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101.
微生物菌剂肥对超级杂交水稻生长和产量的影响   总被引:3,自引:0,他引:3  
以两优959为供试水稻,设计了0、150、300和450 g/667m2 4种不同施用量处理,考察微生物菌剂肥对超级杂交水稻生长发育及产量的影响。结果表明,以常规施肥+300 g/667m2微生物菌剂肥的处理效果最好,与对照相比,其单株平均分蘖数多了2.4个,有效穗多了11.05%,产量增加了10.3%。这说明微生物菌剂肥在超级杂交水稻生产上具有较高推广应用价值。  相似文献   
102.
旨在对解淀粉芽孢杆菌GB58在水稻纹枯病上的盆栽防治效果和最佳菌剂载体进行研究,明确其应用前景。采用盆栽试验测定GB58对水稻纹枯病的病斑高率和在水稻上的定殖能力,测定GB58在菌剂固定载体的吸附能力和吸附稳定性。盆栽试验结果表明,GB58在水稻病株上有良好的定殖效果,定殖数最大达到2.22×107 cfu/g。与喷施井冈霉素处理相比,GB58对水稻纹枯病的防效在病害发生后20、40天分别显著提高了20%、24%。GB58在固体菌剂吸附载体的研究表明:结合菌体吸附量、存活率和抑菌活性进行分析,有机载体吸附效果好于无机载体;同时综合考虑应用价值,选择玉米粉、有机肥为菌剂吸附载体较好。GB58对水稻纹枯病具有较好的生防效果。采用玉米粉和有机肥作为固体菌剂吸附载体,具有经济、高效的特点,有较大的应用价值与开发潜力。  相似文献   
103.
Phosphorus (P) cycles rapidly in lowland tropical forest soils, but the process have been proven difficult to quantify. Recently it was demonstrated that valuable data on soil P transformations can be derived from the natural abundance of stable oxygen isotopes in phosphate (δ18OP). Here, we measured the δ18OP of soils that had received long-term nutrient additions (P, nitrogen, and potassium) or litter manipulations in lowland tropical forest in Panama and performed controlled incubations of fresh soils amended with a single pulse of P. To detect whether δ18OP values measured in the incubations apply also for soils in the field, we examined the δ18OP values after rewetting dry soils. In the incubations, resin-P δ18OP values converged to ∼3.5‰ above the expected isotopic equilibrium with soil water. This contrasts with extra-tropical soils in which the δ18OP of resin-P matches the expected equilibrium with soil water. Identical above-equilibrium resin-P δ18OP values were also found in field soils that did not receive P additions or extra litter. We suggest that the 3.5‰ above-equilibrium δ18OP values reflect a steady state between microbial uptake of phosphate (which enriches the remaining phosphate with the heavier isotopologues) and the release of isotopically equilibrated cell internal phosphate back to the soil. We also found that soil nutrient status affected the microbial turnover rate because in soils that had received chronic P addition, the original δ18OP signature of the fertilizer was preserved for at least eight weeks, indicating that the off-equilibrium δ18OP values produced during microbial phosphate turnover was not imprinted in these soils. Overall, our results demonstrate that ongoing microbial turnover of phosphate mediates its biological availability in lowland tropical soils.  相似文献   
104.
The timing and magnitude of rainfall events in arid and semiarid regions are expected to change dramatically in future decades, which will likely greatly affect regional carbon cycles. To understand how increases in rainfall affect the diurnal patterns and temperature sensitivities (Q10) of soil respiration (RS) and its key components (i.e. heterotrophic respiration (RH) and autotrophic respiration (RA)), we conducted a manipulative field experiment in a desert ecosystem of Northwest China. We simulated five different scenarios of future rain regimes (0%, 25%, 50%, 75% and 100% increase over local annual mean precipitation) each month from May to September in 2009. We measured RS and RH every three hours on 6 and 16 days after the rain addition, and estimated RA by calculating the difference between RS and RH. We found that rain addition significantly increased the daily mean RS and its components on the two measurement days during the growing season. However, the diurnal pattern was different between the two respiration components. Rain addition significantly increased the daily Q10 value of RH but suppressed that of RA on Day 6. Rain addition had no influence on daily Q10 value of both respiration components on Day 16 when soil moisture was lower. In addition, we observed significantly higher daily Q10 of RH than RA under all five rain addition treatments, indicating that microbial respiration is more temperature sensitive than root respiration in a short-time scale in this desert ecosystem. Thus, partitioning soil respiration into its two components, and analyzing the differential responses of RH and RA to future climate changes should be considered for more accurate predictions of soil respiration and regional carbon cycle in these arid and semiarid regions.  相似文献   
105.
P deficiency is a major obstacle for crop production in subtropical red soils in South China, and the hydrolysis of organic P (Po) is of great significance in these soils due to the immobilization of P by Fe and Al. Cover cropping in orchards and symbiotic microbial inoculation are considered to improve soil quality, including P status, however, their effects on the hydrolysis of Po is little known. In this study, five soil managements were established in a guava orchard in South China for two and a half years, including clean culture (CC), cover cropping with Paspalum natatu (PN), PN with arbuscular mycorrhizal fungal inoculation (PNA), cover cropping with Stylosanthes guianensis (SG), SG with rhizobial inoculation (SGR). Soil chemical, biochemical and microbial properties were analyzed. Results indicate that soil pH and SOM content tended to increase following cover cropping alone or with microbial inoculation. Po content was significantly elevated in PNA. Po fractionation revealed that cover cropping alone or with microbial inoculation significantly affected the contents of moderately labile Po (MLPo) and moderately resistant Po (FAPo). Enzyme assay indicated that cover cropping with microbial inoculation increased the activities of acidic phosphomonoesterase (ACP), neutral phosphomonoesterase (NP) and alkaline phosphomonoesterase (ALP), with ALP the most sensitive, although ACP activity dominated in red soils. Correlation analysis suggested a significantly positive relationship between ALP activity and MLPo or FAPo. PCR-DGGE profile of the alp-harboring bacterial community showed that cover cropping with S. guianensis and mycorrhizal inoculation to P. natatu promoted the bacterial diversity and/or species richness. For almost all the measured parameters, PN and SG were comparable, however, PNA was superior to SGR, indicating the stronger additive effect of arbuscular mycorrhizal fungus than that of rhizobia. Cat-PCA indicated that MLPo was the most influential factor on phosphomonoesterase. In general, this study suggests that, in subtropical orchards with red soil, cover cropping with microbial inoculation can improve the Po hydrolysis via the promoted alp-harboring bacterial community and then ALP activity. Our results also suggest that the combination of P. natatu and arbuscular mycorrhizal fungus is better than S. guianensis and rhizobia, which possesses practical significance for sustainable production in these orchards.  相似文献   
106.
对3种微生态制剂改善河蟹养殖池水质的效果进行分析比较。实验组各池中分别加入超浓缩光合细菌(PSB)、西菲利活菌生物净水剂、活菌净水剂以及3种微生态制剂组成的混合制剂。观察氨态氮、亚硝态氮、硫化氢、溶解氧、化学耗氧量、pH及异养菌总数等水质指标。结果表明:3种微生态制剂均能改善水质,抑制异养菌的过度增长,但对水质指标的改善各有侧重,混合制剂优于单一制剂。  相似文献   
107.
【目的】通过研究发酵脐橙粕对番鸭肠道形态结构、肠黏膜免疫功能和微生物多样性的影响,探究发酵脐橙粕用于番鸭节粮养殖的可行性。【方法】选取健康、体重为(267.33±9.50)g的180只16日龄番鸭,随机分成2组(每组公母各半),每组6个重复,每个重复15只,对照组饲喂基础饲粮,试验组饲喂含有100 g/kg发酵脐橙粕的基础饲粮,预饲期7 d,正式试验期48 d。试验结束后,采集番鸭十二指肠组织样品和盲肠内容物。通过HE染色法和免疫组化法检测十二指肠肠道形态学指标和肠黏膜免疫功能指标;采用高通量测序技术对盲肠内容物的微生物16S rDNA进行测序,分析盲肠微生物多样性变化情况。【结果】①与对照组相比,100 g/kg发酵脐橙粕可极显著提高番鸭十二指肠的绒毛高度(P<0.01),显著提高绒毛表面积和上皮内淋巴细胞阳性率(P<0.05)。②显著物种差异分析结果显示,与对照组相比,饲喂100 g/kg发酵脐橙粕饲粮极显著抑制了番鸭盲肠脱铁杆菌门、厌氧菌科和无胆甾原体等有害菌丰度(P<0.01),极显著提高了黄杆菌属、螺杆菌属和巨单胞菌属等有益菌的丰度(P<0.01);功能预测分析结果显示,与对照组相比,饲喂100 g/kg发酵脐橙粕饲粮能够显著抑制盲肠微生物KEGG代谢通路中萜类化合物和聚酮类化合物的代谢(P<0.05)。【结论】饲喂含有100 g/kg发酵脐橙粕饲粮不仅能有效改善番鸭肠道形态结构,增强肠道黏膜免疫功能,还具有调节肠道微生物多样性和代谢的作用。  相似文献   
108.
席颖  贾国梅  王旭  何立 《湖北农业科学》2016,(16):4113-4116
不同植被类型影响着土壤养分的积累、分布与循环,而土壤氮素是植被生长的重要限制性元素。通过分析宜昌点军区3种植被类型(柏树地、橘树地、菜地)覆盖下土壤氮素的变化情况,研究了不同植被对土壤氮素各形态的影响。结果表明,土壤全氮、硝态氮和微生物氮都是柏树地显著大于菜地和橘树地,而菜地和橘树地之间无显著性的差异;土壤矿化氮和微生物氮/全氮的变化顺序是柏树地橘树地菜地。说明不同植被覆盖对土壤氮有显著的影响,柏树地更有利于土壤氮的积累,氮的有效性也最高,由此认为柏树长期生长有益于土壤氮的改善。  相似文献   
109.
110.
为了探讨黄河源区季节性湖泊湿地退化对土壤微生物碳源利用的影响以及土壤微生物碳源利用能力与不同环境因子的关系,本试验在黄河源区退化季节性湖泊湿地研究不同退化阶段植被特征、土壤养分变化和土壤微生物碳源利用状况。结果表明:在季节性湖泊湿地退化过程中,土壤微生物对碳源的利用存在明显的空间分异,其对酯类碳源的相对利用率最高,对单糖/糖苷/聚合物类碳源的相对利用率随退化加重呈现先升高后下降趋势;土壤微生物对单糖/糖苷/聚合物类碳源和醇类碳源的相对利用率改变是土壤微生物功能多样随季节性湖泊湿地退化而变化的主要原因;土壤全氮含量和植被盖度对微生物单糖/糖苷/聚合物类碳源的相对利用率和土壤微生物活性均有影响。该结果为黄河源区的季节性湖泊湿地退化监测和近自然修复提供科学理论依据。  相似文献   
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