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Effects of paclobutrazol and crop-load on mineral element concentration in different organs of 'Catherine' peach trees

机译:多效唑和农作物载量对“凯瑟琳”桃树各器官矿质元素含量的影响

摘要

The concentration of mineral elements in leaves and shoots of "Catherine" peach [Prunus persica (L.) Batsch.] trees with different crop-loads and treated with or without 2g paclobutrazol (PP333) was analyzed. For most elements, the concentrations in the leaf varied linearly along the growing season, the concentrations of nitrogen (N), potassium (K), copper (Cu), and zinc (Zn) decreasing, those of calcium (Ca), magnesium (Mg), and manganese (Mn) increasing, while the concentration of iron (Fe) did not follow a clear pattern. PP333 increased concentration of calcium (Ca), Mg, Fe and Mn, and a decrease in K, while the pattern of change of concentration of N varied so that more N was exported from leaves of PP333 treated trees than from untreated trees. Crop-load also affected leaf N, Mg, and Mn concentration, but no effects were observed on K, Ca, and Fe concentration. In terminal shoots, PP333 increased the concentrations of all elements except K and Mg, and the level of cropping induced changes in the behavior of several elements: K, Mg, Fe, Mn, and Cu concentrations increased with crop-load in control trees, while in PP333-treated trees, they either decreased (Fe, Mn, and Cu) or remain unchanged (K and Mg), and phosphorus (P) concentration decreased both in PP333-treated or untreated trees. It is concluded that mineral element distribution among leaves and shoots is affected by PP333 and by the level of cropping.
机译:分析了不同农作物负荷并使用或不使用2g多效唑(PP333)处理的“凯瑟琳”桃[Prunus persica(L.)Batsch。]树的叶片和枝条中矿质元素的浓度。对于大多数元素,叶片中的浓度随生长期线性变化,氮(N),钾(K),铜(Cu)和锌(Zn)的浓度下降,钙(Ca),镁( Mg)和锰(Mn)的增加,而铁(Fe)的浓度则没有明确的规律。 PP333增加了钙(Ca),Mg,Fe和Mn的浓度,并降低了K,而N浓度的变化模式却发生了变化,因此从PP333处理过的树木的叶子输出的氮比未经处理的树木更多。作物负荷也影响叶片的氮,镁和锰浓度,但对钾,钙和铁的浓度没有影响。在末梢,PP333增加了除K和Mg之外的所有元素的浓度,而种植水平导致几种元素的行为发生变化:对照树中的K,Mg,Fe,Mn和Cu浓度随作物负荷的增加而增加,而在经过PP333处理的树木中,它们减少(铁,锰和铜)或保持不变(钾和镁),而在经过PP333处理的树木中或未经处理的树木,磷(P)浓度均下降。可以得出结论,叶片中的矿质元素分布受PP333和作物水平的影响。

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