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991.
992.
J. Huang E. Scudiero W. Clary D. L. Corwin J. Triantafilis 《Soil Use and Management》2017,33(2):191-204
The volumetric soil water content (θ) is fundamental to agriculture because its spatiotemporal variation in soil affects the growth of plants. Unfortunately, the universally accepted thermogravimetric method for estimating volumetric soil water content is very labour intensive and time‐consuming for use in field‐scale monitoring. Electromagnetic (EM) induction instruments have proven to be useful in mapping the spatiotemporal variation of θ. However, depth‐specific variation in θ, which is important for irrigation management, has been little explored. The objective of this study was to develop a relationship between θ and estimates of true electrical conductivity (σ) and to use this relationship to develop time‐lapse images of soil θ beneath a centre‐pivot irrigated alfalfa (Medicago sativa L.) crop in San Jacinto, California, USA. We first measured the bulk apparent electrical conductivity (ECa – mS/m) using a DUALEM‐421 over a period of 12 days after an irrigation event (i.e. days 1, 2, 3, 4, 6, 8 and 12). We used EM4Soil to generate EM conductivity images (EMCIs). We used a physical model to estimate θ from σ, accounting for soil tortuosity and pore water salinity, with a cross‐validation RMSE of 0.04 cm3/cm3. Testing the scenario where no soil information is available, we used a three‐parameter exponential model to relate θ to σ and then to map θ along the transect on different days. The results allowed us to monitor the spatiotemporal variations of θ across the surveyed area, over the 12‐day period. In this regard, we were able to map the soil close to field capacity (0.27 cm3/cm3) and approaching permanent wilting point (0.03 cm3/cm3). The time‐lapse θ monitoring approach, developed using EMCI, has implications for soil and water use and management and will potentially allow farmers and consultants to identify inefficiencies in water application rates and use. It can also be used as a research tool to potentially assist precision irrigation practices and to test the efficacy of different methods of irrigation in terms of water delivery and efficiency in water use in near real time. 相似文献
993.
Soil physical changes and maize growth in a structurally fragile tropical soil due to mulching and duration between irrigation intervals
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E. G. Moura V. R. A. Macedo V. G. L. Sena L. S. Campos A. C. F. Aguiar 《Soil Use and Management》2017,33(4):631-638
Under tropical meteorological conditions, the volume of soil explored by plant roots is crucial for crop growth as it allows increased water and nutrient use efficiency. We hypothesized that, under different irrigation intervals, leguminous mulch can extend the duration between irrigation events but maintain crop performance, because decreased evaporative fluxes also reduce constraints to root exploration imposed by mechanical stress. We evaluated the combined effects of leguminous mulch and irrigation intervals on soil physical properties to determine whether the growth and productivity of maize were modified in a structurally fragile tropical soil. The experiment involved the following treatments: 4‐day irrigation intervals with soil mulched (4C) or bare (4S), 6‐day irrigation intervals with soil mulched (6C) or bare (6S), 8‐day irrigation intervals with soil mulched (8C) or bare (8S) and 10‐day irrigation intervals with soil mulched (10C) or bare (10S). Mulch decreased soil penetration resistance and increased to 4 days the favourable time for root development in drying soil. Relative to bare soil, mulch with a 6‐day irrigation interval almost doubled nitrogen uptake post‐tasselling, which decreased nitrogen remobilization and increased the crop growth rate during this stage. These conditions had a positive effect on the transpiration rate and stomatal conductance as well as on the growth and yield of maize. A 6‐day irrigation interval with mulch compared to 4 days with bare soil resulted in similar conditions for root development, but greater uptake of nitrogen (102.73–78.70 kg/ha) and better yield (6.2–5.3 t/ha), which means greater efficiency in nitrogen and water use. 相似文献
994.
995.
采用组织块分离法从采后发病芒果果肉中分离病原菌,通过形态学观察、r DNA-ITS序列和系统发育树分析对其进行鉴定,并初步研究其生物学特性。结果表明:从发病芒果中分离到的病菌T0408鉴定为Colletotrichum asianum Prihastuti,L.CaiK.D.Hyde。该菌菌丝生长的适宜温度为20~30℃、适宜pH值为5~8;环境湿度在75%~98%范围内,湿度越大,菌丝生长速度越快,在3 000 lx日光灯的光照强度下连续光照有利于菌丝的生长和产孢;孢子萌发的适宜温度为25~30℃、适宜pH值为6~8,环境湿度为75%~98%,湿度越大、在3 000 lx日光灯的光照强度下连续光照有利于孢子的萌发。 相似文献
996.
慢性肾病(Chronic kindey disease,CKD)作为高发病率、低防治率的常见疾病之一,目前尚无非人灵长类动物在CKD模型中应用的进展报告。建立CKD模型的非人灵长类动物主要是猕猴属中恒河猴、食蟹猴和豚尾猴3种。从造模方式看,主要采用的方法有诱导性模型和自发性模型两种。诱导型造模可分为药物诱导、免疫诱导、重金属化合物诱导、辐射损伤、生物诱导等不同方法。从肾脏病理改变看,有以肾小球病理改变为主,如猪尾猴疟原虫、牛丙种球蛋白等诱导者;有以肾小管病理改变为主,如氯化镉、顺铂等诱导者;有兼顾肾小球和肾小管损伤,如猴免疫缺陷病毒(SHIV)诱导者。为利用非人灵长类动物进行CKD相关研究提供了方法学汇总,具有一定参考价值。 相似文献
997.
通过设置黑豆-油菜、大豆-油菜的轮作模式在湖南醴陵进行大田试验,结果发现黑豆表现出较强的镉富集能力,其根、茎、叶及果壳中镉含量分别为2.14、2.63、4.10及1.34 mg/kg,富集系数均在1以上。油菜各个部位镉含量较高的分别为叶与茎,达到了7.13和4.73 mg/kg。黑豆各部位镉转运系数均高于大豆,各油料作物提取的重金属主要集中在茎与叶。大豆叶的镉富集系数为2.06,茎的镉富集系数为0.86,明显低于黑豆同部位的富集能力。每公顷土地经过一轮黑豆-油菜、大豆-油菜轮作分别能够从土壤中提取73.52 g和51.68 g的镉,对土壤重金属镉的修复效率约为3%。 相似文献
999.
为解决草莓采后果实腐烂变质问题,将草莓置于甘草提取液、乳酸钙溶液、蒸馏水中浸泡1 min,取出晾干后常温贮藏,比较3组草莓失重率、腐烂率、可溶性糖、维生素C含量、超氧化物歧化酶SOD活性的变化。与对照组相比,贮藏7天后,甘草提取液组草莓失重率降低34.72%、腐烂率降低31.56%、可溶性糖含量提高99.10%、维生素C含量提高154.55%、超氧化物歧化酶SOD活性提高206.24%,乳酸钙处理和甘草提取液保鲜效果没有显著差异(P>0.05)。实验期内,2种处理方法均可提高草莓保鲜效果。 相似文献
1000.
通过对海南省文昌市南阳镇、琼海市大路镇、乐东县黄流镇3个地区‘马来西亚1号’菠萝蜜叶片氮、磷、钾3种营养元素的周年变化规律跟踪调查分析,结果表明:3个地区菠萝蜜叶片营养元素变化规律相似。元素年平均含量表现为氮>钾>磷。根据实际生产中的生育期调研分析,将菠萝蜜的生长周期大致划分为2个批次3个时期:第一批次养树期(11—12月)、花芽分化期(1—2月)、结果期(3—4月);第二批次养树期(5—6月)、花芽分化期(7—8月)、结果期(9—10月)。生长周期内,氮元素含量年变化呈现“N”字型变化趋势;磷含量在1—4月呈先上升后下降的趋势,随后呈缓慢上升趋势;钾含量变化趋势与氮含量变化相似,但钾元素含量变化没有氮元素变化明显。菠萝蜜叶片中大量元素含量的适宜范围为:全氮21.03~22.15 g/kg,全磷2.86~3.40 g/kg,全钾13.49~14.47 g/kg。在生长发育过程中,菠萝蜜需氮、钾元素较多,特别是在花芽分化期和结果期,应注意增施氮肥与钾肥,磷肥应于养树期施足。 相似文献