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101.
A range of agricultural practices influence soil microbial communities, such as tillage and organic C inputs, however such effects are largely unknown at the initial stage of soil formation. Using an eight-year field experiment established on exposed parent material (PM) of a Mollisol, our objectives were to: (1) to determine the effects of field management and soil depth on soil microbial community structure; (2) to elucidate shifts in microbial community structure in relation to PM, compared to an arable Mollisol (MO) without organic amendment; and (3) to identify the controlling factors of such changes in microbial community structure. The treatments included two no-tilled soils supporting perennial crops, and four tilled soils under the same cropping system, with or without chemical fertilization and crop residue amendment. Principal component (PC) analysis of phospholipid fatty acid (PLFA) profiles demonstrated that microbial community structures were affected by tillage and/or organic and inorganic inputs via PC1 and by land use and/or soil depth via PC2. All the field treatments were separated by PM into two groups via PC1, the tilled and the no-tilled soils, with the tilled soils more developed towards MO. The tilled soils were separated with respect to MO via PC1 associated with the differences in mineral fertilization and the quality of organic amendments, with the soils without organic amendment being more similar to MO. The separations via PC1 were principally driven by bacteria and associated with soil pH and soil C, N and P. The separations via PC2 were driven by fungi, actinomycetes and Gram (−) bacteria, and associated with soil bulk density. The separations via both PC1 and PC2 were associated with soil aggregate stability and exchangeable K, indicating the effects of weathering and soil aggregation. The results suggest that in spite of the importance of mineral fertilization and organic amendments, tillage and land-use type play a significant role in determining the nature of the development of associated soil microbial community structures at the initial stages of soil formation. 相似文献
102.
为了解紫花苜蓿在贵州地区的适应性及耐酸铝胁迫机理,以44份紫花苜蓿品种为研究对象,研究紫花苜蓿处于酸铝胁迫下的生理变化,并揭示其生理变化与耐酸铝胁迫间的关系。利用基因与环境互作模型对两个地点1年的紫花苜蓿进行产量分析,筛选出阿尔冈金、新疆大叶苜蓿、Trifecta、Vernal和中牧1号苜蓿5个耐酸铝强适应品种。利用敏感型UC-1465和耐受型阿尔冈金进行酸铝胁迫试验。结果表明:相同处理下,耐受型紫花苜蓿的电导率、相对铝含量、死亡率显著低于敏感型;紫花苜蓿对酸铝胁迫的响应主要通过柠檬酸、苹果酸、乙酸、酒石酸、反丁烯二酸和草酸的显著(P<0.05)增加来体现,其中苹果酸的合成和分泌增多可能是其耐酸铝胁迫的重要原因。 相似文献
103.
本试验以1株饲用益生菌解淀粉芽孢杆菌B7(Bacillus amyloliquefaciens B7,B.amyloliquefaciens B7)为研究对象,为了增强其在液态条件下的发酵水平,提高其芽孢发酵工艺优化效率,拟采用测定芽孢吡啶二羧酸(dipicolonic acid,DPA)浓度的方法来代替传统的平板芽孢计数法,以探讨此测定方法在芽孢发酵优化工艺中的可行性。首先,通过单因素试验筛选出对菌株产孢有显著促进作用的因子,进一步通过正交优化试验确定蛋白胨、玉米粉、大米蛋白粉和Mn2+组合的最优水平。结果表明,发酵液中的芽孢浓度与测定的DPA荧光强度呈线性相关,在蛋白胨20 g/L、玉米粉10 g/L、大米蛋白粉20 g/L、Mn2+1.0 mmol/L时发酵48 h,检测到DPA荧光强度达到最大,其相应的芽孢浓度达到7.0×109 CFU/mL。与实验室常用的LB培养基相比,芽孢浓度提高了3.3倍;与工业生产用培养基相比,芽孢浓度提高了2.2倍。本研究为芽孢杆菌发酵过程中芽孢浓度测定提供了一种快速方法,为工业菌株B.amyloliquefaciens B7的发酵提供了一种成分简单且高产芽孢的培养基。 相似文献
104.
为探讨苦瓜抗白粉病的生理生化机制,以对白粉病不同抗性的4个苦瓜品系为材料,研究苗期感染白粉病菌后,苦瓜叶片生理生化指标的变化。结果表明:接种后,叶绿素和可溶性蛋白质量分数均呈先上升后降低的趋势;可溶性糖质量分数呈下降-上升-下降-上升的趋势;抗病品系的可溶性糖、叶绿素质量分数和过氧化物酶(POD)、多酚氧化酶(PPO)活性均高于或显著高于感病品系和高感品系;抗病品系的抗坏血酸(AsA)质量分数的上升和下降的幅度均小于感病品系和高感品系;接种后10~20d,抗坏血酸过氧化物酶(APX)活性表现为抗病品系感病品系高感品系。叶绿素、可溶性糖质量分数和POD、PPO活性与病情指数呈显著或极显著负相关。综上说明,白粉病菌侵染苦瓜后,抗病品系可通过保持较高的叶绿素质量分数,增加可溶性糖、可溶性蛋白、AsA质量分数及增强POD、PPO、APX活性来提高抗病性。叶绿素、可溶性糖质量分数和POD、PPO活性均可作为苦瓜对白粉病抗性早期鉴定的指标。 相似文献
105.
试验旨在获取生物抑霉的优良菌株以及为质量安全青贮饲料生产提供高效菌剂。从青贮饲料、酸奶以及奶豆腐中分离纯化出乳酸菌和霉菌,并且通过双层平板法对具有抑制霉菌活性的乳酸菌菌株进行筛选,测定其上清液抑霉效果;采用蛋白酶处理和高温处理法分析乳酸菌抑霉的有效成分。结果表明:分离筛选的乳酸菌和霉菌经鉴定为植物乳杆菌和黄曲霉菌,且植物乳杆菌对黄曲霉菌的生长有明显抑制作用。蛋白酶处理对乳酸菌无细胞上清液的抑菌活性有不同影响,而加热处理并不改变其抑菌效果。研究表明,植物乳杆菌对黄曲霉菌生长有明显的抑制作用,推测其抑菌活性物质为蛋白质、肽类等,并且这些抑菌活性物质的热稳定性较高。 相似文献
106.
107.
质量控制图在水产饲料氨基酸分析中的应用 总被引:1,自引:0,他引:1
通过对实验室自制标准物料-豆粕样品中氨基酸含量的多次测定,建立X-S质量控制图,开展水产饲料氨基酸分析日常质量控制。试验按照GB/T 18246-2000,通过微波水解-离子交换-柱后衍生-紫外检测法对豆粕样品氨基酸含量进行连续测定,并以FAPAS奶粉标准物质验证,利用偏度-峰度检验法对离群值进行判断,建立赖氨酸、甘氨酸、氨基酸总量质量控制图。结果显示,质量控制图中豆粕质控样赖氨酸、甘氨酸、氨基酸总量测定的RSD值均小于4%,FAPAS奶粉标准物质测定值落在参考范围内,建立的质量控制图能对日常氨基酸检测结果进行有效监控。结果表明,所建立氨基酸质量控制图直观有效,能对过程存在的异常因素起到预警作用,并可节约成本。 相似文献
108.
109.
本文主要对低压配电系统SPD的过电流保护装置进行了讨论,并阐述了新型防雷型熔断器的设计思路和自有独创性。 相似文献
110.
Meghnath Pokharel Anuj Chiluwal Michael Stamm Doohong Min Davina Rhodes S.V. Krishna Jagadish 《Journal of Agronomy and Crop Science》2020,206(5):579-596
Winter canola (Brassica napus L.) is highly sensitive to increasing temperatures during the reproductive and pod-filling stages. Although the impact of high day-time temperature stress on yield and quality has been documented in canola, similar information under high night-time temperature (HNT) stress is not available. Using six hybrids and four open-pollinated cultivars, we observed a marked shift in peak flowering towards earlier, cooler hours of the morning under HNT. Averaged across two independent experiments, the photochemical efficiency of photosystem II was significantly decreased (3%), with a significant increase in thylakoid membrane damage (13%) in the leaves of susceptible cultivars under HNT stress. Similarly, the susceptible cultivars also recorded significant reduction in biomass (34%), pod number (22%), pod weight (37%) and total seed weight (40%) per plant while the same set of agronomic traits were not affected among the tolerant cultivars. Quantitative impact of heat stress was confirmed with increased sensitivity to HNT exposure from gametogenesis until maturity resulting in a significantly higher yield loss compared to stress exposure from post-flowering till maturity. HNT significantly decreased oil concentration, but increased protein concentration and saturated fatty acid levels in seeds of the susceptible cultivars. However, HNT had no impact on the unsaturated fatty acids in both hybrids and the open-pollinated cultivars. Breeding targets based on fatty acid composition for enhancing canola seed quality may not be easily amenable due to the inconsistency documented with the compositional changes under heat stress. In summary, our findings conclude that canola hybrids are better suited to regions experiencing heat stress, compared to open-pollinated cultivars, indicating the possibility of a complete shift to hybrid canola cultivation under predicted hotter climates in the future. 相似文献