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31.
Effects of sediment load on the abrasion of soil aggregate and hydraulic parameters in experimental overland flow 下载免费PDF全文
The breakdown of soil aggregates under rainfall and their abrasion in overland flow are important processes in water erosion due to the production of more fine and transportable particles and, the subsequent significant effect on the erosion intensity. Currently, little is known about the effects of sediment load on the soil aggregate abrasion and the relationship of this abrasion with some related hydraulic parameters. Here, the potential effects of sediment load on soil aggregate abrasion and hydraulic parameters in overland flow were investigated through a series of experiments in a 3.8-m-long hydraulic flume at the slope gradients of 8.7 and 26.8%, unit flow discharges from 2×10~(–3) to 6×10~(–3) m~2 s~(-1), and the sediment concentration from 0 to 110 kg m~(–3). All the aggregates from Ultisols developed Quaternary red clay, Central China. The results indicated that discharge had the most significant(P0.01) effect on the aggregates abrasion with the contributions of 58.76 and 60.34%, followed by sediment feed rate, with contributions of 39.66 and 34.12% at the slope gradients of 8.7 and 26.8%, respectively. The abrasion degree of aggregates was found to increase as a power function of the sediment concentration. Meanwhile, the flow depth, friction factor, and shear stress increased as a power function along with the increase of sediment concentration at different slope gradients and discharges. Reynolds number was obviously affected by sediment concentration and it decreased as sediment concentration increased. The ratio of the residual weight to the initial weight of soil aggregates(Wr/Wi) was found to increase as the linear function with an increasing flow depth(P=0.008) or Reynolds number(P=0.002) in the sediment-laden flow. The Wr/Wi values followed a power function decrease with increasing friction factor or shear stress in the sediment-laden flow, indicating that friction factor is the best hydraulic parameter for prediction of soil aggregate abrasion under different sediment load conditions. The information regarding the soil aggregate abrasion under various sediment load conditions can facilitate soil process-based erosion modeling. 相似文献
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33.
Giulia BONGIORNO 《农业科学与工程前沿(英文版)》2020,7(3):257-274
Developments in soil biology and in methods to characterize soil organic carbon can potentially deliver novel soil quality indicators that can help identify management practices able to sustain soil productivity and environmental resilience. This work aimed at synthesizing results regarding the suitability of a range of soil biological and biochemical properties as novel soil quality indicators for agricultural management. The soil properties, selected through a published literature review, comprised different labile organic carbon fractions [hydrophilic dissolved organic carbon, dissolved organic carbon, permanganate oxidizable carbon (POXC), hot water extractable carbon and particulate organic matter carbon], soil disease suppressiveness measured using a Pythium-Lepidium bioassay, nematode communities characterized by amplicon sequencing and qPCR, and microbial community level physiological profiling measured with MicroRespTM. Prior studies tested the sensitivity of each of the novel indicators to tillage and organic matter addition in ten European long-term field experiments (LTEs) and assessed their relationships with pre-existing soil quality indicators of soil functioning. Here, the results of these previous studies are brought together and interpreted relative to each other and to the broader body of literature on soil quality assessment. Reduced tillage increased carbon availability, disease suppressiveness, nematode richness and diversity, the stability and maturity of the food web, and microbial activity and functional diversity. Organic matter addition played a weaker role in enhancing soil quality, possibly due to the range of composition of the organic matter inputs used in the LTEs. POXC was the indicator that discriminated best between soil management practices, followed by nematode indices based on functional characteristics. Structural equation modeling shows that POXC has a central role in nutrient retention/supply, carbon sequestration, biodiversity conservation, erosion control and disease regulation/suppression. The novel indicators proposed here have great potential to improve existing soil quality assessment schemes. Their feasibility of application is discussed and needs for future research are outlined. 相似文献
34.
NaCl胁迫对葡萄砧木光合特性与叶绿素荧光参数的影响 总被引:2,自引:2,他引:0
为探究葡萄(Vitis sp.)砧木对盐胁迫的响应机制,以耐盐葡萄砧木品种101-14M(V. riparia×V. rupestris)和盐敏感品种188-08(V. berlandieri × V. riparia)的一年生苗为试材,比较研究了0、4、6、8、10 g·kg-1的NaCl胁迫对2种砧木叶片叶绿素含量、光合气体交换参数和叶绿素荧光参数的影响。结果表明:随着盐浓度升高,净光合速率、气孔导度、胞间二氧化碳浓度和蒸腾速率显著下降,同时最大荧光产量、最大光化学效率、实际光化学效率和光化学淬灭系数也呈下降趋势,初始荧光产量、非光化学淬灭系数和叶绿素含量表现为先升高后降低。在6 g·kg-1 NaCl胁迫下,188-08光合速率降低主因由气孔限制转向叶绿素限制,并在8 g·kg-1 NaCl胁迫下PSⅡ受到严重损伤;而101-14M叶片在8 g·kg-1盐胁迫下主要因叶绿素限制造成光合受限,并在10 g·kg-1盐胁迫下PSⅡ反应中心遭受损伤。 相似文献
35.
本试验旨在研究围产期奶牛饲喂过瘤胃胆碱(RPC)对泌乳性能、血液生化指标及繁殖性能的影响。试验采用单因素试验设计,选用60头年龄、胎次、预产期、上一胎次产奶量相近的健康围产期奶牛,随机分为3组,每组20头。Ⅰ组饲喂基础日粮,Ⅱ组和Ⅲ组在基础日粮上分别添加25 g/d和50 g/d RPC,饲喂期从产前3周至产后3周,共42 d。结果表明:Ⅱ组产奶量在产后1~8周显著高于Ⅰ组和Ⅲ组(P0.05);在产后第2周,Ⅲ组的乳脂率、乳蛋白率显著高于Ⅰ组(P0.05);在整个试验期,Ⅱ组的谷丙转氨酶含量显著低于Ⅰ组(P0.05),Ⅲ组的天门冬氨酸转氨酶显著含量低于Ⅰ组(P0.05);产后第1周和第2周,Ⅱ组的β-羟丁酸、非酯化脂肪酸含量显著低于Ⅰ组(P0.05);Ⅱ组的甘油三酯含量显著高于Ⅰ组和Ⅲ组(P0.05),Ⅲ组的总胆固醇含量显著高于Ⅰ组(P0.05);日粮中添加RPC可以显著提高情期受胎率(P0.05),显著缩减奶牛空怀天数(P0.05),也对产后初次配种时间的缩短和配种次数的降低有影响。日粮中添加RPC可提高围产期奶牛生产性能,对血液生化指标和繁殖性能产生有利影响,本试验条件下RPC最佳添加剂量为每头牛25 g/d。 相似文献
36.
Verticillium dahliae is a soil-borne and vascular pathogen causing Verticillium wilt of cotton, which is one of the most severe diseases affecting cotton production in China. Recently, a soil-inhabiting opportunistic pathogen was isolated and identified as Scopulariopsis gossypii; it could infect the host through wounds and increase disease severity in combination with V. dahliae. S. gossypii was able to form conidia in a nutritionally poor substrate and had similar biological characteristics to other vascular pathogens, while ultrastructure observation also confirmed that it was present in vascular tissue of cotton plants and produced conidia. Nematode activity in soil could cause wounds on the surface of cotton roots resulting in infection by the pathogens. On the basis of our analysis of the biological characteristics and infection process of S. gossypii and its interactions with other pathogens in cotton plants, we propose establishing a research program for multipathogen-host interactions in the cotton rhizosphere, which will enable detailed investigation of the synergistic pathogenesis of S. gossypii and V. dahliae. 相似文献
37.
This study aimed to evaluate the effect of sorghum and sweet potato on the bioavailability of iron, gene expression of proteins involved in iron metabolism and the plasma antioxidant capacity in animals fed with whole sorghum grains processed by dry heat or extrusion, combined or not with sweet potato flour with high content of carotenoids. Five experimental groups were tested (n = 7): dry heat sorghum flour (DS); extruded sorghum flour (ES); whole sorghum flour + sweet potato flour (DS + SP); extruded sorghum flour + sweet potato flour (ES + SP) and positive control (FS). The evaluations included: hemoglobin gain, hemoglobin regeneration efficiency, gene expression of divalente metal transporter 1 (DMT-1), duodenal citochroma B (DcytB), ferroportin, hephaestin, transferrin and ferritin and total plasma antioxidant capacity (TAC). The ES + SP group showed higher (p < 0.05) expression of DcytB, ferroportin and hephaestin when compared to the control group. The DS group showed high (p < 0.05) expression of DMT-1 and the ES showed high mRNA expression of transferrin and ferritin. The changes in the sorghum physicochemical properties from extrusion process reduced the iron and phytate content, and increased the gene expression of proteins involved in iron metabolism, improving iron bioavailability. The combination of sweet potato and sorghum flour (dry or extruded) improved the iron capture and total antioxidant capacity, probably due to the presence of β-carotene and antioxidant compounds. 相似文献
38.
本研究采用PSA培养基对上海地区的番茄棒孢叶斑病的病原菌进行分离、培养及致病性测定,通过形态学和分子生物学方法鉴定病原菌,并对该病菌的生物学特性进行研究。结果表明:番茄棒孢叶斑病病原菌菌落呈灰褐色,菌丝质地致密、绒毛状;分生孢子单生或串生,圆柱形或倒棍棒形、顶端钝圆,基部平截,呈半透明至浅褐色,假隔膜4~10个,直或稍弯曲,基脐加厚,深褐色。结合病原菌rDNA ITS序列测定、比对后,确定该病原为多主棒孢Corynespora cassiicola。该病菌的菌丝生长最适温度为25~30℃,最适pH范围为4~8,产孢的最适温度约为25℃,最适pH范围为5~9,麦芽糖和乳糖为碳源的培养基适宜菌丝生长,可溶性淀粉和乳糖溶液中孢子萌发率最高,光暗交替条件适宜菌丝生长,孢子在水滴中极易萌发。这是该病在上海地区的首次报道。 相似文献
39.
本研究从节瓜根际分离到一株具有防病促生功能的荧光类假单胞菌FP1761。该菌株对部分植物病原真菌和细菌具有拮抗能力,能够解钾、解有机磷和无机磷,可产生氨、蛋白酶、嗜铁素、吲哚乙酸。生物测定表明菌株FP1761可显著促进小麦生长。生理生化、平均核苷酸相似度、16S rDNA和多基因分析将FP1761鉴定为摩拉维亚假单胞菌(Pseudomonas moraviensis)。菌株FP1761基因组草图全长6.12 Mb,(G+C)含量为59.9%,共编码5467个基因序列。将该菌株与种内3个代表性菌株进行泛基因组和核心基因组分析,共产生 4 357个共有基因,菌株FP1761特有基因327个。利用antiSMASH对菌株次生代谢基因簇进行预测,发现其含有8个潜在的次生代谢产物基因簇。其中两个基因簇与嗜铁素pyoverdine合成相关,未见聚酮类合成基因。基因组分析发现,该菌株具有与病原性假单胞菌相似的III型分泌系统,但丢失了效应蛋白调控因子hrpS和转运相关的hrpH和hrpK1基因。对全基因组扫描,菌株FP1761仅保留了病原性假单胞菌的保守效应蛋白AvrE和HopAA1-1。FP1761是目前已发现的唯一具有III型分泌系统的摩拉维亚假单胞菌。本研究表明摩拉维亚假单胞菌FP1761具有潜在的植物防病促生功能,但其III型分泌系统与植物益生互作机制有待进一步解析。 相似文献
40.
生物食诱剂对山东省莒南县花生田夜蛾科成虫监测与诱杀效果的初步评价 总被引:1,自引:0,他引:1
在山东莒南县花生田利用生物食诱剂和性诱剂对常见夜蛾科害虫成虫进行虫情监测,并对食诱剂防控夜蛾科害虫的效果进行研究。食诱剂和性诱剂监测结果表明,花生田棉铃虫、甜菜夜蛾、斜纹夜蛾、黄地老虎、小地老虎等夜蛾科害虫成虫的发生高峰期均出现在7月12日;性诱剂仅能诱捕到雄性成虫,食诱剂可同时诱捕到雌性和雄性成虫,其诱捕到的棉铃虫、甜菜夜蛾、斜纹夜蛾、地老虎雌雄比分别为1∶0.68、1∶5、1∶3和1∶1.4。食诱剂撒施、化学防治、食诱剂诱捕盒技术与化学防治组合处理后第10天花生叶片受害率分别为9.51%、6.73%、6.24%,百株虫量较对照降低68.68%、76.39%、85.87%,食诱剂诱捕盒技术与化学防治组合应用防控效果优良。 相似文献