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苏南丘陵区秋播苜蓿适用伴生作物筛选试验 总被引:3,自引:0,他引:3
为解决苏南丘陵区苜蓿苗期的杂草问题,从保护播种入手,在多年生黑麦草、一年生黑麦草、黑麦、小黑麦四种作物共五个品种中寻找适宜的伴生作物.通过对产量、株高、杂草率等多个指标测定分析,筛选出中新830小黑麦、赣选一号黑麦草适于用作苜蓿播种的伴生作物,同时获得两个苜蓿存活率最高的处理:苜蓿(15kg/hm^2)+中新830小黑麦(150kg/hm^2)撒播及苜蓿(18 kg/hm^2)+中新830小黑麦(250kg/hm^2)30cm条播.试验还表明撒播方式下,苜蓿播量与其竞争力不成正比。 相似文献
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为提高康乃馨鲜切花的保鲜效果,以鲜切花康乃馨马斯特(Dianthus caryophyllus L.Master)为试材,以乙醇、蔗糖、8-羟基喹啉、硝酸钙的不同混合液为保鲜液,测定不同保鲜液处理对马斯特相关指标的影响。结果表明:不同保鲜液处理在增大花径、保持鲜切花水分平衡、延缓花瓣膜透性增加、抑制鲜切花体内膜脂过氧化等方面均优于对照;其中保鲜液采用3%乙醇+3%蔗糖+200mg·L~(-1) 8-羟基喹啉+200mg·L~(-1)硝酸钙处理效果最好,相比对照能够延缓衰老进程、提高观赏价值,可以作为康乃馨鲜切花的理想保鲜液进行使用。 相似文献
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Perennial rhizomatous grasses (PRGs) tend to have a high yield combined with a low environmental impact. Cultivation in marginal or poorly cultivated land is recommended in order not to compromise food security and to overcome land use controversies. However, the environmental impacts of using different types of soil are still unclear. We thus assessed the environmental impact of two giant reed (GR) systems cultivated in a fertile soil (FS) and in a marginal soil (MS) through a cradle-to-plant gate LCA. We analyzed energy balance, GHG emissions (including LUC, not including iLUC), and the main impacts on air, water and soil quality. In both systems the annualized soil carbon sequestration was more than twofold the total GHG emitted, equal to −6464 kg CO2eq ha−1 in FS and −5757 kg CO2eq ha−1 in MS. Overall, soil characteristics affected not only GR yield level, but also its environmental impact, which seems to be higher in the MS system both on a hectare and tonne basis. The production of GR biomass in marginal soil could thus lead to higher environmental impacts and a more extensive land requirement. 相似文献
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选用中梨一号、秋黄、八月酥、西子绿、丰水5个梨优良品种进行自花及异花授粉,研究其落花落果及坐果特性。结果表明,不同品种自花授粉的坐果率不一样,中梨一号、秋黄、八月酥自花授粉不结实,而丰水自花授粉的坐果率最高,为37.69%。不同授粉品种对落花落果和坐果率的影响也不同,坐果率与落花落果率呈极显著负相关,坐果率与花粉量呈显著正相关。 相似文献
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为探究琥珀酸黄杆菌(Flavobacterium succinicans)对非生物胁迫下多年生黑麦草(Lolium perenne)的缓解效应,本试验研究了菌株DSM4002的生物学特性,并在盆栽条件下,分析了干旱(维持相对含水量(30±5)%处理7 d和14 d)、低温(4℃处理3 d和7 d)和盐胁迫(150 mM NaCl处理5 d和10 d)下根际接种DSM4002对多年生黑麦草生长和生理特性的影响。结果表明,DSM4002具有分泌吲哚乙酸(Indole-3-acetic acid,IAA)、溶磷和产铁载体能力,对壮观霉素、卡那霉素等具有抗性,对氯霉素敏感。同时,接种DSM4002能够提高正常生长、干旱、低温和盐胁迫下多年生黑麦草的生物量、抗氧化酶活性、可溶性糖和脯氨酸含量,降低相对电导率和丙二醛(Malondialdehyde,MDA)含量。综上,琥珀酸黄杆菌促进多年生黑麦草的生长与其自身具有分泌IAA、溶磷和产铁载体能力有关,而且它能够调节植物体内氧化还原平衡,从而增强多年生黑麦草的抗旱、抗寒和抗盐能力。 相似文献
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为探究切花向日葵生产碳足迹和经济效益,通过调研切花向日葵生产企业,利用生命周期评价法评估露地,拱棚和日光温室3种不同生长条件下切花向日葵碳排放,核算生产成本和效益,结果表明:露地切花向日葵生产碳足迹为2174.46kg/hm2,生产成本51994元/ hm2,收入178608元/ hm2;拱棚向日葵生产碳足迹为2041.13kg/ hm2,生产成本59443元/ hm2,收入175973元/ hm2;日光温室向日葵生产碳足迹为2038.92kg/ hm2,生产成本58465元/ hm2,收入179544元/ hm2。3种不同生长条件下切花向日葵生产的主要成本均来自人工,种子,地租和肥料,碳排放最主要的来源均为厩肥和氮肥。在未来切花向日葵生产中,可通过优化生产技术提高肥料利用率,研发专用机械降低劳动力投入,增加轮作等途径来实现减排增收的目的。 相似文献
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Magda Marin Luis A. Valdez-Aguilar Ana Maria Castillo-Gonzalez Joel Pineda-Pineda Juan J. Galván Luna 《Journal of plant nutrition》2013,36(1):12-26
Nutrient solution composition plays an important role in root uptake rate due to interactions among nutrients and internal regulation. Studies to determine the optimum nutrient solution concentration are focused on individual ions, ignoring the adaptation mechanisms triggered by plants when growing in a varying external nutrient concentration. The objective of the present study was to determine the response in growth and tissue ion concentration of lilium cv. ‘Navona’ to nutrient mixtures of varying proportions of nitrogen (N), potassium (K+), and calcium (Ca2+) in solution using mixture experiments methodology in order to determine the optimum concentration. Bulbs of lilium were transplanted in plastic crates and drip-irrigated with the treatment solutions, which consisted of a mixture of N, K+, and Ca2+ whose total concentration was 340 mg L?1 and minimum concentrations of each ion was 34 mg L?1. Chlorophyll concentration (SPAD), shoot fresh weight (FW), leaf FW, and leaf area were measured 60 days after transplanting and ion analysis was performed on shoot tissues from selected treatments. Lilium exhibited a moderate demand for N and K+ (136–170 mg L?1 N and 116–136 mg L?1 K+) and a very low demand for Ca2+ (34–88 mg · L?1). This low demand may be due to the remobilization of the nutrients stored in the bulbs. Integrating the predictions of the models estimated to produce >90% of maximum growth, the optimum nutrient solution should contain Ca2+ at a concentration between 34 and 126 mg · L?1, K+ between 119 and 211 mg · L?1, and N between 92 mg · L?1 and 211 mg · L?1. Increasing external N concentration affected internal N concentration but not internal K+ or Ca2+ concentrations, despite that the increase in external N was associated with a decrease in external K+ and Ca2+. Similar trends were observed for external K+ and Ca2+ concentration. In conclusion, lilium was able to maintain a relatively constant K+ and Ca2+ concentration regardless of the lower concentration in the nutrient solution when N was increased (similar response was observed for K+ and Ca2+) and it has a low Ca2+ demand and moderate N and K+ supply. 相似文献
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