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排序方式: 共有129条查询结果,搜索用时 15 毫秒
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A. K. Dixit G. Das Pooja Dixit A. P. Singh N. K. Kumbhakar M. Sankar R. L. Sharma 《Tropical animal health and production》2017,49(7):1471-1478
Current status of resistance to benzimidazole (BZ) group of anthelmintic drugs against caprine nematodes in Central India at Amanala goat farm, Jabalpur, Madhya Pradesh (M. P.), was systematically investigated using faecal egg count reduction (FECR) test and egg hatch test (EHT). Besides, allele-specific PCR (AS-PCR) was deployed to ascertain the susceptible genotype (alleles) especially of the Haemonchus contortus. Randomly selected 30 goats, irrespective of age and sex, were divided into three groups of 10 each, to serve as treated and untreated controls. It was ensured that the animals were not administered with an anthelmintic drug for the past 3 months prior to undertaking the study, and faecal egg counts were estimated. FECR test evidenced fenbendazole resistance by partial elimination (24.90%) copro-egg counts in the treated group of animals vis-à-vis controls with a lower confidence interval of ?26%. Further, EHT revealed ED-50 value of 0.335 μg of thiabendazole/ml, confirming benzimidazole resistance in the animals of that farm. AS-PCR showed that 62% of H. contortus larvae were homozygous resistant (rr), 24% heterozygous (rS) and 14% homozygous susceptible (SS). The genotypic frequencies of three genotypes (rr, rS and SS) were significantly (P < 0.01) different. The prevalence of benzimidazole resistance allele (r) was also significantly (P < 0.01) higher (74%) as compared to susceptible allele (S) (26%). The resistance to benzimidazole has been discussed while emphasizing improved managemental practices designed to reduce exposure of the goat population to parasites, minimize frequency of anthelmintic use at optimum dose and rotational use of different chemical groups of medicines with different mode of action, so as to overcome and combat the upcoming problem in the field. 相似文献
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Sivakumar P Sankar M Nambi PA Praveena PE Singh N 《Journal of veterinary medicine. A, Physiology, pathology, clinical medicine》2005,52(10):506-509
The mesenteric lymph nodes (MLN) of buffaloes (n = 100) were examined for the presence of parasitic infection. The nymphal stage of Linguatula serrata was observed in two buffaloes. A single white-coloured nymph with transversely striated spines on a segmented body, two pairs of oral suckers and hooks was observed in the MLN. The morphometrics of the nymphs were studied. The affected lymph nodes were grossly enlarged with cyst and showed pathological lesions of fibroblastic reaction with a mild underlying inflammatory zone. 相似文献
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利用若干单株混合提取DNA方法进行玉米群体SSR的分析 总被引:9,自引:1,他引:9
以金皇后玉米群体90个单株:DNA和6个自交系DNA为供试材料,利用15对SSR引物,比较了同一群体4种DNA样品处理(单株DNA样品、3个单株混合DNA样品、10个单株混合DNA样品、15个单株混合DNA样品)的SSR遗传多态性。结果表明,利用单株DNA样品能获得等位基因数、基因频率、基因型杂合度等较全面的遗传信息,适宜进行单个或少量群体的遗传结构研究,但试验工作量大;利用混合DNA样品所能获得的遗传信息有所减少,比较4种DNA样品处理的检测结果发现,15个单株混合样品的检测结果误差较大,而采用3~10个单株DNA混合的样品基本可以反映出一个群体的等位基因数目和SSR带型的差异,由于试验工作量大大减少,可以应用于较多玉米群体间遗传差异的比较。 相似文献
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用SSR标记分析豫综5号和金皇后综合种的遗传变异 总被引:1,自引:0,他引:1
利用40对SSR标记引物分析了豫综5号和金皇后综合种的遗传变异.结果表明:40对引物在两群体中都扩增出115个多态位点;累加40对引物扩增的基因型种类,豫综5号196种,金皇后194种;豫综5号的平均遗传距离为0.383 4,金皇后综合种为0.339 7;豫综5号的平均观察杂合度是0.382 6,平均期望杂合度是0.474 7;金皇后综合种的平均观察杂合度是0.329 2,平均期望杂合度是0.414 3.从以上结果来看,豫综5号的遗传变异较丰富. 相似文献
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KU Daping Bernie DELL. Research Institute of Tropical Forestry CAF Guangzhou China . Murdoch University. Perth. Australia 《中国林业科技(英文版)》2002,(1)
Eucalypts are very popular for revegetation in many parts of south China because of their capacity to tolerate degraded sites and unfertile soils,and their fast growth potential to coppice. This paper reviews a decade of field trials in china, undertaken as part of several bilateral researchprograms in plantation forestry, concerning the use of fertilizers, harvest residue management and inoculation with ectomycorrhizal fungi. One of the key questions addressed is whether the productivity of plantation eucalypts in south China can be increased to the world average by nutrient management across a rotation. 相似文献
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WU Lian-cheng WANG Tie-gu KU Li-xia HUANG Qun-ce SUN Zhao-hui XIA Zhong-liang CHEN Yan-hui 《中国农业科学(英文版)》2008,7(5):554-560
It is vital to determine the effective photoperiods of maize for making full use of tropical germplasm, which is the foundation for determining the effect of latitude and planting date on the development of photoperiod-sensitive maize cultivars. The objective of this study is to determine the photoperiod-sensitive inductive phase using reciprocal transfer between long- day (LD) (15 h d^-1) and short-day conditions (SD) (9 h d^-1). For Huangzao 4 and CML288, days to tassel and pollen shedding were recorded, and stem apical meristems (SAM) were observed by a laser scanning confocal microscope. The results show that the seedlings are insensitive to photoperiod when they are very young (juvenile). However, after this period, LD delays flowering and increases the leaf numbers below the inflorescence, and the length of the interval of the photoperiod-sensitive inductive phase is longer under LD conditions than under SD conditions. Transferred from SD to LD, plants show a sudden decrease in leaf numbers once sufficient SD has been received for flower commitment. While transferred from LD to SD, plants have a continuous increase in leaf numbers during the photoperiod sensitive inductive phase under LD conditions. At the same time, when plants are competent to flowers, the obvious morphology is the elongation of maize SAM. There is an obvious variance of the photoperiod sensitive phase under LD and SD conditions in different maize. 相似文献
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Ranjan Bhattacharyya Arti Bhatia Birendra N. Ghosh Priyabrata Santra Debashis Mandal Gopal Kumar Raman Jeet Singh Madegowda Madhu Avijit Ghosh Arup K. Mandal Ranjan Paul Ashim Datta Parbodh C. Sharma Uttam K. Mandal Pramod Jha Kokkuvayil S. Anil Manickam Lalitha Mahesh Kumar Nav R. Panwar Dibyendu Sarkar Ashok K. Patra Sumanta Kundu Michael A. Fullen Jean Poesen Bhabani Sankar Das Nagarjuna N. Reddy Suresh K. Chaudhari 《European Journal of Soil Science》2023,74(4):e13388
Current widespread and intensive soil degradation in India has been driven by unprecedented levels of population growth, large-scale industrialization, high-yield agriculture, urban sprawl and the spread of human infrastructure. The damage caused to managed and natural systems by soil degradation threatens livelihoods and local services and leads to national socio-economic disruption. Human-induced soil degradation results from land clearing and deforestation, inappropriate agricultural practices, improper management of industrial effluents and wastes, careless management of forests, surface mining, urban sprawl, and ill-planned commercial and industrial development. Of these, inappropriate agricultural practices, including excessive tillage and use of heavy machinery, over-grazing, excessive and unbalanced use of inorganic fertilizers, poor irrigation and water management techniques, pesticide overuse, inadequate crop residue and/or organic carbon inputs, and poor crop cycle planning, account for nearly 40% (121 Mha) of land degradation across India. Globally, human activities related to agriculture contribute to the transgression of four of the nine Planetary Boundaries proposed by Rockström et al. (2009): Climate Change, Biodiversity Integrity, Land-system Change, and altered Phosphorus and Nitrogen Biogeochemical Flows. This review focuses on how knowledge of soil processes in agriculture has developed in India over the past 10 years, and the potential of soil science to meet the objectives of the United Nations' Sustainable Development Goal 2: Zero Hunger (End hunger, achieve food security, improved nutrition and promote sustainable agriculture), using the context of the four most relevant Planetary Boundaries as a framework. Solutions to mitigate soil degradation and improve soil health in different regions using conservation agricultural approaches have been proposed. Thus, in this review we (1) summarize the outputs of recent innovative research in India that has explored the impacts of soil degradation on four Planetary Boundaries (Climate Change, Biodiversity Loss, Land-system Change, and altered Biogeochemical Flows of Phosphorus and Nitrogen) and vice-versa; and (2) identify the knowledge gaps that require urgent attention to inform developing soil science research agendas in India, to advise policy makers, and to support those whose livelihoods rely on the land. 相似文献