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Response of wheat genotypes efficient in P utilisation and genotypes responsive to P fertilisation to different P banding depths and watering regimes

机译:小麦基因型对磷的有效利用和对磷响应的基因型对不同磷带深度和灌溉制度的响应

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The capacity of wheat roots to lift water from subsoil with high moisture content into dry topsoil (hydraulic lift) and the subsequent impact on P uptake from dry topsoil are poorly understood. Two experiments were set up to test the capacity of 4 wheat genotypes differing in P efficiency to take up P from the fertiliser banded in dry topsoil (with wet subsoil). The interactions among genotypes, banding depths, and watering regimes (whole-profile or subsoil-only watering) were also characterised. nnThe root system increased soil water content from 64 to 90 g/kg soil around the P fertiliser band by taking up water in the subsoil and releasing it into the dry topsoil during the night. Phosphorus applied as a band at 20 mg P/kg soil in dry topsoil (5 cm deep) significantly increased P uptake and shoot weight compared with a nil P control. Westonia and Gutha genotypes (efficient in P utilisation, based on dry matter produced per unit of P taken up) had higher shoot weights than Aroona and Wawht 2074 (genotypes responsive to P fertilisation, based on dry matter produced per unit of P fertiliser applied). Greater growth of wheat genotypes occurred in the treatment with P fertiliser banded at a depth of 5 cm compared with 15 cm in the whole-profile watering treatment, but no difference between banding depths was noted in the subsoil-only watering treatment. Wheat genotypes responsive to P fertilisation increased P uptake and shoot weight at the 5-cm P banding depth and the whole-profile watering treatment compared with genotypes efficient in P utilisation. Phosphorus-utilisation-efficient genotypes increased shoot growth more than other genotypes in the subsoil-only watering treatment. nnIt can be concluded that roots of various wheat genotypes lift water from wet subsoil into the dry topsoil (hydraulic lift). Phosphorus fertiliser banded at 5-cm depth in dry topsoil increased P uptake and wheat growth due to the presence of hydraulically lifted water. Genotypes that are efficient in utilising P increased shoot weight more than genotypes responsive to P fertilisers in the subsoil-only watering treatment. In contrast, P-responsive genotypes increased shoot growth more than P-utilisation-efficient genotypes when P fertiliser was banded at 5-cm depth, and a whole-profile watering regime was imposed.
机译:人们对小麦根部将水分从水分含量高的底土提升到干表土(水力提升)的能力以及随后对干表土对磷吸收的影响的了解还很少。建立了两个实验,以测试四种磷效率不同的基因型从干表土(带湿底土)的肥料中吸收磷的能力。还描述了基因型,条带深度和浇水方式(全剖面或仅底土浇水)之间的相互作用。 nn根系通过在晚上吸收地下土壤中的水分并将其释放到干燥的表层土壤中,使磷肥带周围的土壤水分从64 g / kg土壤增加到90 g / kg。与无磷对照相比,在干燥表土(5 cm深)中以20 mg P / kg的土壤带状施用的磷显着增加了P的吸收和苗重。 Westonia和Gutha基因型(根据每单位P吸收的干物质产生的P利用率高)比Aroona和Wawht 2074(对P施肥有反应的基因型,基于每单位P肥料产生的干物质)的芽重更高。 。在全剖面浇水处理中,在深5 cm的P肥料条件下,小麦基因型的生长更大,而在整个剖面浇水处理中为15 cm,小麦基因型的增长更大,但是在仅下层土壤的浇水处理中,标注深度之间没有差异。与有效利用磷的基因型相比,对磷施肥有反应的小麦基因型在5 cm磷束缚深度和全剖面浇水处理下增加了磷的吸收和苗重。在仅底土的浇水处理中,有效利用磷的基因型比其他基因型更能增加枝条的生长。可以得出结论,各种小麦基因型的根部将水从湿的底土提升到干燥的表土(液压提升)中。由于存在水力提升的水,在干燥表土中以5 cm深度绑扎的磷肥增加了P的吸收和小麦的生长。有效利用磷的基因型比仅在下层土壤的浇水处理中对磷肥有反应的基因型增加了苗重。相反,当磷肥在5 cm深度绑扎时,P响应基因型比P利用效率高的基因型增加的枝条生长更多,并且实行了整株浇水方案。

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