[1] 高佳缘,孙伟,王春艳,等.利用水性可剥离保护膜防治李子褐腐病[J].黑龙江农业科学,2018(7):70-72.
GAO J Y,SUN W,WANG C Y,et al.Prevention test of root irrigation with different fungicides combinations on cabbage wilt[J].Heilongjiang Agricultural Sciences,2018(7):70-72.
[2] 梁建根,施跃峰,竺利红,等.植物病害生物防治的研究现状[J].现代农业科技,2008(18):158-159.
LIANG J G,SHI Y F,ZHU L H,et al.Research status of biological control of plant diseases[J].Modern Agricultural Science and Technology,2008(18):158-159.
[3] 杨芝霓,李其利,李芝义,等.热水处理对不同品种芒果采后病害的防治效果研究[J].安徽农业科学,2020,48(9):200-202.
YANG Z N,LI Q L,LI Z Y,et al.Study on the control effect of hot water treatment on postharvest diseases of different varieties of mango[J].Anhui Agricultural Sciences,2020,48(9):200-202.
[4] 孙思明,林羡,陈于陇,等.超声波清洗在柑橘采后病害防治的应用[J].食品科技,2018,43(2):45-50.
SUN S M,LIN X,CHEN Y L,et al.Application of ultrasonic cleaning in the control of citrus postharvest diseases[J].Food Science and Technology,2018,43(2):45-50.
[5] 孙思明.柑橘绿色涂膜保鲜技术的研究[D].长春:吉林农业大学,2018.
SUN S M.Reasearch on citrus green coating film fresh technology[D].Changchun:Jilin Agricultura University,2018.
[6] ZHANG X Y,GAO Z F,ZHANG X X,et al.Control effects of Bacillus siamensis G-3 volatile compounds on raspberry postharvest diseases caused by Botrytis cinerea and Rhizopus stolonifer[J].Biological Control,2020,141:104 135.
[7] SUPAPORN S,WEENUSSA E,TIDA D.A novel biological control agent against postharvest mango disease caused by Lasiodioplodia theobromae[J].European Journal of Plant Pathology,2019,155(2):583-592.
[8] 王智荣,梅小飞,杜木英,等.荧光假单胞菌ZX对采后锦橙绿霉病的防治及其抑菌机制[J].微生物学报,2019,59(5):950-964.
WANG Z R,MEI X F,DU M Y,et al.Biocontrol of green mold decay in Jincheng citrus fruits by Pseudomonas fluorescens ZX[J].Acta Microbiologica Sinica,2019,59(5):950-964.
[9] PAIVA E D E,SERRADILLA M J,RUIZ-MOYANO S,et al.Combined effect of antagonistic yeast and modified atmosphere to control Penicillium expansum infection in sweet cherries cv.Ambrunés[J].International Journal of Food Microbiology,2017,241:276-282.
[10] 张晓云,吴锋,顾香玉,等.控制桃果实采后病害拮抗酵母的筛选及其固体制剂的制备[J].食品科学,2020,41(14):210-216.
ZHANG X Y,WU F,GU X Y,et al.Selecting antagnogistic yeast for controlling postharvest disease of peaches solid preparation[J].Food Science,2020,41(14):210-216.
[11] 张红印,李万海,张晓云,等.一株控制柑橘和葡萄采后病害的盔形毕赤酵母:中国,CN201610225320.6[P].2016-08-17.[2020-04-27].
ZHANG H Y,LI W H,ZHANG X Y,et al.A Pichiamanshurica controls postharvest disease in citrus and grape.China,CN201610225320.6[P].2016-08-17.[2020-04-27].
[12] 田世平,产祝龙.诱导抗性在果蔬采后病害防治中的研究与应用[J].植物病理学报,2004,34(5):385-394.
TIAN S P,CHAN Z L.Potential of induced resistance in postharvest diseases control of fruits and vegetables[J].Acta Phytopathologica Sinica,2004,34(5):385-394.
[13] 张璐,张瑶,刘丽丹,等.膜醭毕赤酵母对草莓采后灰霉病抗病性的诱导[J].食品科学,2013,34(22):286-291.
ZHANG L,ZHANG Y,LIU L D,et al.Induction of disease resistance to gray mold by Pichia membranaefaciens in postharvest strawberryFruit[J].Food Science,2013,34(22):286-291.
[14] 来佳.罗伦隐球酵母对樱桃番茄果实的抗性诱导作用及其机理研究[D].杭州:浙江大学,2019.
LAI J.Effect of Croptococcus laurentii on inducing disease esistance in chery tomato fruit and the possible defense mechanisms involved[D].Hangzhou:Zhejiang University,2019.
[15] 夏启中,张明菊.植物抗病的物质代谢基础[J].黄冈职业技术学院学报,2004,6(3):38-41.
XIA Q Z,ZHANG M J.Metabolic Basis of plant-disease resistance[J].Journal of Huanggang Polvtechnic,2004,6(3):38-41.
[16] 顾敏.植物次生代谢在抗氧化胁迫和有机污染物毒害中的作用及调控机制[D].杭州:浙江大学,2010.
GU M.The role of plant secondary metabolism in the resistance to oxidative stresses and organic pollutants and regulation mechanism[D].Hangzhou:Zhejiang University,2010.
[17] 窦国霞,蒋春号,郭虹娜,等.葡萄汁有孢汉逊酵母对采后草莓灰霉病抗性诱导机理研究[J].园艺学报,2019,46(7):1 290-1 302.
DOU G X,JIANG C H,GUO H N,et al.Studies on the resistance induction of Hanseniaspora uvarum to postharvest gray mold in strawberry[J].Acta Horticultural Sinica,2019,46(7):1 290-1 302.
[18] ZHANG X Y,WU F,GU N,et al.Postharvest biological control of Rhizopus rot and the mechanisms involved in induced disease resistance of peaches by Pichia membranefaciens[J].Postharvest Biology and Technology,2020,163.
[19] 张婕.两种酵母拮抗菌对采后李果实褐腐病的生物防治效果及机理研究[D].重庆:西南大学,2017.
ZHANG J.Biocontrol efficacy and mechanism of two antagonistical yeasts against postharvest brown rot in pulm fruit[D].Chongqing:Southwest University,2017.
[20] CHEN O,YI L H,DENG L L,et al.Screening antagonistic yeasts against citrus green mold and the possible biocontrol mechanisms of Pichia galeiformis(BAF03)[J].Journal of the Science of Food and Agriculture,2020,155(2):3-7.
[21] 王友升,黄津津,王颖,等.一株拮抗酵母菌Pichia galeiformis及其制备与使用方法:中国,CN201711373886.4[P].2018-04-20.[2020-04-27].
WANG Y S,HANG J J,WANG Y,et al.Preparation and application method of antagonistic yeast Pichia galeiformis.China,CN201711373886.4[P].2018-04-20.[2020-04-27].
[22] ASSIS J S,MALDONADO R,MUNOZ T,et al.Effect of highcarbon dioxide concentration on PAL activity and phenolic contents inripening cherimoya fruit[J].Postharvest Biology &Technology,2001,23(1):33-39.
[23] 曹建康,姜微波,赵玉梅.果蔬采后生理生化实验指导[M].北京:中国轻工业出版社,2007:44-45.
CAO J K,JIANG W B,ZHAO Y M.Postharvest Physiological and Biochemical Laboratory Guidance for Fruits and Vegetables[M].Beijing:China Light Industry Press,2007:44-45.
[24] 范存斐,毕阳,王云飞,等.水杨酸对厚皮甜瓜采后病害及苯丙烷代谢的影响[J].中国农业科学,2012,45(3):584-589.
FAN C F,BI Y,WANG Y F,et al.Effect of salicylic acid dipping on postharvest diseases and phenylpropanoid pathway in muskmelon fruits[J].Scientia Agricultural Sinica,2012,45(3):584-589.
[25] LI G J,ZHU S H,WU W X,et al.Exogenous nitric oxide induces disease resistance against Monilinia fructicola through activating the phenylpropanoid pathway in peach fruit[J].Journal of the Science of Food and Agriculture,2016,97(9):17-21.
[26] DENG L L,ZENG K F,ZHOU Y H,et al.Effects of postharvest oligochitosan treatment on an thracnose disease in citrus (Citrus sinensis L.Osbeck) fruit[J].European Food Research and Technology,2015,240(4):795-804.
[27] LI H,SUO J T,HAN Y,et al.The effect of 1-methylcyclopropene,methyl jasmonate and methyl salicylate on lignin accumulation and gene expression in postharvest‘Xuxiang’kiwifruit during cold storage[J].Postharvest Biology and Technology,2017,124:107-118.
[28] MARTA M,CAMILLA M,MICHELA G,et al.两种普鲁兰类酵母菌株Aureobasidium pullulans对三种核果类褐腐病菌Monilinia laxa,Monilinia fructicola和Monilinia fructigena的生物控制作用[J].保鲜与加工,2012,12(70):61-62.
MARTA M,CAMILLA M,MICHELA G,et al.The biological control of two kinds of Pullulan yeast,Aureobasidium Pullulans,on Monilinia Laxa,Monilinia fructicola and Monilinia fructigena,three kinds of druid brown rot bacteria[J].Storage and Process,2012,12(70):61-62.
[29] ZHAO Y,LI Y F,YIN J J.Effects of hot air treatment in combination with Pichia guilliermondii on postharvest preservation of peach fruit[J].Journal of the science of food and agriculture,2019,99(2):111-114.
[30] SHAO Y Z,ZENG J K,TANG H,et al.The chemical treatments combined with antagonistic yeast control anthracnose and maintain the quality of postharvest mango fruit[J].Journal of Integrative Agriculture,2019,18(5):1 159-1 169.
[31] LIU X,GAO Y,YANG H Y,et al.Pichia kudriavzevii retards fungal decay by influencing the fungal community succession during cherry tomato fruit storage[J].Food Microbiology,2020,88:103 404.
[32] MAHUNU G K.Effect of bamboo leaf flavonoid and phytic acid on the control efficacy of Pichia Caribbica against Penicillium Expansum and Patulin Content in apple fruits[D].Zhenjiang:Jiangsu University,2016.
[33] ZHANG X M,ZONG Y Y,LI Z C,et al.Postharvest Pichia guilliermondii treatment promotes wound healing of apple fruits[J].Postharvest Biology and Technology,2020,167:111 228.
[34] 吴锋.膜醭毕赤酵母Y4对桃果采后软腐病的控制及其制剂化研究[D].镇江:江苏大学,2019.
WU F.Studies on the biological control of postharvest disease of peaches by Pichia membranaefaciens Y4 and the preparation of the yeast[D].Zhenjiang:Jiangsu University,2019.
[35] XU D D,DENG Y Z,XI P G,et al.Fulvic acid-induced disease resistance to Botrytis cinerea in table grapes may be mediated by regulating phenylpropanoid metabolism[J].Food chemistry,2019,286(15):226-233.
[36] 谢开珍,刘佳琪,任磊,等.甘薯苯丙烷类代谢及其酶基因研究进展[J].植物学研究,2019,8(4):355-365.
XIE K Z,LIU J Q,REN L,et al.Advances in phenylaprapanoid metabolism and its enzyme genes in sweet potato[J].Botanical Research,2019,8(4):355-365.
[37] ZHANG M Y,WANG D J,GAO X X,et al.Exogenous caffeic acid and epicatechin enhance resistance against Botrytis cinerea through activation of the phenylpropanoid pathway in apples[J].Scientia Horticulturae,2020,268.
[38] 田晓明,颜立红,向光锋,等.植物4香豆酸:辅酶A连接酶研究进展[J].生物技术通报,2017,33(4):19-26.
TIAN X M,YAN L H,XIANG G F,et al.Reseach progress on 4-coumarate:coenzyme A ligase(4CL)in plants[J].Biotechnology Bulletin,2017,33(4):19-26.
[39] 李莉,赵越,马君兰.苯丙氨酸代谢途径关键酶:PAL、C4H、4CL研究新进展[J].生物信息学,2007,17(4):45-47.
LI L,ZHAO Y,MA J L.Recent progress on key enzymes:PAL、C4H、4CL of phenylalanine metabolism pathway[J].China Journal of Bioinformatics,2007,17(4):45-47.
[40] 赵亚婷,朱璇,马玄,等.采前水杨酸处理对杏果实抗病性及苯丙烷代谢的诱导[J].食品科学,2015,36(2):216-220.
ZHAO Y T,ZHU X,MA X,et al.Induction of disease resistance anf phenylpropanoid metabolism in apricot fruits by pre-harvest salicylic acid treatment[J].Food Science,2015,36(2):216-220.
[41] 张培岭,白羽嘉,马玲,等.采后链格孢侵染对甜瓜果实苯丙烷代谢的影响[J].保鲜与加工,2018,18(6):1-6;12.
ZHANG P L,BAI Y J,MA L,et al.Effects of postharvest Alternaria alternate Infection on phenylpropanoid metabolim in muskmelon fruit[J].Storage and Process,2018,18(6):1-6;12.
[42] WANG B,JIANG H,BI Y,et al.Preharvest multiple sprays with sodium nitroprusside promote wound healing of harvested muskmelons by activation of phenylpropanoid metabolism[J].Postharvest Biology and Technology,2019,158:110 988.
[43] 周大祥,汪开拓,匡文玲,等.果糖处理对冷藏雷竹笋品质和木质化的影响及其调控机制[J].食品与发酵工业,2020,46(15):175-183.
ZHOU D X,WANG K T,KUANG W L,et al.Effects of fructose treatment on quality and lignification of bamboo shoots (Phyllostachys praecox)during cold storage and its regulation mode involved[J].Food and Fermentation Industries,2020,46(15):175-183.
[44] 周雅涵.水杨酸、膜醭毕赤酵母、壳寡糖诱导柑橘果实抗病性及其生物学机制研究[D].重庆:西南大学,2017.
ZHOU Y H.Salicylic acid,Pichia membranaefaciens and oligochitosan induced disease resistance of citrus fruit and possible biological mechanisms involved[D].Chongqing:Southwest University,2017.