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首页> 外文期刊>Functional Plant Biology >Hydraulic redistribution by Protea 'Sylvia' (Proteaceae) facilitates soil water replenishment and water acquisition by an understorey grass and shrub
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Hydraulic redistribution by Protea 'Sylvia' (Proteaceae) facilitates soil water replenishment and water acquisition by an understorey grass and shrub

机译:Protea'Sylvia'(Proteaceae)进行的水力再分配有助于底层草和灌木的补充土壤水和水

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Proteaceae of the Cape Floristic Region, South Africa, transpire throughout the summer drought, implying access to deep water. Hydraulic redistribution by Protea 'Sylvia' [P. susannae E. PhillipsxP. exima (Salisb. Ex Knight) Fource; Proteaceae] was investigated in overnight pot and field experiments, where it was hypothesised that (1) Proteaceae replenish water in upper soil layers, (2) hydraulic redistribution facilitates nutrient uptake and (3) shallow-rooted understorey plants 'parasitise' water from proteas. Potted Sylvias redistributed ~17% of the tritiated water supplied, equating to 34pl1.2mL plantp#. Shallow-rooted Cyanodon dactylon (L.) Pers. (Poaceae), plants growing in the same pots as Sylvia contained amounts of labelled water similar to those found in Sylvia, indicting water parasitism. In the field, Sylvia plants growing in aeolian sands took up the deuterated water applied at 1.2m depth as indicated by increased tpoH of plant xylem water from -38pl0.8 to 334pl157[per mille sign]. This deuterated water was then redistributed to the upper soil layer (0.2 and 0.4m), as indicated by increased tpoH of soil water from -24.5pl0.7 to -8.0pl3.0[per mille sign] and soil moisture from 0.48 to 0.89%. Lithium, as a K-analogue, was taken up equally by plants watered with deep water and those not watered, probably since both had access to naturally-occurring deep water. Water in stems of the shallow-rooted understorey shrub, Leysera gnaphalodes (L.) L. (Asteraceae) had similar tpoH values to stems of Sylvia (P=0.939), again indicating water parasitism was tightly coupled to the protea. We conclude that hydraulic redistribution by Proteaceae plays an important role in soil water replenishment, water supply to shallow-rooted plants, and, thus, ecosystem structure and function during the summer drought of the Cape Floristic Region.
机译:南非开普植物区的Proteaceae在整个夏季干旱中蒸腾腾腾,这意味着人们可以利用深水。 Protea'Sylvia'的液压重新分配[P.苏珊娜E.菲利普斯exima(Salisb。前骑士)Fource; [Proteaceae]在过夜的盆栽和田间试验中进行了调查,其中的假设是(1)Proteaceae补充了上部土壤层中的水,(2)水力重新分配促进了养分的吸收,以及(3)浅根下层植物“寄生”了蛋白酶。盆栽的西尔维亚斯重新分配了约17%的water水,相当于34pl1.2mL plantp#。浅根蓝ano(L.) (禾本科),与西尔维亚(Sylvia)在同一盆中生长的植物含有与西尔维亚(Sylvia)中发现的相似的标记水,表明水寄生。在田间,在风沙中生长的西尔维亚植物吸收了氘化水,深度为1.2m,这表现为植物木质部水的tpoH从-38pl0.8增加到334pl157 [每毫符号]。然后将这种氘化水重新分配到上层土壤层(0.2和0.4m),这表现为土壤水的tpoH从-24.5pl0.7增加到-8.0pl3.0 [per mille sign],土壤水分从0.48上升到0.89 %。锂作为一种钾离子类似物,被深水浇灌的植物和未浇水的植物均吸收了锂,这很可能是因为两者都可以使用天然存在的深水。浅根地下灌木灌木(Leysera gnaphalodes(L.)L.(菊科)的茎中的水具有与Sylvia茎相似的tpoH值(P = 0.939),再次表明水寄生性与蛋白酶紧密相关。我们得出的结论是,Proteaceae的水力再分配在土壤水的补充,浅根植物的水供应以及因此在Cape Cape Floristic Region夏季干旱期间的生态系统结构和功能中起着重要作用。

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