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                  โครงการหนังสออเล็กทรอนกสด้านการเกษตร เฉลมพระเกียรตพระบาทสมเด็จพระเจ้าอยู่หัว
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                Opulente DA, LangdonQK, BuhKV, Haase MAB, Sylvester K, Moriarty RV, Jarzyna M, Considine SL,


                    Schneider RM, Hittinger CT. Pathogenic budding yeasts isolated outside of clinical settings. FEMS

                    Yeast Res. 2019;19,foz032;doi.org/10.1093/femsy r/foz03 2

                Pandin C, Le Coq D, Canette A, Aymerich S, Briandet R. Should the biofilm mode of life be taken
                    into consideration for microbial biocontrol agents? Microb Biotechnol. 2017; 10(4):719–734.          บทที่ 1

                Petronella HM, Kenneth BD, Genevieve CB. Time-Course RNAseq reveals Exserohilum turcicum effectors

                    and pathogenicity determinants. Front Microbiol. 2020;doi.org/10.3389/ fmicb.2020.00360

                Pimenta RS, Morais PB, Rosa CA, Corrêa A. Utilization of yeasts in biological control programs. In:

                    Satyanarayana T, Kunze G, editors. Yeast Biotechnology: Diversity and applications. Dordrecht:
                    Springer; 2009. p. 199-214.

                Ponsone ML, Nally MC, Chiotta ML, Combina M, Köhl J, Chulze SN. Evaluation of the effectiveness of

                    potential biocontrol yeasts against black surrot and ochratoxin A occurring under greenhouse and

                    field grape production conditions. Biol Control. 2016;103:78–85.

                Prathuangwong S,  D  Athinuwat, W  Chuaboon, T  Chatnaparat and  N  Buensanteai. Bioformulation
                   Pseudomonas fluorescens SP007s against dirty panicle disease of rice. Afr J Microbiol Res. 2013;

                   7(47):5274–5283.

                Pretscher J, Fischkal T, Branscheidt S, Lucas Jäger ID, Kahl S, Schlander M, Thines E, Claus H. Yeasts

                    from different habitats and their potential as biocontrol agents. Fermentation. 2018;4:31;doi:10.
                    3390/fermentation4020031

                Qin G, Tian S, Xu Y, Wan Y. Enhancement of biocontrol efficacy of antagonistic yeasts by salicylic acid

                    in sweet cherry fruit. Physiol Mol Plant Pathol. 2003;62:147–154

                Qin X, Xiao H, Xue C, Yu Z, Yang R, Cai Z, Sia L. Biocontrol of gray mold in grapes with the yeast
                    Hanseniaspora  uvarum  alone  and  in  combination  with  salicylic  acid  or  sodium  bicarbonate.

                    Postharvest Biol Technol. 2015;100:160–167.

                Rahman SFS Ab, Singh E, Pieterse CMJ, Schenk PM. Emerging microbial biocontrol strategies for plant

                    pathogens. Plant Sci. 2018;267:102–111.

                Reyes MEQ, KG Rohrbach and RE Paull. Microbial antagonists control postharvest black rot of pineapple
                    fruit. Postharvest Biol Technol. 2004;33:193–203.

                Robert V, Cardinali G, Casadevall A. Distribution and impact of yeast thermal tolerance permissive for

                    mammalian infection. BMC Biol. 2015;13:18;doi.org/10.1186/s1291 5-015-0127-3

                Romanazzi G, Sanzani SM, Bi Y, Tian S, Gutiérrez Martínez P, Alkan N. Induced resistance to control

                    postharvest decay of fruit and vegetables. Postharvest Biol Technol. 2016;122: 82–94.




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