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Soybean Photosynthesis and Yield as Influenced by Heterodera glycines SoilType and Irrigation

机译:杂草甘氨酸土壤对大豆光合作用和产量的影响类型和灌溉

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摘要

The effects of soil types and soil water matric pressure on the Heterodera glycines-Glycine max interaction were examined in microplots in 1988 and 1989. Reproduction of H. glycines was restricted in fine-textured soils as compared with coarse-textured ones. Final population densities of this pathogen in both years of the study were greater in nonirrigated soils than in irrigated soils. The net photosynthetic rate of soybean (per unit area of leaf) was suppressed only slightly or not at all in response to infection by H. glycines and other stresses. Relative soybean-yield suppression in response to H. glycines was not affected by water content in fine-textured soils, but slopes of the damage functions were steepest in sand, sandy loam, and muck soils at high water content (irrigated plots). Yield restriction of soybean in response to this pathogen under irrigation was equal to or greater than the yield suppression under dry conditions. Although yield potential may be elevated by irrigation when soil-water content is inadequate, supplemental irrigation cannot be used to circumvent nematode damage to soybean.
机译:在1988年和1989年的微型图中,研究了土壤类型和土壤水基质压力对Heterodera甘氨酸-Glycine max相互作用的影响。与粗纹理土壤相比,H。甘氨酸的繁殖受到限制。在两年的研究中,这种病原体的最终种群密度在非灌溉土壤中要比在灌溉土壤中大。响应H.甘氨酸感染和其他胁迫,大豆的净光合速率(每单位叶面积)仅受到轻微抑制或完全没有受到抑制。在质地较细的土壤中,相对于大豆产量的抑制,大豆不受大豆丝氨酸的影响不受含水量的影响,但在高含水量的沙地,沙壤土和土质土壤中,灌溉功能的坡度最陡(灌溉区)。在灌溉条件下,大豆对这种病原体的产量限制等于或大于干旱条件下的产量抑制。尽管当土壤含水量不足时通过灌溉可以提高单产,但不能使用补充灌溉来避免线虫对大豆的损害。

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