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Impact of water potential on growth and germination of Fusarium solani soilborne pathogen of peanut

机译:水势对花生枯萎病菌生长和萌发的影响

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摘要

Studies were conducted to determine the effect of osmotic and matric stress on germination and growth of two Fusarium solani strains, the etiological agent responsible of peanut brown root rot. Both strains had similar osmotic and matric potential ranges that allowed growth, being the latter one narrower. F. solani showed the ability to grow down to −14 MPa at 25 °C in non-ionic modified osmotic medium, while under matric stress this was limited to −8.4 MPa at 25 °C. However, both strains were seen to respond differently to decreasing osmotic and matric potentials, during early stages of germination. One strain (RC 338) showed to be more sensitive to matric than osmotic (non ionic) and the other one (RC 386) showed to be more sensitive to osmotic than matric imposed water stress. After 24 h of incubation, both isolates behaved similarly. The minimum water potential for germination was −8.4 MPa on glycerol amended media and −5.6 MPa for NaCl and PEG amended media, respectively. The knowledge of the water potential range which allow mycelia growth and spore germination of F. solani provides an inside to the likely behaviour of this devastating soilborne plant pathogen in nature and has important practical implications.
机译:进行了研究以确定渗透和基质胁迫对两种镰刀镰刀菌(Fusarium solani)菌株的发芽和生长的影响,所述菌株是引起花生棕根腐烂的病原体。两种菌株都具有相似的渗透和基质潜能范围,可以生长,但后者较窄。 F. solani表现出在非离子改性渗透介质中在25°C时能够生长到-14 MPa的能力,而在基质应力下,在25°C时只能生长到-8.4 MPa。然而,在发芽的早期,两种菌株对降低的渗透压和基质势的反应不同。一种菌株(RC 338)显示出比渗透性(非离子性)对基质更敏感,另一种菌株(RC 386)显示出比基质施加水分胁迫对渗透性更敏感。温育24小时后,两个分离株表现相似。在甘油改性的培养基上,萌发的最小水势分别为-8.4 MPa和对于NaCl和PEG改性培养基为-5.6 MPa。水势范围的知识可以使茄形丝孢菌的菌丝体生长和孢子萌发,从而为这种毁灭性土壤传播植物病原体在自然界中的可能行为提供了一个内幕,并具有重要的实际意义。

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