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30篇 您的检索式:作者名="SCHISLER J"
    题名 作者 年代 出处 被引量
1Co-culture of yeast antagonists of Fusariumhead blight andtheir effect on disease development in wheat显示文摘Schisler D A Slininger P J Boehm M J 2011PlantPathology Journal2011,10,4:1
2Field testing of antagonists of Fusarium head blight incited by Gibberella zeae显示文摘KHAN N I SCHISLER D A BOEHM M J 2004Biol Control2004,29,2:1
3Greenhouse and field evaluation of biological control of Fusarium head blight on durum wheat显示文摘SCHISLER D A BOEHM M J SLININGER P J 2002Plant Disease2002,86,11:1
4Seek and destroy: the ubiquitin proteasome system in cardiac disease显示文摘Rodrlguez J E Schisler J C Patterson C 2009Curr Hypertens Rep2009,11,6:1
5Regulation of AMPK by the ubiquitin proteasome system显示文摘Zungu M Schisler J Essop M 0,,:1
6Regulation of mitochondrial fusion and fission by ubiquitin and small ubiquitin-like modifer and their potential relevance in the heart 显示文摘Zungu M Schisler J WiUis MS 2011Cite J2011,75,11:1
7Microbial Selection Strategies that Enhance the Likelihood of Developing Commercial Biological Control Products 显示文摘Schisler D A Slininger P J 1997Joural of Indusrial Microbiology & Biotechnology1997,19,:1
8Preparation on the basis of Trichoderma asperellum in the system of biological protection of wheat from Fusarium ear scab显示文摘During the last century, as the area of wheat grown under advanced grain husbandry has increased worldwide, so too has the importance of Fusarium ear scab (FES) (synonym, Fusarium head blight) caused by several species of the fungus Fusarium. Yield losses due to FES can total 20%-40% and more depending on climatic conditions. During the last twenty years epidemics of FES in cereals have become chronic all over the world, including the United States and Russia. The most destructive of these were observed in 1982, 1986, 1990-1996 in USA and in the south of Russia in 1982, 1984, 1988, 1992. The harmful effect of FES is manifested not only in reduced grain yields, but also in the contamination of grains and grain products with mycotoxins, such as deoxynivalenol (DON) and its derivatives (3-alfa acetyl-DON, 15-alfa acetyl-DON), T-2 toxin and zearalenone. Standard means to control FES (cultural control methodologies, chemical pesticides, and FES resistant varieties) have little effect or are not practical and rarely reduce the accumulation of mycotoxins in grain. We have developed a new technique to reduce FES using biological preparations. The technique utilizes wheat seed pretreatment with a biofungicide “Mycol” in combination with spraying wheat plants during flowering with a yeast preparation. Technology for production of Mycol on the basis of Trichoderma asperellum strain GJS 03-35 (systematics by Samuels) has been developed. This strain shows hyperparasitic activity against a wide spectrum of plant pathogens, including Fusarium graminearum, a causative agent of FES in wheat. Experiments conducted in the United States demonstrated that spraying wheat plants during flowering with the patented yeast Cryptococcus nodaensis OH 182.9 (NRRL Y-30216) reliably reduces FES development. Tests of the Mycol preparation and the yeast OH 182.9 (EOD) have been performed on the spring wheat “Ivolga” in greenhouse conditions (the Moscow region) and on the winter wheat “Kupava” in field trials in the North Caucasian region. An isolate of F. graminearum was used to insure adequate levels of disease development in greenhouse and field experiments. FES disease severity and incidence, as well as mycotoxin accumulation in wheat grains was studied for single or combination treatments with the biological preparations. Mycol (in concentrations 0.1, 0.5, 1.0, 2.0 kg/t of seeds) was used for wheat seed pretreatment. The yeast preparation EOD (2.0×107 cfu/mL) was applied by spraying wheat plants during flowering. Chemical pesticides (Raxyl, TMTD) and a biological preparation Agat-25K were used as alternative control seed treatments. In greenhouse experiments, inoculations of heads with either biological preparation 4 h prior to inoculation with conidia of F. graminearum significantly reduced FES severity. Application with Mycol reduced DON in wheat grains by 6 to 11 fold. EOD alone or, to a lesser extent, in combination was also highly effective in reducing DON content. For treatments consisting of Mycol and EOD, 1000 grain weights were equivalent or higher than for control plants (both infected, and not infected). Wheat seeds obtained from the plants protected by these biological preparations germinated rapidly and possessed high germination rates compared to the FES control. In field trials, Mycol treatments clearly reduced FES symptoms, apparently providing an immunizing effect against FES. Mycol reduced FES severity and enhanced yield of the wheat varieties used. The effect of Mycol used at a minimum test-dose (0.1 kg/t) was not so pronounced. The greatest reduction of FES development was observed at a dose of Mycol of 1.0 kg per 1 t of seeds used in combination with EOD spraying. Experimental results support the contention that the offered technology has good prospects in controlling wheat Fusarium ear scab.Kolombet L V Sokolov M S Chuprina V P Schisler D A Samuels G J 2004浙江大学学报(农业与生命科学版)2004,30,4:1
9Regulation of mitochondrial fusion and fission by ubiquitin and small uhiquitin-like m~wlifer and their potential relevance in the heart 显示文摘ZUNGU M SCHISLER J WILLIS MS 2011C ire J2011,75,11:1
10Biological control of post-harvest late blight of potatoes显示文摘Slininger P J Schisler D A Ericsson L D 2007Biocontrol Science and Technology2007,17,56:1
11Greenhouse and field evaluation of biological control of Fusarium head blight of durum wheat 显示文摘SCHISLER D A BOEHM M J SLININGER P J 2002Plant Disease2002,86,11:1
12ClpB in a cyanobacterium:predicted structure,phylogenetic relationships,and regulation by light and temperature显示文摘Celerin M Gilpin A A Schisler N J Ivanov A G Miskiewicz E Krol M Laudenbach D E 1998Journal of Bacteriology1998,180,19:1
13Selection of biocontrol agents of pink rot based on efficacy and growth kinetics index rankings显示文摘Adiyaman T Slininger P J Schisler D A 2011PlantDisease2011,95,1:1
14Field testing of antagonists of Fusarium head blight incited by Gib- berella zeae 显示文摘Khan N I Schisler D A Boehm M J 2004Biological Control2004,,29:1
15Influence of nutrition during conidiation of Colletotrichum truncaturn on conidial germination and efficacy in inciting disease in Sesbania exaltata 显示文摘Schisler D A Jackson M A Bothast R J 1991Phytopathology1991,81,:1
16Cardiac muscle ring finger-1 increases susceptibility to heart failure in vivo 显示文摘Willis M S Schisler J C Li L 2009Cire Res2009,105,1:1
17Modulation of selenium-dependent glutathione peroxidase (Se-GSH-Px) activity in mice显示文摘SCHISLER N J SINGH S M 1988Free Radical Biology and Medicine1988,4,3:1
18Polysaccharide production benefits dry storage survival of the biocontrol agent Pseudomonas fluorescens S11: P: 12 effective against several maladies of stored potatoes 显示文摘SLININGER P J DUNLAP C A SCHISLER D A 2010Biocontrol Sci Technol2010,20,3:1
19Trefoil factor 3 stimulates human and rodent pancreatic islet beta-cell replica-tion with retention of function显示文摘FUEGER P T SCHISLER J C LU D 2008Mol Endocrinol2008,22,5:1
20Isolation, identification, and accumulation of 2-acetamidophenol in liquid cultures of the wheat take-all biocontrol agent Pseudomonas fluorescens 2-79显示文摘Slininger P J Burkhead K D Schisler D A 2000Applied Microbiology and Biotechnology2000,54,3:1
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