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1. Preparation of dry flowable formulations of Clonostachys rosea by spray drying and application for Sclerotinia sclerotiorum control
WU Hong-qu, SUN Li-li, LIU Fang, Wang Zhi-ying, CAO Chuan-wang
Journal of Integrative Agriculture    2018, 17 (03): 613-620.   DOI: 10.1016/S2095-3119(17)61811-2
摘要713)      PDF    收藏
A dry flowable formulation of Clonostachys rosea with fungicidal activity against Sclerotinia sclerotiorum was prepared by spray drying.  The formulation was optimized by a four-factor, three-level orthogonal experiment to screen inert ingredients and spray-drying conditions.  The optimal dry flowable formulation of C. rosea included 30% C. rosea (ratio of conidia powder and its fermentation broth is 1:3), 3% Morwet EFW, 4% k12, 10% Morwet D425, 9% sodium salt of polynaphthalene sulphonic acid (NNO), 5% croscarmellose sodium, 5% (NH4)2SO4, 0.5% carboxymethyl cellulose sodium (CMC-Na), 1% oxalic acid and palygorskite (carrier) up to 100%.  The formulation exhibited good physical characteristics, such as high dispersibility, viability and a long shelf life.  Plate antagonism tests and pot trials indicated that the dry flowable formulation was very effective against S. sclerotiorum, with control efficiency of up to 88.30%.  This dry flowable formulation of C. rosea is a new potential commercial fungicide for spray drying to control S. sclerotiorum.  
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2. Expression of Chicken Toll-Like Receptors and Signal Adaptors in Spleen and Cecum of Young Chickens Infected with Eimeria tenella
ZHOU Zuo-yong, HU Shi-jun, WANG Zhi-ying, GUO Zhi-li, QIN Bo , NIE Kui
Journal of Integrative Agriculture    2014, 13 (4): 904-910.   DOI: 10.1016/S2095-3119(13)60384-6
摘要1945)      PDF    收藏
Toll-like receptors (TLRs) are a group of highly conserved molecules which initiate the innate immune response to pathogens by recognizing structural motifs of microbes. Understanding the changes in chicken Toll-like receptors (ChTLRs) and signal adaptors expression that occur with Eimeria tenella infection will help to elucidate the molecular basis of immune control of coccidiosis caused by Eimeria. The present study detected the dynamic changes in the expression of ChTLRs and associated signal adaptors in the spleen and cecum of E. tenella-infected chickens during the early stage of infection. The results showed that the expression peak for ChTLRs, MyD88 and TRIF occurred at 12 h post-infection (hpi), ChTLR3, ChTLR15 and MyD88 mRNA expression in the spleen of E. tenella infected chickens were significantly higher (P<0.05) than that of negative control chickens, and there were similar tendencies of these molecules expression in the cecum and spleen of E. tenella-infected chickens. The expression of MyD88 was upregulated at four time points in the cecum of E. tenella-infected chickens. The results of this study indicate that ChTLR3, ChTLR15 and MyD88 play a role in young chickens infected with E. tenella.
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