首页> 美国卫生研究院文献>Journal of Nematology >Effect of Initial Nematode Population Density on the Interaction of Pratylenchus penetrans and Verticillium dahliae on Russet Burbank Potato
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Effect of Initial Nematode Population Density on the Interaction of Pratylenchus penetrans and Verticillium dahliae on Russet Burbank Potato

机译:初始线虫种群密度对Pustylenchus penetrans和黄萎病菌在 Russet Burbank马铃薯上相互作用的影响

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摘要

Four similar growth chamber experiments were conducted to test the hypothesis that the initial population density (Pi) of Pratylenchus penetrans influences the severity of interactive effects of P. penetrans and Verticillium dahliae on shoot growth, photosynthesis, and tuber yield of Russet Burbank potato. In each experiment, three population densities of P. penetrans with and without concomitant inoculation with V. dahliae were compared with nematode-free controls. The three specific Pi of JR penetrans tested varied from experiment to experiment but fell in the ranges 0.8-2.5, 1.8-3.9, 2.1-8.8, and 7.5-32.4 nematodes/cm³ soil. Inoculum of V. dahliaewas mixed into soil, and the assayed density was 5.4 propagules/gram dry soil. Plants were grown 60 to 80 days in a controlled environment. Plant growth parameters in two experiments indicated significant interactions between P. penetrans and V. dahliae. In the absence of V. dahliae, P. penetrans did not reduce plant growth and tuber yield below that of the nematode-free control or did so only at the highest one or two population densities tested. In the presence of K dahliae, the lowest population density significantly reduced shoot weight and photosynthesis in three and four experiments, respectively. Higher densities had no additional effect on shoot weight and caused additional reductions in photosynthesis in only one experiment. Population densities of 0.8 and 7.5 nematodes/cm³ soil reduced tuber yield by 51% and 45%, whereas higher densities had no effect or a 15% additional effect, respectively. These data indicate that interactive effects between P. penetrans and V. dahliae on Russet Burbank potato are manifested at P. penetrans population densities less than 1 nematode/cm³ soil and that the nematode population density must be substantially higher before additional effects are apparent.
机译:进行了四个类似的生长室实验,以检验以下假设:Pratylenchus penetrans的初始种群密度(Pi)影响P. penetrans和黄萎病菌对Russet Burbank马铃薯的芽生长,光合作用和块茎产量的相互作用的严重性。在每个实验中,将有和没有同时接种大丽花假单胞菌的三种P.penetrans种群密度与无线虫对照进行了比较。 JR Penetrans的三个特定Pi随实验的不同而不同,但都落在0.8-2.5、1.8-3.9、2.1-8.8和7.5-32.4线虫/cm³土壤范围内。大黄弧菌的接种物混入土壤中,测定密度为5.4繁殖体/克干土。使植物在受控环境中生长60至80天。在两个实验中的植物生长参数表明P. penetrans和V. dahliae之间存在显着的相互作用。在没有大丽花弧菌的情况下,P.penetrans不能将植物生长和块茎产量降低到无线虫对照之下,或者只有在测试的最高一个或两个种群密度下才如此。在存在大丽花科的情况下,最低的种群密度分别在三个和四个实验中显着降低了苗重和光合作用。仅在一个实验中,较高的密度对苗重没有其他影响,并且导致光合作用的进一步降低。密度为0.8和7.5线虫/ cm 3的土壤使块茎产量降低了51%和45%,而更高的密度分别无影响或有15%的附加影响。这些数据表明,P。penetrans和V. dahliae之间对Russet Burbank马铃薯的交互作用表现为P. penetrans种群密度小于1线虫/cm³土壤,线虫的种群密度必须显着更高,然后才能显现其他效应。

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