Agricultural Sciences in China2009,8,8:1
16Expression of rice thaumatin-like protein gene in transgenic banana plants enhancesresistance to fusarium wilt 显示文摘Mahdavi F Sariah M Maziah M 2012Appl Biochem Biotechnol2012,166,4:1
17Endophytic microorganisms as potential growth promoters of banana显示文摘Adeline S. Y. Ting Sariah Meon Jugah Kadir Son Radu Gurmit Singh 0,,:1
18Isolation and screening of potential aetinobacteria for rapid composting of rice straw显示文摘Kausar H Sariah M Saud H M M 2011Biodegradation2011,22,2:1
19Optimizing the Tilt Angle of Solar Collectors显示文摘Sariah Adnan A1-Akhras M-All A1-Omari I A 2002Renewable Energy2002,26,:1
20First report of Pseudoperonospora cubensis causing downy mildew of Trichosanthes cucumerina in Malaysia显示文摘Salti M Wong M Y Sariah M 2010Plant Disease2010,94,5:1
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