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81.
春麦田除草剂的应用与杂草群落演替   总被引:10,自引:1,他引:10  
作者采用定点定位试验,对春麦田除草剂应用与杂草群落演替趋势进行研究。结果表明:在杂草群落多样性麦田,小麦连作并分别连续5年施用同一种除草剂,原杂草群落中占优势的靶标杂草得以控制,而非靶标杂草和抗、耐药性杂草因失去竞争和制约对象而猖獗发展,发生量较原来增加几倍至几十倍,并形成优势种群,对小麦造成新的更严重的危害。一种除草剂在同田块连续施用4年,由于杂草群落演替,抗、耐药杂草兴起,除草效果显著下降而失去其使用意义。作者提出除草剂配套使用、轮用、混用等措施,并配合以合理的轮作制度,以减轻杂草群落长期受到单一的定向选择性压力。  相似文献   
82.
熊蜂为温室茄子授粉试验   总被引:12,自引:1,他引:12  
通过对温室茄子应用熊蜂授粉、人工蘸花授粉和空白对照的比较研究,结果表明熊蜂组的座果数比人工组和对照组分别增加了17.84%和33.32%,产量比人工组和对照组分别提高了27.93%和41.98%,果实含糖量比人工组和对照组分别增加了18.33%和21.16%,而且,熊蜂组的果实大而充实,商品性较好.说明利用熊蜂为温室茄子授粉,不仅能够促进座果,提高产量,而且可以改善果实品质,提升产品的附加值.  相似文献   
83.
猪附红细胞体病的诊断和防治   总被引:4,自引:0,他引:4  
近年我县发生了一种类似猪瘟症状的疾病 ,表现为高热、嗜睡、全身发红等 ,导致猪群 (特别是仔猪 )大批死亡。经采用注射青霉素、链霉素、磺胺类药、退烧解毒药等治疗 ,效果不理想。特别是在使用磺胺类药物后 ,会加重病情。该病在我县呈蔓延趋势 ,给广大养殖户造成了很大的经济损失。后与省畜牧研究所联合研究 ,根据临床症状、病理剖检、实验室检查等 ,确诊为猪附红细胞体病。经对症下药 ,很快控制了该病的流行和蔓延 ,确保养殖业的健康稳定发展。1流行病学特点本病一年四季均可发生 ,但以夏秋多发。蚊等吸血节肢昆虫可传播该病 ,各种年龄、…  相似文献   
84.
猪大肠杆菌水肿毒素SLT-IIeA基因的克隆和序列分析   总被引:2,自引:0,他引:2  
研究以本地猪水肿病大肠杆分离物ED1株为材料 ,利用 PCR克隆了含猪水肿病大肠杆菌 (VTEC) slt-IIe A基因 987bp的片段 ,并测定了含该克隆片段的 Bam HI、Hind 酶切片段的核苷酸序列。结果表明 ,slt-IIe A基因的编码区全长 960 bp,编码 3 1 9个氨基酸的蛋白质 ,序列与国外报导的 S1 1 79株进行比较发现其核苷酸同源性为 98.9%。经推导的氨基酸序列的同源性为 99.7%。这为进一步研究 slt-IIe A的生物学特性、水肿病的分子诊断及其防制打下基础  相似文献   
85.
生姜根结线虫病原鉴定及发生规律   总被引:5,自引:1,他引:5  
采用田间调查、接种试验、电镜与显微镜观察以及酯酶同工酶电泳等方法,对引发生姜癞皮病的病原及发生规律进行了研究.结果表明,引起生姜癞皮病的病原为南方根结线虫Meloidogyne incognita.该病在每年6月中旬开始发生,8、9月份危害严重.病原在生姜上一年可发生完整的4代,完成1代平均约需35天.病原主要在0~40cm的土层内分布和危害,但具体分布情况依寄主生长状况而稍有差异.南方根结线虫繁殖速率受初始接种密度的影响也很大,当初始接种密度较低时,线虫繁殖速率较高,初始接种密度增大,繁殖速率降低,其平衡密度为每100g干土746.20个卵.  相似文献   
86.
葡萄品种浆果成熟期多样性及归类标准评价   总被引:5,自引:0,他引:5  
对郑州葡萄圃内260个鲜食和153个酿酒品种的浆果成熟期进行了鉴定评价。在郑州地区,最早熟的葡萄种质材料早莎巴珍珠6月29日生理成熟,果实发育期48d;最晚熟的种质材料大宝10月12日成熟,果实发育期144d,在其间的103d时间里不断有成熟的葡萄品种,表现了丰富的多样性。酿酒葡萄的果实成熟期相对集中,大多数酿酒葡萄品种在8月中旬成熟,7月份和9月份成熟的葡萄品种所占的比例极少。果实发育期≤60d、61~80d、81~100d、101~120d、≥121d的品种次数呈正态分布,果实发育期81~100d的品种占收集品种的53.03%;果实发育期少于60d的极早熟品种和果实发育期多于120d的极晚熟品种所占比例较少。早、中、晚熟品种按照浆果发育期进行归类较为简便。  相似文献   
87.
Large mammalian herbivores are notorious for their propensity towards population irruptions and crashes, yet many herbivore populations remain relatively stable. I explore how resource heterogeneity within landscapes dampens population instability, using a metaphysiological modelling approach considering patch state distributions. Resource heterogeneity is functionally stabilizing through spreading consumption away from preferred resources before these become critically depleted. Lower-quality resources act as a buffer against starvation during critical periods of the seasonal cycle. Enriching resource quality is destabilizing, even if patch diversity is maintained, because food quantity then becomes the limitation. The potential consequences of landscape fragmentation are explored using the Serengeti ecosystem, characterised by broadscale resource gradients, as a hypothetical example. Further insights provided by the model are illustrated with specific examples concerning the effects of patch scales and waterpoint distribution. A metaphysiological modelling approach enables the basic consequences of landscape heterogeneity to be distinguished from further effects that may arise from specific patch scales and configurations, without the distracting detail of spatially explicit models.  相似文献   
88.
Xiphinema diversicaudatum and X. index are vector nematode species of economic importance in viticulture regions as they can transmit Arabis Mosaic, Grapevine Fanleaf and Strawberry Latent Ringspot viruses to grapevine. Wang et al. (2003) designed species-specific diagnostic primers from ribosomal genes for both these vector species as well as a vector and a non-vector species X. italiae and X. vuittenezi, respectively. Our study aimed to confirm the specificity and determine the sensitivity and reliability of the primers for the two vector species, X. diversicaudatumand X. indexwhen challenged with closely related longidorid species and general nematode communities typical of vineyard soil. With one exception, no PCR product was observed when the primers were tested against six Longidorus, one Paralongidorus and one Xiphinema non-target species. Occasionally (three out of eight replicate PCR reactions) a weak PCR product was noted when primers for X. index were tested with L. elongatus. Furthermore, when challenged with a range of non-target nematode species comprising the nematode community typical of viticulture soil, no PCR product was amplified. An experimental dilution series of extracted DNA rigorously demonstrated that DNA from an equivalent single specimen of the target virus-vector species, X. diversicaudatum and/or X. index, could be detected amongst 1000 equivalent non-targetX. vuittenezi. Also, extracted DNA from an equivalent single target specimen was detected when added to DNA extracted from the overall soil nematode community. The primers were assessed further by using serial mixtures of actual nematodes rather than extracted DNA to simulate field soil. Using this method, a single target nematode could be detected amongst 200 non-target specimens. Given their specificity, sensitivity and reliability, it appears that these diagnostic primers will be of great benefit to phytosanitary/quarantine services related to the viticulture industry.  相似文献   
89.
选择9头母牛先行人工授精、7天后再移植冷冻胚胎以生产双犊。试验结果表明,母牛产双犊达44.44%(P<0.01)。提示:采用A(I人工授精)+ET(胚胎移植)是提高母牛双犊率的有效技术措施之一。  相似文献   
90.
The aim of current study was to review breeding progress and update information on genetic strategies in Iranian buffaloes. Iranian buffalo is one of the vital domestic animals throughout north, north-west, south and south-west of Iran with measurable characteristics both in milk and meat production. The species plays an important role in rural economy of the country due to its unique characteristics such as resistance to diseases and parasites, having long productive lifespan and showing higher capability of consuming low-quality forage. In Iran, total production of milk and meat devoted to buffaloes are 293,000 and 24,700 tons, respectively. Selection activities and milk yield recording are carrying out by the central government through the Animal Breeding Centre of Iran. The main breeding activities of Iranian buffaloes included the estimation of genetic parameters and genetic trends for performance traits using different models and methods, estimation of economic values and selection criteria and analysis of population structure. Incorporating different aspects of dairy buffalo management together with improved housing, nutrition, breeding and milking, is known to produce significant improvements in buffalo production. Therefore, identifying genetic potential of Iranian buffaloes, selection of superior breeds, improving nutritional management and reproduction and developing the education and increasing the skills of practical breeders can be useful in order to enhance the performance and profitability of Iranian buffaloes.  相似文献   
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