Inhibition of conidium germination and mycelial growth of Botrytis cinerea by natural products

被引:0
|
作者
Antonov, A
Stewart, A
Walter, M
机构
来源
PROCEEDINGS OF THE FIFTIETH NEW ZEALAND PLANT PROTECTION CONFERENCE | 1997年
关键词
Botrytis cinerea; 6-PAP; thyme oil; clove oil;
D O I
暂无
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Using in vitro tests, 21 oil extracts were assessed at 0.1. 1.0 and 10% concentrations for effects on conidium germination, germtube elongation and mycelial growth in Botrytis cinerea. Reduction (P less than or equal to 0.05) of conidium germination and germtube length was achieved at 0.1% concentration with extracts of thyme R (Thymus capitatus) (100% and 100% respectively), clove (Syzygium aromaticum) (67% and 93% respectively) and Australian minttree (Prostanthera rotundifolia) (65% and 65% respectively). Thyme R oil and Trichoderma harzianum metabolites 6-pentyl-alpha-pyrone (6-PAP) and a 6-PAP derivative, gave the greatest inhibition of mycelial growth of the extracts tested at 10% concentration.
引用
收藏
页码:159 / 164
页数:6
相关论文
共 50 条
  • [31] Inhibition of Botrytis cinerea infection on tomato leaves by submicronization of penthiopyrad particles
    Hoshino, Mika
    Matsumoto, Ichikatsu
    Nomura, Toshiyuki
    COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2024, 702
  • [32] Homobotcinolide: A biologically active natural homolog of botcinolide from Botrytis cinerea
    Cutler, HG
    Parker, SR
    Ross, SA
    Crumley, FG
    Schreiner, PR
    BIOSCIENCE BIOTECHNOLOGY AND BIOCHEMISTRY, 1996, 60 (04) : 656 - 658
  • [33] Yeasts reduce the stimulatory effect of acetate esters from apple on the germination of Botrytis cinerea conidia
    Filonow, AB
    JOURNAL OF CHEMICAL ECOLOGY, 1999, 25 (07) : 1555 - 1565
  • [34] Botrytis cinerea Airborne Conidia and Their Germination Ability Assessed by Immunological Methods in a NW Spain Vineyard
    Gonzalez-Fernandez, Estefania
    Kennedy, Roy
    Osborn, Rachel
    Fernandez-Gonzalez, Maria
    Javier Rodriguez-Rajo, Francisco
    AGRONOMY-BASEL, 2021, 11 (07):
  • [35] Modeling Botrytis cinerea spores growth in carbon dioxide enriched atmospheres
    García-Gimeno, RM
    Sanz-Martínez, C
    García-Martos, JM
    Zurera-Cosano, G
    JOURNAL OF FOOD SCIENCE, 2002, 67 (05) : 1904 - 1907
  • [36] SELECTIVE MODE OF ACTION OF CUCURBITACIN IN THE INHIBITION OF LACCASE FORMATION IN BOTRYTIS-CINEREA
    VITERBO, A
    STAPLES, RC
    YAGEN, B
    MAYER, AM
    PHYTOCHEMISTRY, 1994, 35 (05) : 1137 - 1142
  • [37] Inhibition effect of Botrytis cinerea and quality preservation of grape by Bletilla striata polysaccharide
    Li, Da
    Zheng, Yanli
    Han, Xuemei
    Ji, Haiyu
    Su, Xiaoxiang
    Yuan, Zhou
    Yang, Kejing
    Jia, Xiaoyu
    PHYSIOLOGICAL AND MOLECULAR PLANT PATHOLOGY, 2025, 136
  • [38] Studies on application of beta-1,3 glucanase in the degradation of glucans produced by Botrytis cinerea and inhibition of fungal growth
    Jadhav, Swati B.
    Gupta, Anil
    BIOCATALYSIS AND AGRICULTURAL BIOTECHNOLOGY, 2016, 7 : 45 - 47
  • [39] Antifungal effectiveness of fungicide and peroxyacetic acid mixture on the growth of Botrytis cinerea
    Ayoub, Fatima
    Ben Oujji, Najwa
    Chebli, Bouchra
    Ayoub, Mohamed
    Hafidi, Athman
    Salghi, Rachid
    Jodeh, Shehdeh
    MICROBIAL PATHOGENESIS, 2017, 105 : 74 - 80
  • [40] Botrytis cinerea chitin synthase BcChsVI is required for normal growth and pathogenicity
    Cui, Zhifeng
    Wang, Yanhua
    Lei, Na
    Wang, Kun
    Zhu, Tingheng
    CURRENT GENETICS, 2013, 59 (03) : 119 - 128