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Effects of equilibrium relative humidity on in vitro growth of Botrytis cinerea and Alternaria alternata

机译:平衡相对湿度对灰葡萄孢和链格孢菌体外生长的影响

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摘要

Mycelial growth in vitro of 2 fungal pathogens responsible for postharvest loss of horticulture produce, Botrytis cinerea and Alternaria alternata, was related to equilibrium relative humidity (e.r.h) at ambient temperature (20¦C) using solutes to adjust the 'osmotic water potential' of the growth medium. Colony diameter growth of B. cinerea and A. alternata on solid medium (1/2 potato dextrose agar) was initially stimulated slightly when the e.r.h. was decreased from 99.7 (unamended medium) to 99.3% (-0.4 to -1.0 MPa). Thereafter, colony diameter growth continually decreased as a function of reducing e.r.h. over the range 99.3-94.3% e.r.h. (-1.0 to -8.0 MPa). Similar trends were recorded with both pathogens for their dry matter growth in liquid medium (Oxoid Czapek Dox) as a function of osmotic potential. Initial stimulation of dry matter growth at -1.0 MPa (equivalent to 99.3% e.r.h.) was not evident in liquid medium. Fungal growth data suggest that postharvest mycelial growth of Botrytis cinerea and Alternaria alternata on wounds, senescing tissue or secretions such as cell sap or nectar could be restricted through control of e.r.h. in packages of horticulture produce.
机译:两种导致园艺后生产损失的真菌病原体灰葡萄孢和链格孢的体外菌丝生长与环境温度(20μC)时的平衡相对湿度(erh)有关,使用溶质调节溶质的``渗透水势''。生长培养基。当e.r.h.时,刚开始刺激了灰质双歧杆菌和交链孢霉在固体培养基(1/2马铃薯葡萄糖琼脂)上菌落直径的增长。压力从99.7(非推荐介质)降至99.3%(-0.4至-1.0 MPa)。此后,菌落直径的增长随e.r.h的降低而连续降低。超出99.3-94.3%e.r.h. (-1.0至-8.0 MPa)。两种病原体在液体培养基(Oxoid Czapek Dox)中的干物质生长随渗透势的变化也记录了相似的趋势。在液体培养基中,没有明显刺激到干物质在-1.0 MPa(相当于e.r.h.的99.3%)的生长。真菌生长数据表明,可通过控制e.r.h来限制灰葡萄孢和灰链霉菌在伤口,感觉组织或分泌物(例如细胞液或花蜜)的收获后菌丝体生长。在园艺产品包装中。

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  • 来源
    《Animal Production Science》 |1996年第3期|p.383-388|共6页
  • 作者单位

    A CSIRO Division of Horticulture, 306 Carmody Road, St Lucia, Qld 4067, Australia.B Horticulture Section, Department of Plant Production, The University of Queensland, Gatton College, Lawes,Qld 4343, Australia.C Present address: Department of Biochemistry, The University of Queensland, Brisbane, Qld 4072, Australia.D Present address: Department of Plant Production, The University of Queensland, Gatton College, Lawes, Qld 4343, Australia;

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  • 入库时间 2022-08-17 13:41:06

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