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131.
为改善当前苹果园不合理施肥现状,探究适合苹果园提质增效的施肥方案,以红富士苹果为试材,设置常规施肥、优化减氮、有机肥替代25%氮肥、有机肥替代50%氮肥4个处理,其中后3个处理的总施氮量一致,为常规施肥的一半,试验连续进行两年后测定果实产量、品质、土壤微生物量碳氮以及土壤酶活性。结果表明:优化减氮处理产量与常规施肥差异不显著,氮肥偏生产力是常规施肥的2倍以上;有机肥替代50%氮肥处理的产量最高,比常规施肥处理增加5.4%。优化减氮处理和有机肥替代氮肥处理的果实可溶性糖和糖酸比均显著高于常规施肥;施用有机肥的处理可滴定酸显著低于施化肥处理,糖酸比相反;有机肥替代50%氮肥处理的品质最佳,可溶性固形物、可溶性糖、糖酸比分别比常规施肥高1.8%、2.7%、16.9%。土壤微生物量碳氮、土壤酶活性与土层深度及有机肥的施用有关,特别是在20~40 cm土层深度,有机肥替代氮肥处理的土壤微生物量碳氮、土壤β-1,4-N-乙酰基氨基葡萄糖苷酶、β-1,4-葡萄糖苷酶、纤维二糖水解酶活性均显著高于常规施肥处理,且两两之间呈显著或极显著正相关关系。因此,在陕西省苹果园可以推荐常规施氮量减少一半的情况下用有机肥替代50%氮肥,以节省化肥、增加产量、改善品质、提升土壤质量,促进果园的可持续发展。  相似文献   
132.
通过田间小区试验评价了6个不同处理对蛭石栽培的微型马铃薯疮痂病的防效,并采用16S核糖体基因高通量测序技术研究了蛭石中细菌群落结构的变化.试验结果显示,棉隆+青霉菌34107处理对疮痂病防效最好(93.43%),显著高于对照药剂中生菌素处理(65.10%);而且商品薯的数量和经济效益也最高,分别达到348.3万个/hm...  相似文献   
133.
Soil ecosystem is experiencing stresses due to climate change, and soil inhabitants try to demonstrate their inherent resistance and resilience against those stresses. Application of nanomaterials as agricultural inputs could bring shifts in resistance and resilience patterns of soil microbes and associated enzymes, especially under short-term heat stress. With this background, the impacts of multi-walled carbon nanotube (MWCNT) on the resistance and resilience of soil biological indicators were evaluated. An incubation experiment was conducted with varied MWCNT concentrations (0, 50, 100, 250, and 500 mg kg-1 soil) for 90 d after 24-h heat stress at 48 ±2 ℃ to assess the impacts of MWCNT on soil enzyme activities and microbial populations vis-à-vis their resistance and resilience indices under short-term exposure to heat stress. Enzyme activities were reduced after exposure to heat stress. Resistance indices of enzyme activities were enhanced by MWCNT application on day 1 after heat stress, whereas there was no recovery of enzyme activities after 90-d incubation. Like soil enzyme activities, resistance index values of soil microbial populations followed the similar trend and were improved by MWCNT application. Multi-walled carbon nanotube has the potential to improve resistance indices of soil enzyme activities and microbial populations under heat stress, although they could not recover to their original state during periodical incubation after heat stress. This study helps to understand the relative changes of biological indicators under MWCNT and their ability to withstand heat stress.  相似文献   
134.
微生物菌剂浸种联合生物菌肥防控玉米茎腐病的应用效果   总被引:1,自引:0,他引:1  
沙月霞  沈瑞清 《玉米科学》2022,30(3):156-161
采用微生物菌剂浸种后撒施生物菌肥M1、M2预防玉米茎腐病,检测对玉米田土壤微生物量及酶活性的应用效果。结果表明,五谷丰素浸种联合菌肥M1、M2撒施处理显著提高防控玉米茎腐病的应用效果,乳熟期的预防效果分别为66.3%和68.1%,蜡熟期的预防效果分别为72.9%和74.6%,显著促进玉米出苗率、株高、有效穗数、穗长、穗重、百粒重以及产量。土壤中的微生物碳、微生物氮以及土壤碱性磷酸酶、脲酶、蛋白酶、多酚氧化酶活性均显著增加,其中,五谷丰素浸种联合M2菌肥处理后土壤微生物氮达64.2 mg/kg,脲酶活性达3.3 mg/(g·h),蛋白酶活性达86.5μg/(g·h),多酚氧化酶活性达111.6μg/(g·h)。  相似文献   
135.
香兰素微生物发酵法研究进展   总被引:1,自引:0,他引:1  
从以丁香酚或异丁香酚、阿魏酸、葡萄糖为底物等方面综述香兰素微生物发酵法的研究进展。  相似文献   
136.
套种是杉木人工林经营的重要措施,磷是南方森林生态系统中主要限制性养分元素之一,但套种模式对土壤磷素的影响尚不明确。以亚热带杉木人工林表层(0-10 cm)土壤为对象,研究套种林(杉阔套种幼林、杉阔套种成熟林)和杉木幼林土壤理化性质和土壤各形态磷含量差异,分析套种对杉木人工林土壤磷含量的影响。结果表明:(1)不同套种林显著改变土壤总磷、土壤总无机磷、土壤总有机磷、土壤微生物生物量磷(MBP)和土壤酸性磷酸酶活性(APA),大小顺序均为杉阔套种成熟林>杉阔套种幼林>杉木幼林。(2)土壤各磷组分中活性磷含量较低,其中NaHCO3-Po在活性组分中占主导;土壤NaOH-Po是中等活性磷的主要组分,杉阔套种成熟林尤为显著;闭蓄态磷(Residual-P)在总磷含量中最高。(3)与杉木幼林相比,杉阔套种成熟林显著增加了树脂提取态磷(Resin-Pi)、碳酸氢钠提取态有机和无机磷(NaHCO3-Pi、NaHCO3-Po)、氢氧化钠提取态有机和无机磷(NaOH-Pi、NaOH-Po)、氢氧化钠残留提取态有机磷(NaOHu.s-Po)、盐酸提取态磷(HCl-Pi)和闭蓄态磷(Residual-P)含量;土壤总无机磷、NaHCO3-Po、HCl-Pi、NaHCO3-Pi、NaOHu.s-Pi和Residual-P对杉阔套种幼林的响应不敏感。(4)除含水率外不同林龄下杉阔套种林土壤磷形态与土壤理化性质(土壤总碳氮、土壤可溶性有机氮、土壤微生物生物量磷、酸性磷酸酶)呈正相关性(P<0.05)。冗余分析表明,土壤磷组分的变化主要受MBP调控,且MBP与有机磷组分(NaOHu.s-Po、NaOH-Po)和HCI-Pi呈显著正相关。总之,套种林的土壤磷素有效性高于杉木幼林,土壤养分状况更佳。  相似文献   
137.
采用树木环割法,于2009-11—2010-03,利用Li-8100土壤呼吸自动观测系统,观测研究了位于河南省济源市的华北山区南部低丘山地40a生刺槐林土壤微生物呼吸速率(Rh)的时间变化特征及其与土壤温度和湿度的关系。结果表明:(1)在非主要生长季,Rh日变化不明显,但呈现出明显的日际变化特征;Rh平均值为0.426μmol.m-2.s-1。(2)林地5cm深处土壤温度与Rh之间存在显著的指数相关关系(P〈0.01),且Rh随5cm深处土壤温度的升高而增大,表示二者关系的参数Q10值是1.86,说明非主要生长季Rh对温度的变化十分敏感;Rh与土壤含水量呈显著的线性相关关系(P〈0.01),且Rh与5cm深处的土壤温度和土壤体积含水量均有很好的复相关关系(P〈0.01)。比较偏相关系数表明,影响Rh的主要土壤物理因子是土壤水分。  相似文献   
138.
不同恢复方式下退化岩溶山区土壤微生物特性   总被引:1,自引:0,他引:1  
张平究  潘根兴 《水土保持学报》2011,25(2):189-193,197
为了探讨恢复方式对退化岩溶山区土壤生化特性的影响,对贵州南部岩溶山区退化地、不同恢复方式和对照原始林下土壤养分、微生物活性及群落结构进行了比较研究。结果表明:与退化地相比,不同恢复方式下土壤养分和微生物特性指标都有不同程度的提高;相对于对照原始林,不同恢复方式下大部分土壤养分和微生物功能活性指标的恢复程度分别为40%~75%和27%~60%,暗示着退化岩溶山区土壤微生物功能活性恢复滞后于土壤养分恢复;除土壤有效磷和蔗糖酶活性外,人工恢复方式(花椒和人还)的大部分土壤养分含量和土壤微生物活性恢复程度分别为对照的34%~47%和17%~47%,均低于自然恢复方式(还草和自还)的土壤养分和微生物活性恢复程度(对照的52%~78%和31%~61%),意味着自然恢复方式提高土壤质量效果优于人工恢复方式;不同恢复方式下植被状况影响着退化岩溶土壤细菌的分子群落结构,但不同恢复方式间土壤细菌种的丰富度和多样性差异均不明显。  相似文献   
139.
The soil community is an often ignored part of research which links plant biodiversity and ecosystem functioning despite their influence on numerous functions such as decomposition and nutrient cycling. Few consistent patterns have been detected that link plant and soil community composition. We used a removal experiment in a northern Canadian grassland to examine the effects of plant functional group identity on soil microbial community structure and function. Plant functional groups (graminoids, legumes and forbs) were removed independently from plots for five growing seasons (2003-2007) and in the fifth year effects on the soil microbial community were examined using substrate-induced respiration (SIR - a measure of metabolic diversity) and phospholipid fatty acid analysis (PLFA - a measure of microbial community composition). Removal treatments were also crossed with both a fertilizer treatment and a fungicide treatment to determine if effects of functional group identity on the soil community were context dependent. Plant functional group identity had almost no effect on the soil microbial community as measured by either SIR or PLFA. Likewise, soil properties including total carbon, pH, moisture and nutrients showed a limited response to plant removals in the fifth year after removals. We found a direct effect of fertilizer on the soil community, with fertilized plots having decreased metabolic diversity, with a decreased ability to metabolize amino acids and a phenolic acid, but there was no direct soil microbial response to fungicide. We show that in this northern Canadian grassland the soil microbial community is relatively insensitive to changes in plant functional group composition, and suggest that in northern ecosystems, where plant material is only slowly incorporated into the soil, five growing seasons may be insufficient to detect the impact of a changing plant community on the soil microbes.  相似文献   
140.
Soil respiration is a large component of global carbon fluxes, so it is important to explore how this carbon flux varies with environmental factors and carbon inputs from plants. As part of a long-term study on the chemical and biological effects of aboveground litterfall denial, root trenching and tree-stem girdling, we measured soil respiration for three years in plots where those treatments were applied singly and in combination. Tree-stem girdling terminates the flow of carbohydrates from canopy, but allows the roots to continue water and nutrient uptake. After carbon storage below the stem girdles is depleted, the girdled trees die. Root trenching immediately terminates root exudates as well as water and nutrient uptake. Excluding aboveground litterfall removes soil carbon inputs, but allows normal root functions to continue. We found that removing aboveground litterfall and the humus layer reduced soil respiration by more than the C input from litter, a respiration priming effect. When this treatment was combined with stem girdling, root trenching or those treatments in combination, the change in soil respiration was indistinguishable from the loss of litterfall C inputs. This suggests that litterfall priming occurs only when normal root processes persist. Soil respiration was significantly related to temperature in all treatment combinations, and to soil water content in all treatments except stem girdling alone, and girdling plus trenching. Aboveground litterfall was a significant predictor of soil respiration in control, stem-girdled, trenched and stem-girdled plus trenching treatments. Stem girdling significantly reduced soil respiration as a single factor, but root trenching did not. These results suggest that in addition to temperature, aboveground carbon inputs exert strong controls on forest soil respiration.  相似文献   
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