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1.
珍稀乡土树种福建柏苗期DRIS营养诊断   总被引:3,自引:0,他引:3  
以我国珍稀乡土树种福建柏的1年生播种苗为研究对象,对苗期的DRIS营养诊断技术进行了系统研究。运用D-最优饱和设计法进行了福建柏苗期N、P、K3因素10处理盆栽施肥试验。与以往的研究仅以某月份或特定时间的取样制定的营养诊断标准不同,以整个生长季节(6~12月份)内选取的共计10 0份苗木叶片养分含量测定值为依据,成功制定了DRIS图解法及指数法的营养诊断标准,经检验其诊断正确率较高,验证了DRIS营养诊断方法可以排除1年生苗木不同月份叶龄的影响。福建柏苗期叶片3元素浓度最佳比值范围为N/ P=11.4 12 1±1.4 137;K/ N=0 .5 0 32±0 .10 39;K/ P=5 .6 16 8±1.0 6 0 4。DRIS诊断标准分别经各月份苗木叶片养分元素含量回代检验,所诊断的苗木N、P、K需肥次序与实际施肥量基本一致。以生长中期的8月份各处理苗木为例,列出各元素的DRIS诊断指数及相对需肥次序,诊断正确率达90 %以上。  相似文献   

2.
以我国东南沿海沙地主要造林树种短枝木麻黄(Casuarina equisetifolia)一年生苗木为研究对象,应用氮(N)、磷(P)、钾(K)三元二次旋转回归法,根据现实生物量的差异,划分为2种不同的产量类型,同时结合室内养分含量分析,以高产量类型为最适值,制定了诊断施肥综合法(Diagnosis and Recommendation Integrate Sys-tem,简称DRIS)及指数法的营养诊断标准,研究氮、磷、钾不同施肥配比条件下苗木体内氮、磷、钾的养分含量及其需求程度,对短枝木麻黄进行苗期综合营养诊断分析。结果表明:施肥配比对短枝木麻黄苗木生物量积累规律有较大影响,苗木生物量最优解为19.84 g/株,对应的最佳施肥方案为氮、磷、钾分别施肥0.329 g/株、2.298 g/株、0.154 g/株。短枝木麻黄苗期小枝3种元素浓度的最佳比值范围为P/N=0.3174±0.1302;K/N=1.1010±0.506;K/P=3.5564±0.5075,以生长末期12月份各处理苗木为例,列出各元素的DRIS诊断指数及相对需肥次序,证实了营养诊断的准确性。  相似文献   

3.
基于DRIS法的短枝木麻黄苗期综合营养诊断   总被引:1,自引:0,他引:1  
以我国东南沿海沙地主要造林树种短枝木麻黄(Casuarina equisetifolia)一年生苗木为研究对象,应用氮(N)、磷(P)、钾(K)三元二次旋转回归法,根据现实生物量的差异,划分为2种不同的产量类型,同时结合室内养分含量分析,以高产量类型为最适值,制定了诊断施肥综合法(Diagnosis and Recommendation Integrate Sys-tem,简称DRIS)及指数法的营养诊断标准,研究氮、磷、钾不同施肥配比条件下苗木体内氮、磷、钾的养分含量及其需求程度,对短枝木麻黄进行苗期综合营养诊断分析。结果表明:施肥配比对短枝木麻黄苗木生物量积累规律有较大影响,苗木生物量最优解为19.84 g/株,对应的最佳施肥方案为氮、磷、钾分别施肥0.329 g/株、2.298 g/株、0.154 g/株。短枝木麻黄苗期小枝3种元素浓度的最佳比值范围为P/N=0.3174±0.1302;K/N=1.1010±0.506;K/P=3.5564±0.5075,以生长末期12月份各处理苗木为例,列出各元素的DRIS诊断指数及相对需肥次序,证实了营养诊断的准确性。  相似文献   

4.
对杜鹃红山茶(Camellia azalea)苗期生长大量营养元素进行诊断,为指导杜鹃红山茶苗木科学施肥和高效培育提供依据。以杜鹃红山茶0.5 年生嫁接苗为材料,用 N、P、K 三元二次正交旋转组合设计进行施肥试验,以处理12个月后嫁接苗N、P、K元素含量为依据,采用P/N、K/N、P/K作为诊断指标,计算相应系数并用诊断施肥综合法(DRIS)和指数法对N、P、K需求关系进行分析。杜鹃红山茶P和N元素含量最佳比值为0.074±0.108;K和N元素含量最佳比值为0.509±0.500;P和K元素含量最佳比值为0.148±0.090,建立杜鹃红山茶DRIS营养诊断指数表。杜鹃红山茶对N肥和K肥的反应比P肥更为敏感,栽培管理中应多施用N肥和K肥,促进苗木生长。  相似文献   

5.
应用临界值浓度法、DRIS图解法和指数法等叶片营养诊断分析方法,研究了元谋干热河谷地区的实生印楝人工林产量和品质与叶片养分含量之间的关系.结果表明:6月份所采集的印楝叶片其养分含量与印楝产量之间存在显著线性相关;获得印楝高产的叶片全N、全P和全K的临界值分别为15.09、1.22和7.68 g·kg-1,相应的最适范围分别为15.09 ~ 22.68、1.22~1.59和7.68 ~9.17 g·kg-1;低产印楝人工林的叶片养分的DRIS图解法和DRIS指数法诊断结果基本一致,它们对N、P、K的需求次序均为P>N>K,并且这一结果与当地土壤本底肥分检测结果相印证.此外,叶片养分含量与印楝素含量之间不存在相关性,可能与印楝素本身的遗传因素有关,故不能在印楝实生群体中采用叶片营养诊断技术来进行种仁印楝素含量的诊断分析.  相似文献   

6.
以2年生三倍体毛白杨无性系BT17为试验材料,采用随机区组设计于2007-2009年在河北省威县苗圃布设了氮肥4水平、水分3水平的大田试验,研究水氮耦合效应对毛白杨叶片养分含量的影响,并确定了最佳水氮用量组合.结果表明:季节对毛白杨叶片N、P、K含量的影响均达到显著水平,且3种元素的季节变化均为春季>夏季>秋季;不同处理间的叶片N、P、K含量均达到显著差异,当土壤含水量为田间持水量的75%,施氮量为每株160 g时,叶片N、P、K含量最高;水与氮肥耦合对叶片N、P、K含量均有较好的促进作用,对毛白杨的管理应注重水分与养分耦合的正效应;叶片各养分元素对水分和氮肥的响应不同,叶片N、K含量受水分的影响更大,P含量受氮肥的影响更大.  相似文献   

7.
在天全县的退耕还林地中,对三倍体毛白杨细根与黑麦草草根的分解及其N、P、K、Ca和Mg养分动态进行了研究.结果表明,细根直径0~1、1~2和0~2 mm及草根的分解速率与时间呈负指数关系,第1年干重损失率分别为76.17%、69.80%、73.44%和79.3%,分解0%所需的时间分别为217、266、24和172 d.细根分解过程中,N和Ca浓度增加,而P、K、Mg浓度下降;草根分解过程中,其养分元素的浓度变化整体上没有规律.细根分解过程中P、K和Mg的养分残留率与其干重残留率的变化趋势相似,分解前期下降较快,随后下降比较平缓,N和Ca的养分残留率下降则比较平缓,并且养分的分解速率均以P最快,其次是K和Mg,而N和Ca最慢;草根分解过程中N、P、K、Ca和Mg的养分残留率初期下降比较快,随后趋于平缓,并且元素分解速率呈不规则变化,其中Ca分解速率最慢,其它元素的分解速率相近.  相似文献   

8.
三倍体毛白杨速生林土壤养分因子及pH值动态变化   总被引:2,自引:0,他引:2  
赵雪梅  孙向阳  王海燕  田赟  康向阳 《生态学报》2010,30(13):3414-3423
通过连续4a测定2年生三倍体毛白杨(B304)及其对照二倍体(1319)林地内0-20cm、20-40cm和40-60cm土层中土壤理化指标(包括pH值、有机质、全N、碱解N、全P、有效P、全K和速效K含量),以明确三倍体毛白杨种植对土壤养分及其理化性质的影响。试验结果表明,(1)在4a生长期内林地土壤的pH值呈现碱性增强变化;B304的平均pH值由8.13升至8.43,1319由8.12升至8.78,虽然二者没有显著差异,但三倍体对林地的pH值影响相对较小,更利于土壤酸碱平衡及土壤缓冲力的稳定性;(2)土壤中有机质及碱解N含量呈现先降低后升高的变化特点,品种间差异不显著;(3)在2006年,毛白杨林地土壤中有效P和速效K含量显著下降,降幅均为0-20cm20-40cm40-60cm;(4)年份、土层及年份和土层的交互作用对毛白杨土壤pH值及所测定的全部养分因子影响均达显著水平(P0.05);而品种、年份、土层三者的交互效应对土壤pH值、有机质、全N、全P和速效K的含量影响也达到了显著性水平。体现了三倍体毛白杨速生林种植对当地不同土层理化性质和养分因子影响的时间效应,生产中应采取积极措施改善或减缓土壤环境恶化,促进林木更好生长。  相似文献   

9.
地表连年覆盖雷竹林叶片养分利用特征   总被引:1,自引:0,他引:1  
对连续覆盖雷竹林换叶期林地土壤和叶片养分利用效率、养分再吸收效率进行了研究,旨在阐明地表连年覆盖栽培对雷竹林养分利用特征的影响.结果表明:连续覆盖3年雷竹林土壤N养分有效性、N素利用效率以及再吸收效率均显著性提高,雷竹林表现出较高的保存N养分的能力;土壤P元素有效性水平显著升高,而叶片P养分的利用效率显著降低,反映出叶片对土壤高P含量的适应策略,N、P养分利用效率之间存在显著的负相关关系(P<0.05);土壤K元素的有效性水平显著降低,竹林通过提高自身的K再吸收效率来维持养分的正常循环,再吸收效率高达95.8%;不同覆盖年限雷竹林Nm/Pm均<14,连续覆盖3年雷竹林Nm/Pm比值极显著下降,经推断是此时雷竹林对土壤有效P高吸收的结果.成熟叶片的Nm/Pm与N、P的再吸收效率均无显著相关性,Nm/Pm并不能很好地反映叶片在凋落前的养分再分配格局.  相似文献   

10.
在我国南方亚热带湿地松人工林设置了3个水平的野外氮添加控制试验(0、40、120 kg N·hm-2·a-1),于2014和2015年生长季高峰期(7月底)和末期(10月底)采集湿地松成熟绿叶和落叶,分析外源氮添加对湿地松叶片碳(C)、氮(N)、磷(P)、钾(K)、钙(Ca)、镁(Mg)、铝(Al)、铁(Fe)、锰(Mn)9种元素浓度及其养分回收的影响.结果表明: N添加显著增加了湿地松绿叶中N、Al、Mn浓度,降低了P和2014年的Ca浓度,而对C、K、Mg、Fe 浓度无显著影响.N添加显著提高了绿叶N/P,且该比值及绿叶养分浓度(N、P、Mn)对N添加的响应依赖于N的剂量(高N条件下响应更强).N添加显著降低了2015年N的回收效率,提高了2014年K的回收效率.相比于养分回收效率,回收能力对增加的可利用氮响应更强.N添加显著降低了N的回收能力,提高了P、K的回收能力,降低了枯叶中的Fe浓度,而对枯叶中Ca、Mg、Al、Mn浓度无显著影响.这表明,N添加对叶片化学计量的影响因不同元素而异,植物会通过调整自身的养分内循环(养分回收)来应对环境变化.N添加提高了绿叶N/P和K/P,说明氮添加条件下植物生长可能由N、P共同限制转变为P限制.氮添加增加了绿叶中Al、Mn浓度,表明N添加下湿地松面临潜在的金属离子毒性风险升高.  相似文献   

11.
Bailey  J.S.  Beattie  J.A.M.  Kilpatrick  D.J. 《Plant and Soil》1997,197(1):127-135
Herbage analysis offers a definitive means of determining the N, P, K and S status of perennial ryegrass swards. Unfortunately, the results of such analyses can be difficult to interpret, simply because the minimum or 'critical' concentration of a nutrient in plant tissue for optimum growth, varies both with crop age and with changes in the concentrations of other nutrients. The Diagnosis and Recommendation Integrated System (DRIS) could help to improve the reliability of such interpretations. Diagnoses made using DRIS are based on relative rather than on absolute concentrations of nutrients in plant tissue, and as such should be comparatively independent of crop age.The aim of this study was to establish and test DRIS methodology for high-yielding perennial ryegrass swards. Because of prohibitive costs, setting up a whole new series of field experiments to evaluate DRIS model parameters for perennial ryegrass was out of the question. Instead, the diagnostic norms and associated coefficients of variation for the model were evaluated using data from a single (large) multi-factorial glasshouse experiment.Of the nutrient ratios selected to form the diagnostic norms, K/N and S/N had the clearest physiological rationale, whereas those involving Ca and Mg in combination with N, P, K and S appeared to have little physiological basis. It was reasoned, though, that because Ca and Mg uptake by plants are largely passive processes (ultimately governed by plant growth), the DRIS indices for these nutrients, together reflected the degree to which growth may be limited by non-nutritional (environmental) factors relative to nutritional ones. Both indices were combined to form a single reference (Ri) index. Without such an internal reference, plant growth could be limited by multiple nutrient deficiencies, and yet N, P, K and S indices might all be close to, or equal to zero (i.e. the optimum), simply because the absolute concentrations of each nutrient (while low) had been in the correct state of balance. Moreover, by effectively using Ca and Mg as internal reference parameters in DRIS, 'nutrient concentrations' which previously formed the basis of the critical value approach, were essentially incorporated into the DRIS model, thus combining the strengths of the two diagnostic approaches; the only difference being that Ca and Mg, and not dry matter, were the internal references against which the levels of the major nutrients were compared.  相似文献   

12.
Tomato is an important field crop, and nutritional imbalances frequently reduce its yield. Diagnosis and Recommendation Integrated System (DRIS), uses ratios for nutrient deficiency diagnosis instead of absolute concentration in plant tests. In this study, local DRIS norms for the field tomatoes were established and the nutrient(s) limiting tomatoes yield were determined. Tomato leaves were analyzed for nutrients, to identify nutritional status using the DRIS approach. One hundred tomatoes fields were selected from Chatter Plain Khyber Pakhtunkhwa and the Sheikupura Punjab Pakistan. The first fully matured leaf was sampled, rinsed, dried and ground for analyzing P, K, Ca, Mg, Cu, Fe, Mn and Zn using an Inductively Coupled Plasma Atomic Emission Spectrophotometer (ICP AES). Plant tissue N and S were measured by the combustion method. The tomatoes yields were recorded at each location. The data were divided into high-yielding (≥3.79 kg/10 plant) and low-yielding (<3.79 kg/10 plant) populations and norms were computed using standard DRIS procedures. High-yielding plant population had a statistically greater mean S and Fe than the low-yielding population. The average balance index, the sum of functions, for S and Fe were −11.04 and −5.17 which reflected deficiency of S and Fe. Plant nutrients norms established may optimize plant nutrition in field tomatoes for high yield.  相似文献   

13.
The leaf macroelement profile of fruiting shoots of persimmon was characterized by a modified diagnostic and recommendation integrated system (DRIS), using SLW as a primary determinant of leaf mineral content. Leaf N, P, Ca, and Mg content was positively and linearly correlated with SLW when expressed on leaf area basis (g mm–2). Potassium had a negative and higher correlation to SLW when expressed on %DW basis. Mineral ratios relevant for the DRIS analysis were calculated using all four possible combinations of Area (A) and Weight (W) expressions (A/A, A/W, W/A and W/W) and correlated with leaf SLW. The particular expressions chosen for the DRIS analysis were based on their highest correlation to SLW and included N/K, P/K and Ca/Mg, based on the A/W expression of the respective nutrients and the reciprocal expression (W/A) for all other ratios. Derivation of DRIS norms were based on the mineral profile of highly exposed shoots (SLW of 15.0±0.3 mg cm–2). Calculated indices of gradually less exposed shoots (SLW of 3.8–18.9 mg cm–2) revealed a strong exponential imbalance of N, K and P (increasingly positive) vs Ca and Mg (increasingly negative). The calculated Nutritional Imbalance Index (NII) value of leaves decreased exponentially as shoot leaf SLW decreased. The modified DRIS analysis detected successfully a distinct mineral profile of highly vigorous fruiting water shoots, as compared to regular fruiting shoots of comparable SLW.  相似文献   

14.
灌木层作为森林生态系统的重要组成部分, 了解其生态化学计量特征将有助于揭示森林生态系统物质周转和养分循环等生态功能。该研究选取青海省7种主要优势林分——白桦(Betula platyphylla)林、毛白杨(Populus tomentosa)林红桦(Betula albosinensis)林、青扦(Picea wilsonii)林、山杨(Populus davidiana)林、圆柏(Sabina chinensis)林、云杉(Picea asperata)林为研究对象, 采用野外取样和室内实验分析相结合的方法, 研究了不同林分林下灌木层不同器官(叶、枝干、根)及其表层(0-10 cm)土壤的碳(C)、氮(N)、磷(P)含量及其相关性。结果表明: 7种林分间灌木(叶、枝干、根) P含量、C:P均没有明显差异性; 山杨林、圆柏林、云杉林的林下灌木(叶、枝干、根) N含量、N:P高于白桦林、毛白杨林、红桦林和青扦林, C:N则相反。圆柏林的林下灌木生长受P限制, 其余6种林分的林下灌木生长受N限制。7种林分间土壤有机碳(SOC)和总氮(TN)含量呈现出明显差异性, 而总磷(TP)含量则差异不明显。相关性分析表明, 林下灌木(叶、枝干、根) N含量、C:N、N:P与土壤TN含量、C:N、N:P呈极显著相关性, 而P含量、C:P与土壤TP含量呈显著相关性。冗余分析表明, 林下灌木层植被C、N、P含量及生态化学计量特征受到土壤化学计量特征及各环境因子的共同影响, 其中土壤C:N、海拔、年平均气温、年降水量为主要影响因子。  相似文献   

15.
The aim of this investigation was to estimate the optimum nutrient requirements and responses to low relative nutrient addition rates of seedlings of two important broadleaf tree species in China, Populus simonii Carr. and Paulownia tomentosa (Thunb.) Steud. In preliminary experiments the optimum nutrient proportions were estimated under high concentration conditions. The nutrients consumed were replaced by means of daily additions determined by pH and conductivity titrations without changing the nutrient solutions. A relatively high K level was needed in relation to nitrogen; higher than in birch or grey alder seedlings. To obtain a high relative growth rate, suitable proportions by weight were 100 N:70 K:14 P:7 Ca:7 Mg for the Populus seedlings and 100 N:75 K:20 P:8 Ca:9 Mg for the Paulownia seedlings.
In studies of nutrient stress responses the relative nutrient addition rate was used as the treatment variable under low conductivity conditions. The responses and relationships were similar to those described for birch, grey alder and Salix . The relative addition rate, and there was also a strong linear regression between relative growth rate and nitrogen status. Relative growth rates were high and the maximum weight increase was about 19% day−1 in Populus and over 25% day−1 in Paulownia . The nitrogen productivity of Paulownia was very high, 0.26 g dry weight (g N)−1 h−1, and for Populus it was 0.16 g dry weight (g N)−1 h−1.  相似文献   

16.
Low soil fertility is one of the main constraints to crop production in the West African savanna. However, the response of major cereals to fertilizer applications is often far below the potential yields. Low fertilizer efficiency, inadequacy of current fertilizer recommendations, and the ignorance of nutrients other than N, P, and K may limit crop production. Nutrient limitations to maize production were identified in on-farm trials in Togo and in several long-term experiments in Nigeria and Benin. Maize ear leaf samples were analyzed for macro and micro-nutrients, and the Diagnosis and Recommendation Integrated Systems (DRIS) was applied to rank nutrients according to their degree of limitation to maize. In the on-farm trials, both yield and DRIS results indicated that, when N is supplied, P limited maize production in all fields, reducing yields by 31% on average. Sulfur was limiting in 81% of the fields and was responsible for an average yield reduction of 20%. In the long-term experiments where N, P, and K had been annually applied, Ca and Mg indices were strongly negative, indicative of deficiency. Zn indices were negative in all trials. Despite N-fertilizer additions, N indices remained negative in some of the long-term experiments, pointing to low efficiency of applied fertilizers. There was a direct link between DRIS indices and the management imposed in the different experiments, indicating that DRIS is a useful approach to reveal nutrient deficiencies or imbalances in maize in the region.  相似文献   

17.
水肥耦合效应对毛白杨苗木生物量的影响   总被引:8,自引:1,他引:7  
水和肥是促进毛白杨速生高产的两大重要因素,研究水肥耦合效应对毛白杨苗木的生物量影响具有重要的现实意义.本文以毛白杨杂种无性系87号嫁接苗为试材,采用水、氮、磷三因素五水平二次回归通用旋转组合设计,于2008年3-10月在北京林业大学苗圃进行盆栽试验,研究了不同水肥耦合水平对毛白杨苗木生物量的影响,并建立了毛白杨生物量的水肥耦合回归模型.结果表明: 土壤水分是影响毛白杨生物量的主要因素,其次为氮肥和磷肥.随着三者投入量的增加,毛白杨生物量增加;当三者增加到一定程度时,继续投入则使其生物量下降.土壤水分与氮肥交互作用显著,且有较好的正效应;而氮肥与磷肥、土壤水分与磷肥交互作用不明显.经模型寻优,水肥调控的最佳组合为: 土壤水分控制在田间持水量的73.37%,氮肥和磷肥的施用量分别为4.14 和1.41 g·plant-1;此时的毛白杨苗木生物量达到68.30 g·plant-1.  相似文献   

18.
以种植于干热河谷区的赤桉(Eucalyptus camaldulensis Dehnh.)幼龄林、中龄林和成熟林为研究对象,分析了赤桉鲜叶和凋落叶中养分(包括N、P、K、Ca、Mg和Na)的含量和化学计量比,并计算各养分的再吸收率;在此基础上,对鲜叶和凋落叶中各养分的含量与再吸收率进行线性回归分析.结果表明:成熟林赤桉鲜叶和凋落叶的有机碳、全氮、全磷、全钾和全钠含量总体上高于幼龄林,而全钙和全镁含量则低于幼龄林;且鲜叶中的全氮、全磷、全钾、全钠和全镁含量总体上高于凋落叶,而有机碳和全钙含量则低于凋落叶.成熟林赤桉鲜叶和凋落叶的C:N比、鲜叶的N:P比和N:K比以及凋落叶的K:P比和Ca:Mg比均低于幼龄林,但其鲜叶的K:P比和Ca:Mg比及凋落叶的N:P比和N:K比则高于幼龄林;且不同林龄鲜叶的C:N比、K:P比和Ca:Mg比均低于凋落叶.各林龄赤桉叶的Ca再吸收率及幼龄林和中龄林叶的Na再吸收率均为负值,而其余养分的再吸收率均为正值;随林龄增长,N、K和Mg的再吸收率先升高后降低,而P、Ca和Na的再吸收率却先降低后升高;总体上看,赤桉叶中各养分的再吸收率从高到低依次为P、N、K、Mg、Na、Ca.线性回归分析结果表明:赤桉鲜叶的全钾和全钠含量分别与K和Na再吸收率呈极显著正相关(P<001),全钙含量与Ca再吸收率呈显著正相关(P<005);而凋落叶的全氮含量与N再吸收率呈极显著负相关,全镁含量与Mg再吸收率呈显著负相关.综合分析结果显示:林龄对赤桉叶的养分含量和再吸收率有明显影响,其保存养分的能力随林龄增长呈现先增强后减弱的趋势.  相似文献   

19.
黄土高原子午岭林区典型树种叶片N、P再吸收特征   总被引:1,自引:0,他引:1  
为揭示黄土高原子午岭林区不同演替阶段和植被类型主要树种养分再吸收特征,研究选取4种次生植被树种(白桦、山杨、辽东栎和油松)和2种人工植被树种(刺槐和侧柏),测定其成熟叶、凋落叶和林下土壤碳(C)、氮(N)、磷(P)含量,研究了叶片N、P再吸收率及其与养分指标的关系。结果表明:(1)不同树种叶片养分和林下土壤养分含量存在显著差异,土壤C、N含量和C∶N∶P计量比均表现为演替后期林地(辽东栎和油松)演替前期林地(山杨和白桦)人工林(侧柏和刺槐);(2)不同树种叶片N、P再吸收率分别为17.18%—43.34%和27.13%—58.12%,均表现为演替后期林地人工林演替前期林地,且P的再吸收率总体高于N的再吸收率;(3)不同树种叶片N、P再吸收率与叶片养分指标的关系强于土壤,与养分计量比的相关性大于养分含量的相关性。说明子午岭典型植被会通过叶片N、P再吸收来适应养分限制环境,尤其是演替后期植被再吸收能力更强,研究可为黄土高原植被恢复提供理论依据。  相似文献   

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