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1.
杉木种子园为培育高产稳产杉木良种提供重要保障,在林业生产中具有积极意义。通过试验研究,探究杉木3代种子园土壤养分丰缺情况、养分间的平衡规律,确定杉木种子园最佳肥料配比和施肥量,以期为闽北低山丘陵红壤分布区杉木种子园提供推荐施肥配方。采用“3414”配方施肥设计方案,对闽北第3代杉木种子园开展N、P、K、Ca、Mg、B、Mo等元素施肥试验。分别设计大量元素氮、磷、钾三因素施肥水平(并增设施用钼肥处理)、中微量元素钙、镁、硼三因素施肥水平,以球果数量(质量)、出籽率、种子产量、胸径等为评价指标,拟合肥料效应函数方程,研究各养分间的作用规律,并提出最佳施肥配比和施肥量。结果表明:种子园土壤N、P、K、Ca、Mg养分含量较低,B含量属于中等水平,而Mo含量较高;N、P、Mg以及N-K、Ca-B肥料联合对种子园产量的影响达到显著或极显著水平,而单施某一肥料效应较小,其中单施K、Ca、B几乎没有效果,而肥料联合施用效果较好。综合效应分析结果,得出种子园最大产量施肥量组合为:每株施尿素100 g+过磷酸钙897 g+氯化钾150 g+石灰150 g+硫酸镁105 g+硼砂75 g,并配施钼肥。N、P2O5、K2O、CaO、Mg、B、Mo的用量依次为46.0、107.7、90.0、75.0、31.4、2.3、5.0 g,其配比为N:P2O5:K2O:CaO:Mg:B:Mo=1.0:2.3:2.0:1.6:0.7:0.05:0.1。多元素配方施肥能很好地改善杉木种子园产量和质量,单株球果产量、球果单粒重、出籽率及种子园产量等指标均比不施肥的母树有大幅度提高。本研究施肥方案,理论上种子园产量可达45.99~95.65 g/株,大量元素施肥试验的产量达到理论产量的80%~86%,中微量元素施肥试验的产量为理论产量的70%左右。现实种子园平均产量大约是预测产量的40%,通过合理配方施肥有望大幅度提高杉木3代种子园产量。 相似文献
2.
土壤复垦是矿区生态环境恢复和耕地总量平衡及质量提升的根本要求。本研究依托山西襄垣采煤塌陷区复垦定位试验基地,采用Biolog-ECO方法和荧光定量PCR技术,研究了不施肥(CK)、单施化肥(CF)、单施有机肥(M)和有机无机培肥(MCF)4种培肥措施下复垦4年和8年土壤微生物碳代谢功能多样性及氮代谢功能基因丰度的变化特征。结果表明,随复垦年限增加,单施有机肥较其他处理可显著提高复垦土壤微生物的总碳源利用能力;不同处理复垦土壤微生物碳源相对利用率总体表现为氨基酸类>糖类>聚合物类>羧酸类>双亲化合物类>胺类,其中单施有机肥更大程度上提高了羧酸类、氨基酸类和胺类碳源的利用率;复垦年限和培肥措施没有改变复垦土壤微生物优势度指数,但有机无机配施较其他处理可显著提高香浓指数(H′)和Pielou均匀度指数;不同处理复垦土壤氮转化功能基因丰度总体表现为amoA(AOA)> amoA(AOB)>nisS、nirK> nifH,5种功能基因丰度均为以有机无机培肥处理最高,且随复垦时间增加而增加;复垦土壤有机质含量与nirS、nirK、nifH基因丰度以及AWCD值存在显著相关性,相关系数在0.707~0.807,同时5种氮转化功能基因丰度均与玉米产量存在显著或极显著的相关性,相关系数在0.824~0.949。综上所述,单施有机肥可提高土壤有机质含量,进而增强了复垦土壤碳代谢强度,有机无机培肥则更有利于复垦土壤碳氮代谢功能多样性的提升,并促进作物产量形成。 相似文献
3.
典型农田根际土壤伯克霍尔德氏菌群落结构及其多样性 总被引:1,自引:0,他引:1
在根际环境中伯克霍尔德氏菌(Burkholderiales)是一类重要的植物促生菌,其群落结构变化可能会影响植物的生长和发育。本研究针对伯克霍尔德氏菌目,采用特异性引物16S rRNA基因高通量测序技术,研究了田间条件下黑土、潮土和红壤中玉米根际伯克霍尔德氏菌群落结构及其对地上部作物生物量和产量的可能影响。结果表明:在三种土壤类型中,与未施肥相比,施肥对伯克霍尔德氏菌目的丰富度和多样性均没有显著影响。在伯克霍尔德氏菌的科水平主要检测到三类细菌,分别为草酸杆菌科(Oxalobacteraceae)、丛毛单胞菌科(Comamonadaceae)和伯克氏菌科(Burkholderiaceae),且草酸杆菌科是其中的优势菌。此外,施肥显著增加了有机质含量较低的潮土中马赛菌(Massilia spp.和Massilia sp. WG5)和伯克氏菌(Burkholderiaspp.)的相对丰度(P0.05);增加了酸性红壤中草螺旋菌(Herbaspirillumsp.ZM319)的相对丰度,但降低了Noviherbaspirillum spp.的相对丰度(P0.05);而在有机质含量最高的黑土中,所有检测到的伯克霍尔德氏菌均无明显地变化。进一步分析表明,土壤有效磷、速效钾含量和土壤pH是影响这几类细菌的主要因素,而马赛菌群落的变化可能会影响玉米地上部生物量和产量。本研究表明,尽管化学施肥是影响玉米地上部生物量和产量的主要原因,但是伯克霍尔德氏菌等根际微生物群落也可能是影响它们的潜在生物因素。 相似文献
4.
Nitrogen losses from intensive vegetal production systems are commonly associated with contamination of water bodies. Sustainable and optimal economic N management requires correct and timely on-farm assessment of crop N status to detect N deficiency or excess. Optical sensors are promising tools for the assessment of crop N status throughout a crop or at critical times. We evaluated optical sensor measurement of canopy reflectance and of leaf flavonols and chlorophyll contents to assess crop N status weekly throughout a muskmelon crop. The Crop Circle ACS 470 was used for reflectance measurement, the SPAD 502 for leaf chlorophyll, and the DUALEX 4 Scientific for leaf chlorophyll and flavonols. Four indices of canopy reflectance (NDVI, GNDVI, RVI, GVI), leaf flavonols and chlorophyll contents and the nitrogen balance index (NBI), the ratio of chlorophyll to flavonols contents, were linearly related to crop N content and to crop Nitrogen Nutrition Index (NNI) throughout most of the crop. NBI most accurately predicted crop N status; in five consecutive weekly measurements, R2 values were 0.80–0.95. For NDVI during the same period, R2 values were 0.76–0.87 in the first three measurements but R2 values in the last two measurements were 0.39–0.45. Similar relationships were found with the three other reflectance indices. Generally, the relationships with NNI were equal to or slightly better than those with crop N content. These optical sensor measurements provided (i) estimation of crop N content in the range 1.5–4.5%, and (ii) an assessment of whether crop N content was sufficient or excessive for optimal crop growth for NNI ranges of 0.8–2.0. Composite equations that integrated the relationships between successive measurements with the optical sensors and crop N content or NNI for periods of ≥2 weeks (often 2–3 weeks) were derived for most indices/parameters. Overall, these results demonstrated the potential for the use of these optical sensor measurements for on-farm monitoring of crop N status in muskmelon. 相似文献
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Dante Arturo Rodríguez-Trejo Mary L. Duryea Timothy L. White Jeff R. English John McGuire 《Forest Ecology and Management》2003,180(1-3):25-36
Nitrogen fertilization in the nursery, along with altering the configuration of forest gaps, may improve the reforestation success of longleaf pine seedlings. During the very droughty 1998 growing season in Florida and Georgia, survival was higher under the forest canopy than in small (0.10 ha, 36 m diameter) and large (1.6 ha, 144 m diameter) canopy gaps. In the large gaps, survival of containerized seedlings was higher along the edges, particularly the SW edge. Shade from adult trees and the nurse effect of shrubs increased survival, while grass competition reduced survival. During dry years part of the “exclusionary zone” along the edge of canopy gaps (SW sector) may serve as a “survival zone”, at least in the short term. A model using oval-shaped gaps oriented from NW to SE, with an area of 0.25 ha is proposed to maximize the survival and growth of artificially regenerated longleaf pine seedlings. 相似文献
9.
This experiment evaluated the influence of manure, peat, and vermiculite incorporated at low and high rates (0.0118 and 0.0236 m3/m2) and under two soil moisture regimes on Douglas-fir (Pseudotsuga menziesii (Mirb.) Franco) seedling (1+0 for 1+1) xylem water potential (xylem), whole-plant growth, root architectural development, and subsequent field performance under fertilized and non-fertilized conditions. Trends in soil moisture retention were observed (high manure > high peat > control) but there were no differences in xylem. Root length in the wetter soil moisture experiment was initially (three months) greatest for seedlings in high vermiculite and least in high manure but there were no differences among treatments at lifting (eight months). Mean height was greatest for seedlings grown in vermiculite and peat (wetter nursery experiment) after two field seasons. Field fertilization (35 g/seedling) with controlled-release fertilizer in the planting hole stimulated height growth initially, but decreased height and diameter growth during the second growing season. Dramatic improvements associated with the use of nursery soil amendments were not realized, but the failure to identify negative effects, a potential reduction in disease incidence, and improvement of nursery soil physical and chemical properties may justify their use. 相似文献
10.
油松容器苗施肥的研究 总被引:2,自引:0,他引:2
本文根据研究结果论述了油松容器苗营养土中掺合尿素的最适量,一定出圃规格油松容器苗的施肥量以及施肥量的计算方法。同时还论述了1年生油松容器苗有关的化学营养诊断指标。 相似文献