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不同覆盖材料对红梅杏叶片和细根化学计量特征及δ13C的影响
Effects of different surface cover materials on stoichiometric characteristics and δ13C of leaves and fine roots of Prunus × hongmeixing
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摘要: 设置白膜、黑膜、锯末、麦草4个覆盖物处理,以无覆盖处理为对照,测定红梅杏叶片与细根C、N、P的养分性状及δ13C含量,分析红梅杏不同器官的化学计量及碳同位素(δ13C)对不同覆盖材料的响应规律,探讨细根–叶片的碳(C)、氮(N)、磷(P)分配策略关系。结果表明:锯末覆盖叶C含量显著降低,麦草覆盖细根C 含量显著增加;4个覆盖处理细根N含量显著增加,麦草覆盖叶和细根N含量最高;麦草覆盖细根P含量显著降低。4个覆盖处理叶片和细根δ13C显著增加。麦草覆盖细根和叶C、N 、P 含量为异速生长模式,麦草覆盖加速红梅杏对叶片C、P及细根N的分配;黑膜覆盖加速红梅杏对细根C的分配;4个地表覆盖处理使红梅杏的细根分配到更多N;麦草覆盖叶片会分配到更多的P。麦草覆盖提高深层土壤P含量,促进细根N积累与叶片P分配,同时提高器官δ13C值,锯末与黑膜覆盖在一定程度上增加细根养分吸收,而白膜覆盖可能导致细根N含量降低,证实了在不同覆盖材料下红梅杏的不同器官会通过不同方式调整养分分配以适应所处的区域环境。Abstract: To reveal the response patterns of stoichiometry and carbon isotope (δ13C) in different organs of Prunus × hongmeixing to mulching materials and understand C-N-P allocation strategies between fine roots and leaves, four mulching treatments (white plastic mulch, black plastic mulch, sawdust mulch, and wheat straw mulch) were established with uncovered control. Nutrient traits (C, N, P) and δ13C content in leaves and fine roots were quantified. The results showed that: Sawdust mulch significantly reduced leaf C content, while wheat straw mulch significantly increased fine roots C content. All four mulch treatments significantly increased fine roots N content, with wheat straw mulch yielding the highest leaves and fine roots N content. Additionally, wheat straw mulch significantly decreased fine roots P content.. All four mulch treatments significantly increased δ13C in leaves and fine roots. Wheat straw mulch established allometric scaling relationships in C, N, and P concentrations between fine roots and leaves. It accelerated C and P allocation to leaves and N allocation to fine roots in P. × hongmeixing. Black plastic mulch enhanced C allocation to fine roots. All four ground cover treatments promoted greater N allocation to fine roots of P. × hongmeixing, while wheat straw mulch increased P allocation to leaves. Wheat straw mulch elevated phosphorus content in deep soil layers, enhanced nitrogen accumulation in fine roots and phosphorus allocation to leaves, while simultaneously increasing δ13C values across organs. Sawdust mulch and black plastic mulch moderately improved nutrient acquisition by fine roots, whereas white plastic mulch potentially reduced fine root nitrogen content. These results confirm that P. × hongmeixing differentially adjusts nutrient allocation strategies among organs under various mulch treatments to achieve acclimation to regional environments.
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