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71.
水产养殖业在我国拥有重要的地位。在过去50多年间,以中国为代表的水产养殖业的发展速度已超过全球人口增速,全球已经有39个国家和地区的水产养殖产量超过了捕捞产量,中国则以水产养殖产量占渔业总产量的73%位列第一[1-2]。随着经济的发展和养殖规模的不断提升,养殖业出现了生产方式落后、效率低下、养殖环境污染、水域生态破坏、病害频发等一系列亟待解决的问题[3-4]。  相似文献   
72.
‘燕青’黄瓜是以雌性系86G为母本,自交系Z-1为父本配制而成的华南型新品种。植株长势较强,强雌型。瓜圆筒形,长20 cm,平均单瓜质量186 g,瓜色白绿色,脆嫩微甜。早熟性突出,耐阴,耐寒,丰产性强,平均总产量达70.74 t • hm-2。适宜重庆及相似生态区春保护地、露地栽培。  相似文献   
73.
为探究永兴县冰糖橙果园土壤肥力特征及其综合性状,为果园土壤改良和合理施肥提供依据。在永兴县冰糖橙主产区采集了284处具有代表性果园表层土壤(0-40cm),测定了土壤有机质、pH值、全氮、碱解氮、有效磷、速效钾、缓效钾等养分指标,运用模糊综合评判法,对永兴县冰糖橙果园及其北、中和南3个区域土壤肥力质量进行了综合评价,并比较3个区域的土壤肥力差异特征。结果表明:永兴县冰糖橙果园土壤肥力为中等水平,土壤为酸性,平均仅5.47;有机质含量较丰富,为较高等水平,平均为25g/kg;土壤全氮含量为较高等水平,平均为1.86g/kg,碱解氮含量为中等水平,平均109mg/kg;有效磷平均含量25.2mg/kg,为中等水平;缓效钾含量偏低,为较低等水平,平均132mg/kg;速效钾含量处于较高等水平,平均153mg/kg。果园的3个区域土壤综合肥力属于中等偏下水平,受地形地貌、成土母质、果园管理及其他因素影响,中部区果园综合肥力高于北部和南部果园。  相似文献   
74.
不同因素影响下层状土壤水分入渗特征及水力学参数估计   总被引:8,自引:1,他引:7  
马蒙蒙  林青  徐绍辉 《土壤学报》2020,57(2):347-358
层状土壤是自然界常见的土体结构,其水分运移规律不同于均质土;大气降水、灌溉水等水分的入渗是土壤水文过程的一个重要环节,同时它也与地下水补给、污染物运移等过程紧密相关。土壤初始含水量、土体构型及供水强度等因素均会影响水分的入渗过程。为探究积水深度、土体构型、初始含水量三种因素对层状土壤水分运移的影响,通过室内积水入渗试验对湿润锋、累积入渗量、土壤剖面压力水头进行观测,并利用Hydrus-1D模型反演水力参数并对相应条件下的水分运移规律进行模拟和分析。结果表明,层状土壤中湿润锋随时间的推进方式由非线性过渡至线性,入渗率逐渐减小。三种因素作用下,层状土壤水分运移特征有明显差异:积水深度、土壤初始含水量增加时,湿润锋运移速率和入渗率均增大,且各观测点压力水头升高加快,土壤不饱和程度降低;上砂壤下粉砂壤构型较上粉砂壤下砂壤构型而言,整体湿润锋推进速率和入渗率较大,出流快,且入渗后期界面处的压力水头高于其他观测点。且结果表明,反演的水力学参数较拟合实测的参数更适用于层状土壤入渗的模拟和预测。该研究旨在揭示和掌握层状土壤水分运移规律和影响因素的作用机制,并进一步为农田灌溉措施的合理制定提供科学依据。  相似文献   
75.
石羊河下游不同立地类型黑果枸杞种群分布格局   总被引:1,自引:0,他引:1  
在样地调查的基础上,结合相邻格子取样方法,采用扩散系数(C)、丛生指标(I)、负二项参数(K)、聚块性系数(Ca)、平均拥挤指标(m*)、聚集度指标(G)、Moristia指数(Iδ)、Green指数(IG)等8个指标,对石羊河下游不同立地类型黑果枸杞种群分布格局、聚集强度进行了研究,结果表明:①沙地和盐碱地黑果枸杞个体数量较多,聚集程度相对较高,砾石和固定半固定沙地黑果枸杞的个体数量较少,聚集程度相对较低;②盐碱地和沙地黑果枸杞种群呈现聚集分布,固定半固定沙地和砾石样地相对于沙地和盐碱地的聚集程度有所减弱,有一定的随机趋势;③不同发育阶段的黑果枸杞种群格局类型总体呈现聚集分布的特点,随着龄级的增大,黑果枸杞种群分布格局表现出由聚集向均匀分布的变化趋势。  相似文献   
76.
Understanding drivers of weed density and diversity is essential for the development of weed management strategies. Here, we compared temporal changes in weed density and diversity under no-till (NT) and conventional (CONV) tillage systems in cotton–maize rotations on loam, clay loam and sandy loam soils immediately after transition to NT in Kadoma, Zimbabwe. The effect of tillage system on weed density varied through the growth season and was dependent upon soil type and species composition of the weed community. Although weed responses to tillage system varied amongst species, we identified general trend effects on weed density on specific soils. At 3 weeks after crop emergence (WACE), weed density on loam soils was 76% and 96% higher in NT than in CONV during the 2009/2010 and 2010/2011 seasons, respectively, and on clay loam soils it was 37% and 33% higher in NT than CONV, respectively. Weed densities in NT and CONV were similar across all soil types at 6 WACE during the 2009/2010 and 2010/2011 seasons and at 9 WACE in 2009/2010. Tillage system did not affect weed density during the growth season on sandy loam soils. Weed diversity (Shannon index) was at least 75% higher in NT than CONV on loam and clay loam soils at 3 WACE during both seasons. It is likely these increases in weed densities following conversion to NT will exacerbate already prevalent weed management problems in the smallholder sector. Earlier weeding is recommended to suppress weed emergence and reduce likely associated crop yield losses.  相似文献   
77.
Acidovorax citrulli is the causal agent of bacterial fruit blotch disease of cucurbits. Strains of this pathogen are distributed into two major groups: Group I strains have been mainly isolated from melon and other non-watermelon cucurbits, while Group II strains have been mainly recovered from watermelon. Here we report the characterization of strains T1 and EP isolated from diseased tomato and eggplant plants, respectively, and further confirmed to belong to A. citrulli species. Based on PCR, PFGE, and rep-PCR, these strains showed high similarity to the Group II strain 7a1. Sequencing and comparative analyses revealed that the genomes of T1 and EP aligned with that of the Group II model strain AAC00-1, over 97.88% and 99.22%, respectively. The virulence of T1, EP, and 7a1 determined on tomato, eggplant, and watermelon was similar and significantly higher than that of Group I strain M6. In contrast, M6 was more virulent on melon. Expression levels of seven virulence genes measured 24 hr after inoculation of tomato, eggplant, watermelon, and melon showed that the expression pattern was generally similar in strains 7a1, T1, and EP, whereas for M6 the expression was high only on melon. Overall, our results indicate that the solanaceous strains belong to Group II. To the best of our knowledge, this is the first study that reports characterization of A. citrulli strains isolated from solanaceous species. The fact that A. citrulli is able to naturally colonize and cause disease in non-cucurbit crops poses additional challenges for management of this important pathogen.  相似文献   
78.
High-density marker-based QTL mapping can serve as an effective strategy to identify novel genomic information to facilitate crop improvement. In this study, we genotyped an F2 population (KB12-1 × PP12-1) using a RAD-seq approach and constructed a high-density linkage map for radish. After a series of filtering procedures were performed, 17,124 SNPs and 3,336 indels with aa × bb genotyping were retained to obtain bin markers. Then, a linkage map comprising a total of 1,221 bin markers in nine linkage groups spanning 1,467.3 cM with an average marker interval of 1.2 cM was constructed. We evaluated the resistance of the F2 mapping population to black rot using F3 progeny, and two major QTLs related to black rot resistance were identified based on this map. Among these QTLs, qBRR2 on Chr.2 explained 26.97% of the phenotypic variation with a LOD score of 11.93, and qBRR7 on Chr.7 accounted for 27.06% of the phenotypic variation with a LOD score of 11.83. The additive effect of qBRR2 was positive (14.97); however, qBRR7 had the opposite effect (−11.99). The high-density linkage map and the major QTLs qBRR2 and qBRR7 provide new important information for disease resistance gene discovery and utilization in genetic improvement.  相似文献   
79.
Optimized nitrogen(N)management can increase N-use efficiency in intercropping systems.Legume-nonlegume intercropping systems can reduce N input by exploiting biological N fixation by legumes.Measurement of N utilization can help in dissecting the mechanisms underlying N uptake and utilization in legume-nonlegume intercropping systems.An experiment was performed with three planting patterns:monoculture maize(MM),monoculture soybean(SS),and maize-soybean relay intercropping(IMS),and three N application levels:zero N(NN),reduced N(RN),and conventional N(CN)to investigate crop N uptake and utilization characteristics.N recovery efficiency and 15N recovery rate of crops were higher under RN than under CN,and those under RN were higher under intercropping than under the corresponding monocultures.Compared with MM,IMS showed a lower soil N-dependent rate(SNDR)in 2012.However,the SNDR of MM rapidly declined from 86.8%in 2012 to 49.4%in 2014,whereas that of IMS declined slowly from 75.4%in 2012 to 69.4%in 2014.The interspecific N competition rate(NCRms)was higher under RN than under CN,and increased yearly.Soybean nodule dry weight and nitrogenase activities were respectively 34.2%and 12.5%higher under intercropping than in monoculture at the beginning seed stage.The amount(Ndfa)and ratio(%Ndfa)of soybean N2 fixation were significantly greater under IS than under SS.In conclusion,N fertilizer was more efficiently used under RN than under CN;in particular,the relay intercropping system promoted N fertilizer utilization in comparison with the corresponding monocultures.An intercropping system helps to maintain soil fertility because interspecific N competition promotes biological N fixation by soybean by reducing N input.Thus,a maize-soybean relay intercropping system with reduced N application is sustainable and environmentally friendly.  相似文献   
80.
基于CiteSpace可视化分析的茶叶香气研究进展   总被引:1,自引:0,他引:1  
以1979—2019年WOS(Web of science)和CNKI(China national knowledge infrastructure)收录的茶叶香气品质相关文献为研究对象,采用CiteSpace文献计量方法分别从年代、作者、机构、国家、研究热点、演进趋势等方面进行归纳统计分析。结果表明,2006年以后相关研究文献呈显著增长趋势,目前已形成稳定的核心作者群,但各群体间的合作研究相对较少;在该研究领域,我国影响力最大,其次是日本和美国;热点研究内容主要集中在香气形成机理、香气物质提取方法、检测手段及关键香气物质等方面。综上结果,结合时区图谱,进一步指出茶叶香气的研究历程及目前所处的发展阶段。  相似文献   
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