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附生冰核(冰)假单胞菌菌株与非冰核生物防治剂的生态相似性与共存。

Ecological Similarity and Coexistence of Epiphytic Ice-Nucleating (Ice) Pseudomonas syringae Strains and a Non-Ice-Nucleating (Ice) Biological Control Agent.

机构信息

Department of Environmental Science, Policy and Management, Division of Entomology.

出版信息

Appl Environ Microbiol. 1994 Sep;60(9):3128-37. doi: 10.1128/aem.60.9.3128-3137.1994.

Abstract

De Wit replacement series were used to study competitive interactions between epiphytic IcePseudomonas syringae strains and the biological frost control agents IceP. syringae TLP2del1 and Pseudomonas fluorescens A506. Mixtures containing two strains in different proportions but at a constant total population size were inoculated onto potato leaves. The population sizes of each strain and the total population size were determined when the community had reached equilibrium. A near-isogenic P. syringae strain pair exhibited an interaction similar to that expected for strains competing equally for limiting environmental resources. Replacement series with nonisogenic Ice and IceP. syringae strain pairs suggested that these strains competed for limiting resources according to their relative competitive abilities. There was no evidence of any niche differentiation between the IceP. syringae strains and the IceP. syringae strain. The growth responses of epiphytes following addition of nutrients to the phyllosphere indicated that the epiphytic P. syringae populations were nutrient limited and that, under growth chamber conditions, the populations were more limited by the availability of carbon than by the availability of nitrogen. Determination of in vitro carbon source utilization profiles provided further evidence for the lack of niche differentiation between the Ice and the IceP. syringae strains. Niche overlap indices calculated for the IceP. syringae strains with respect to IceP. syringae TLP2del1 were uniformly high, indicating ecological similarity, and were consistent with the observed low level of coexistence. The biological frost control agent P. fluorescens A506 replaced P. syringae. This was correlated with a high degree of niche overlap between these species.

摘要

德维特替代系列被用来研究附生冰假单胞菌菌株与生物霜霉控制剂冰假单胞菌 TLP2del1 和荧光假单胞菌 A506 之间的竞争相互作用。将含有两种不同比例但总种群大小保持不变的菌株的混合物接种到马铃薯叶片上。当群落达到平衡时,确定每种菌株的种群大小和总种群大小。一对近等基因的假单胞菌菌株表现出与预期的两种菌株平等竞争有限环境资源的相互作用相似。用非同源的冰假单胞菌和冰假单胞菌菌株对进行替代系列实验表明,这些菌株根据其相对竞争能力竞争有限的资源。冰假单胞菌菌株之间没有证据表明存在任何生态位分化。向叶际添加营养物质后,附生菌的生长反应表明,附生菌种群受到营养限制,并且在生长室条件下,种群受到碳供应的限制甚于氮供应的限制。体外碳源利用谱的测定进一步证明了冰假单胞菌和冰假单胞菌菌株之间缺乏生态位分化。对冰假单胞菌菌株相对于冰假单胞菌 TLP2del1 的生态位重叠指数进行计算,结果均较高,表明生态相似性,并且与观察到的低度共存一致。生物霜霉控制剂荧光假单胞菌 A506 取代了假单胞菌。这与这两个物种之间高度的生态位重叠相关。

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