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41.
以吉林省三岔子林业局不同林龄的林分为对象,调查与分析黄檗野生种群的资源状况,结果表明:单位面积活立木平均株数在幼龄林林分中占12.3%,在中龄林中占3.8%,在成过熟林中占2.6%,3个龄组林分的平均株数比例为6.2%;单位面积活立木平均蓄积在幼龄林林分中占7.3%,在中龄林中占2.4%,在成过熟林中占1.3%,3个龄组林分的平均蓄积比例为3.7%。  相似文献   
42.
Nutrient‐rich biochar produced from animal wastes, such as poultry litter, may increase plant growth and nutrient uptake although the role of direct and indirect mechanisms, such as stimulation of the activity of mycorrhizal fungi and plant infection, remains unclear. The effects of poultry litter biochar in combination with fertilizer on mycorrhizal infection, soil nutrient availability and corn (Zea mays L.) growth were investigated by growing corn in a loam soil in a greenhouse with biochar (0, 5 and 10 Mg/ha) and nitrogen (N) and phosphorus (P) fertilizer (0, half and full rates). Biochar did not affect microbial biomass C or N, mycorrhizal infection, or alkaline phosphomonoesterase activities, but acid phosphomonoesterase activities, water‐soluble P, Mehlich‐3 Mg, plant height, aboveground and root biomass, and root diameter were greater with 10 Mg/ha than with no biochar. Root length, volume, root tips and surface area were greatest in the fully fertilized soil receiving 10 Mg/ha biochar compared to all other treatments. The 10 Mg/ha biochar application may have improved plant access to soil nutrients by promoting plant growth and root structural features, rather than by enhancing mycorrhizal infection rates.  相似文献   
43.
Soil organic carbon (SOC) content and its spatial distribution in the Northern Gangetic Plain (NGP) Zone of India were determined to establish the cause–effect relationship between agro‐ecological characteristics, prevailing crop management practices and SOC stock. Area Spread Index (ASI) approach was used to collect soil samples from the NGP areas supporting predominant cropping systems. Exponential ordinary kriging was found most suitable geo‐statistical model for developing SOC surface maps of the NGP. Predicted surface maps indicated that 43.7% area of NGP had 0.5–0.6% SOC, while the rest of the area was equally distributed with high (0.61–0.75%) and low (< 0.5%) SOC content levels. Averaged across cropping systems, maximum SOC content was recorded in Bhabar and Tarai Zone (BTZ), followed by Central Plain Zone (CPZ), Mid‐Western Plain Zone (MWPZ), Western Plain Zone (WPZ) and South‐Western Plain Zone (SWPZ) of the NGP. The SOC stock was above the optimum threshold (> 12.5 Mg/ha) in 97.8, 57.6 and 46.4% areas of BTZ, CPZ and MWPZ, respectively. Only 9.8 and 0.4% area of WPZ and SWPZ, respectively, had SOC stock above the threshold value. The variation in SOC stock was attributed largely to carbon addition through recycling of organic sources, cropping systems, tillage intensity, crop or residue cover and land‐use efficiency, nutrient‐use pattern, soil texture and prevailing ecosystem. Adoption of conservation agriculture, balanced use of nutrients, inclusion of legumes in cropping systems and agro‐forestry were suggested for enhancing SOC stock in the region.  相似文献   
44.
山区区域特色产业的选择与培育——以铜仁市为例   总被引:1,自引:0,他引:1  
阐述了山区区域特色产业的概念和内涵,分析了铜仁市特色产业的现状及存在的问题,并提出了特色产业发展的思路及对策。铜仁市应从科学规划,人才引进,品牌培育及多方融资等方面促进特色产业的发展。  相似文献   
45.
基于农作制分区的1985—2015年中国小麦生产时空变化   总被引:4,自引:0,他引:4  
Comparing spatio-temporal variation characteristics of China’s wheat production, yield, sown area and yield-area-contribution in different farming zones in the past 30 years could help improving wheat planting layout and adjusting planting structure. Concentration index, rate of change, moving of gravity and resolution of yield-area-contribution were used to analyze spatio-temporal changes of China’s wheat production and yield-area-contribution based on county wheat production statistics including sown area, production and yield from 1985 to 2015. The wheat sown area decreased obviously in Northeast farming region, Northwest farming region and South farming region and increased rapidly in Huang-Huai-Hai farming region and Yangtze Plain farming region. In Huang-Huai-Hai farming region, the concentration indexes of Haihe Plain farming region, Huang-huai Plain farming region and Fenwei Basin farming region reached to 20.64%, 25.77%, and 21.65% respectively in 2015. Wheat production increased significantly by more than 48 milliontons in Huang-Huai-Hai farming region, and nearly 8 million tons Yangtze Plain farming region but decreased by more than 2.6 million tons in Northeast farming region. In Huang-Huai-Hai farming region, wheat production was concentrated in Haihe Plain farming region, Huang-huai Plain farming region and Yuxi Hill farming region. The average wheat yield continuously improved during the study period, Huang-Huai-Hai farming region and Northwest farming region had the yield increase up to 103.5 kg hm -2 and 92.9 kg hm -2 each year. Wheat yield in Yuxi Hill farming region, Fenwei Basin farming region and Haihe Plain farming region was relatively high in Huang-Huai-Hai farming region. The yield-reduced area was mainly caused by the decreasing of sown area, while the yield-area-contribution rate was different in yield-increased area. Yield-dominant counties were reduced, area-dominant counties were increased and yield-area-dominant counties were relatively steady. In production increased area, yield-dominant and yield-area-dominant counties were the main types in Huang-Huai-Hai Farming region, area-dominant and yield-area-dominant counties were the main types in Yangtze Plain farming region. Chinese wheat production was increasingly concentrated in Huang-Huai-Hai farming region which has high and rapid increase of wheat yield over the past three decades. Haihe Plain farming region, Huang-huai Plain farming region and Fenwei Basin farming region were the most concentrated areas in Huang-Huai-Hai farming region for wheat production during this period. Wheat yield and sown area jointly promoted the increase of wheat production in Huang-Huai-Hai farming region, wheat sown area was the crucial factor to increase wheat production in Yangtze Plain farming region, especially in the north of Jiangsu, Anhui province and greater part of Xinjiang.  相似文献   
46.
青土湖水面形成区土壤颗粒组成与化学特性变化   总被引:2,自引:1,他引:1  
青土湖输水作为石羊河流域治理的一项关键措施,对保护湖区水资源和生态环境具有重要意义。在距青土湖水面边缘东南方向0-450 m的10个样点中分3层取0-60 cm土样,测定土壤粒径的质量百分比与全氮、全磷、全钾和电导率,分析青土湖水面形成后土壤颗粒组成与化学特性变化。结果表明,随着离水面边缘距离的增加,土壤颗粒与化学特性呈有规律的增减变化,土壤粘粉粒组成与其全磷、全钾之间存在正线性相关。青土湖水面形成加剧了距水面边缘0-150 m处的土壤理化性质变化;土壤细粒及养分出现富集,分别在距水面边缘100-150 m和300 m处达到最大值。因此,土壤养分与土壤细物质的良好相关性表明,土壤粘粉粒变化可作为反映该区域土壤性状变化和评价衡量水面形成后土壤恢复程度的定量指标之一。  相似文献   
47.
面对当前农村劳动力转移给农业发展带来的挑战和机遇,转换农业技术模式尤为重要.采用理论分析和调查访谈相结合的方法,得出河南欠发达平原农业区农业技术模式转换必须结合本地实际,遵循诱致性轨迹,注重转换过渡模式,即以农民社会资本为纽带进行土地流转,形成土地适度渐进规模经营,以村集体、宗族等为核心发展种子、生物科技、中小型机械设...  相似文献   
48.
张伟  何俊皓  郝文芳 《草业科学》2016,33(7):1391-1402
以吴起县杨青川流域草地为研究对象,对封育(Enclosure)、放牧(Grazing)、施肥(Fertilization)、刈割(Clipping)、灭鼠(Deratization)5种管理方式的草地群落进行调查,并运用Levins生态位宽度和Pianka生态位重叠指数对5种管理方式下主要植物种群生态位特征进行分析。结果表明,达乌里胡枝子(Lespedeza davurica)、铁杆蒿(Artemisia sacrorum)、赖草(Leymus secalinus)、猪毛蒿(Artemisia scoparia)和硬质早熟禾(Poa sphondylodes)的种群总生态位宽度较大,封育放牧施肥刈割灭鼠管理模式下,生态位宽度最大的分别是达乌里胡枝子、赖草、紫花地丁(Viola philippica)、达乌里胡枝子和猪毛蒿,生态位宽度值大于4的物种数分别为6、6、3、4和3种。不同管理方式下各种对间的重叠指数平均值由大到小依次封育放牧施肥刈割灭鼠。施肥管理中,种群间生态位宽度与生态位重叠之间存在线性关系,其它管理方式中种群生态位宽度与生态位重叠之间不存在线性关系。生态位分析表明,封育和放牧管理下种群间对资源的需求趋于相同,彼此间通过竞争共存,有利于群落演替,草地生态系统逐渐得到恢复,施肥、刈割、灭鼠管理使群落物种竞争排序发生变化,破坏了草地生态系统原有的竞争机制,导致群落向简单群落演替。从牧草发展角度出发,封育、施肥和刈割有利于优质牧草生长。  相似文献   
49.
[目的]通过冷地早熟禾(Poa crymophila)、中华羊茅(Festuca sinensis cv.)、星星草(Puccinella tenuiflora)和野生早熟禾(wild Poa pratensis)4种小草籽的引进繁育,观察小草籽品种的适应性和坪用性,筛选出抗逆性强、管理粗放、适应城市绿化栽植的人工草坪地植被品种,为品种资源的开发打下良好基础。[方法]2009年在青海省共和盆地木格滩高寒半干旱地区种植牧草田,2010年观察牧草各品种的越冬性能、生长习性、适用性和坪用性。[结果]4种牧草品种越冬率均在95.0%以上,表现出耐寒、越冬性极强的特点。中华羊茅生育期最长,其次是冷地早熟禾,野生早熟禾和星星草生育期最短。持续高温干旱天气对中华羊茅生长发育有明显影响,而对其他3种牧草的影响较小。4种牧草品种的实际草籽产量顺序依次为中华羊茅〉野生早熟禾〉冷地早熟禾〉星星草。中华羊茅产草量和地上生物产量比星星草、冷地早熟禾和野生早熟禾高。种子产量中,中华羊茅最大,其次是星星草,冷地早熟禾和野生早熟禾种子产量相同,最小。[结论]中华羊茅、星星草、冷地早熟禾和野生早熟禾均适用于海拔3 000 m以上地区种植。  相似文献   
50.
鸡繁殖性能近交衰退是地方鸡遗传资源活体保种过程中面临的重要问题之一,本研究旨在探讨全基因组CpG岛(CpG island,CGI)区DNA甲基化在鸡繁殖性能近交衰退中的作用。分别从狼山鸡高近交组和低近交组中各选取健康母鸡3只,即试验分2个组,每组3个重复,然后采用全基因组重亚硫酸盐测序(WGBS)技术,检测分析两组个体性腺轴组织(包括卵巢和下丘脑)全基因组DNA甲基化差异,筛选差异甲基化区域(DMRs),并对CpG岛区差异甲基化基因进行功能注释和富集分析。结果表明,狼山鸡高近交组和低近交组比较,其卵巢和下丘脑基因组整体甲基化水平均不存在显著差异(P>0.05);高、低近交组间差异甲基化区域检测发现,下丘脑和卵巢中分别检测到5 948和4 593个差异甲基化区域,其中1 798和995个差异甲基化区域位于基因组CpG岛区,分别注释到1 020和552个基因;下丘脑中,这些CpG岛区差异甲基化基因显著富集在信号转导、神经系统发育、生殖系统发育和卵母细胞成熟调控等繁殖相关的GO条目,以及转化生长因子β信号通路、乙型肝炎、脂肪酸代谢、胰岛素信号通路等19条KEGG信号通路(P<0.05);卵巢中,CpG岛区差异甲基化基因显著富集于12条信号通路(P<0.05),包括慢性骨髓白血病、流感A、精氨酸和脯氨酸代谢、粘着连接等,一些与卵子发育和性激素分泌相关的信号通路也被富集到,如黄体酮介导的卵母细胞成熟、卵母细胞减数分裂、GnRH信号通路、雌激素信号通路等,其中包含CDC27、ADCY8、AKT3等10个差异甲基化基因。因此,本研究在狼山鸡高、低近交组间检测到了大量差异甲基化区域,并发现大量差异甲基化基因与繁殖性状相关,推测这些基因CpG岛区DNA甲基化可能在狼山鸡繁殖性能近交衰退调控中发挥重要作用,研究结果为进一步深入探索鸡繁殖性能近交衰退调控机制奠定了基础,为物种资源保护和家禽育种工作提供了理论参考依据。  相似文献   
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