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植物遗传资源的评价、保持和利用   总被引:1,自引:0,他引:1  
阐明了植物遗传资源的重要作用,认为植物遗传资源是人类赖以生存和发展的物质基础,是植物育种丰富的基因资源的重要保证;分析了植物遗传资源评价的重要性,指出对植物遗传资源的正确评价是科学利用的前提;介绍了植物遗传资源的原生境保持和非原生境保持2种重要方法;重点论述了作物的高产基因、抗性基因及抗旱基因与肥高效基因等植物遗传资源的挖掘与利用,为引起人们对植物遗传资源保持重要性的高度认识提供理论参考。  相似文献   

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Domestic livestock in Nepal belong to 17 species, including five Bovidae (and interspecific hybrids of two of them), seven Aves, two Equidae (not including mules), pig (Sus scrofa), rabbit (Oryctolagus cuniculus) and elephant (Loxodonta africana). Cattle (Bos taurus and Bos indicus) are the most numerous quadruped, followed by goats (Capra hircus), buffalo (Bubalus bubalis) and sheep (Ovis aries). Domestic fowl (Gallus domesticus) are the most common poultry, followed by pigeons (Columba livia) and ducks (Anas platyrhyncos). Government policy is to upgrade and replace local types with improved stock. This policy has had limited success through lack of funding, inconsistent long-term objectives and an inability to pursue programmes in traditional farming systems. The purity of native types is being lost in some areas due to informal programmes by farmers themselves. Except for one type of goat there are no conservation programmes for native breeds. Wild relatives of livestock, including arnee (Bubalus arnee), gaur (Bibos gaurus), wild boar (Sus scrofa), jungle fowl (Gallus gallus) and rock dove (Columba livia), are being infiltrated by genes of domestic animals. Little has been done to characterize Nepal's livestock resources yet continuous attempts have been made to replace them. Conservation needs are to: (i) identify all genetic resources comprising the gene pool of species used as domestic livestock; (ii) develop and use the associated diversity to increase production, achieve sustainable systems and meet demands for particular products; (iii) monitor resources represented by small numbers or that are being displaced; and (iv) preserve resources not in current demand. A start has been made on this by Nepal's membership of a regional network.  相似文献   

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Rice genetic resources, comprising landrace varieties, modern and obsolete varieties, genetic stocks, breeding lines, and the wild rices, are the basis of world food security. The International Rice Genebank at the International Rice Research Institute in the Philippines conserves the largest and most diverse collection of rice germplasm. The facilities of the genebank ensure the long-term preservation of this important diversity. In field research, factors that affect long-term viability of rice seeds have been identified, leading to the introduction of modified practices for germplasm multiplication and regeneration. The value of conserved germplasm can be assessed in terms of useful traits for rice breeding and the economic impact that germplasm utilization has on rice production and productivity. The application of molecular markers is changing perspectives on germplasm management. International policies affecting access to and use of rice germplasm are discussed.  相似文献   

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中国野生稻遗传资源的保护及其在育种中的利用   总被引:15,自引:0,他引:15  
我国有三种野生稻,即普通野生稻(Oryza rufipogon)、药用野生稻(O.officinalis)和瘤粒野生稻(O.meyeriana)。这三种野生稻均被列为国家二级保护植物(渐危种)。调查结果表明,野生稻由于其自然群落大量丧失而濒危,濒危程度为普通野生稻>药用野生稻>瘤粒野生稻。造成濒危的主要原因是人为的破坏活动。人类的经济活动导致了野生稻生境丧失、生境质量不断恶化、栖息地越来越少;人类的活动也导致了外来种的入侵。目前,对野生稻的保护措施主要有就地保护(原地保护或原位保护)和迁地保护(易地保护或异位保护)。易地保护包括以种子保存的种质厍、以种茎保存的种质圃和以器官培养物作为材料的超低温保存。野生稻具有许多优良特性,如特强的耐寒性、高的抗病虫性、优质蛋白质含量高、功能叶片耐衰老的特异性、特强的再生性、良好的繁茂性及生长优势等等,这些优良特性已被广泛用于水稻常规育种和杂交育种中,并取得了巨大的社会效益和经济效益。有关野生稻生物技术方面的研究,如花药培养、原生质培养、体细胞杂交和基因工程等方面已取得了较大的进展。野生稻将在水稻育种中发挥越来越重要的作用。  相似文献   

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青藏高原牦牛遗传资源保护和利用:问题与展望   总被引:1,自引:0,他引:1  
牦牛是青藏高原牧民生产生活中必不可少的特有家畜,对青藏高原区域经济发展与生态文明建设具有不可替代的重要意义。近年来,随着牦牛饲养数量增加,草地退化程度加剧,牦牛生产性能也在不断下降,青藏高原原有的土-草-畜循环和草畜平衡被打破,影响了青藏高原生态系统的协调、稳定发展。本文从牦牛的分布区域、数量变化、品种分类、品种退化、品种改良、基因组研究进展、问题对策与展望等方面,综合阐述了近年来我国牦牛遗传资源保护与开发利用的相关研究进展,为今后的牦牛科研工作和生产实践提供参考。  相似文献   

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The review of the Resource Allocation Working Party (RAWP) formula by the National Health Service Management Board has considered the method used to account for cross boundary flows between health authorities. There is no consensus on how this should be done subregionally, as it raises the unresolved problem of the best method of estimating the size of catchment populations. Different methods produce different population sizes when the admission rates of individuals living in different districts vary. The National Health Service/Department of Health and Social Security acute services working group on performance indicators recently considered the assumptions made by different methods in terms of admission thresholds set by hospital clinicians. More complicated methods of assessing catchment areas seem to offer little advantage over the simplest method, but none of the methods answer the underlying questions of what truly determines admission rates and whether higher admission rates are better than lower ones. Empirical research into variations in admission rates and their relation to outcomes is important for determining the fair allocation of resources in future.  相似文献   

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Genetic rescue is increasingly considered a promising and underused conservation strategy to reduce inbreeding depression and restore genetic diversity in endangered populations, but the empirical evidence supporting its application is limited to a few generations. Here we discuss on the light of theory the role of inbreeding depression arising from partially recessive deleterious mutations and of genetic purging as main determinants of the medium to long-term success of rescue programs. This role depends on two main predictions: (1) The inbreeding load hidden in populations with a long stable demography increases with the effective population size; and (2) After a population shrinks, purging tends to remove its (partially) recessive deleterious alleles, a process that is slower but more efficient for large populations than for small ones. We also carry out computer simulations to investigate the impact of genetic purging on the medium to long term success of genetic rescue programs. For some scenarios, it is found that hybrid vigor followed by purging will lead to sustained successful rescue. However, there may be specific situations where the recipient population is so small that it cannot purge the inbreeding load introduced by migrants, which would lead to increased fitness inbreeding depression and extinction risk in the medium to long term. In such cases, the risk is expected to be higher if migrants came from a large non-purged population with high inbreeding load, particularly after the accumulation of the stochastic effects ascribed to repeated occasional migration events. Therefore, under the specific deleterious recessive mutation model considered, we conclude that additional caution should be taken in rescue programs. Unless the endangered population harbors some distinctive genetic singularity whose conservation is a main concern, restoration by continuous stable gene flow should be considered, whenever feasible, as it reduces the extinction risk compared to repeated occasional migration and can also allow recolonization events.

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The ability to transfer genes from one species to another provides a powerful method to study genetic regulatory differences between species in a homogeneous genetic background. A survey of several transgenic animal experiments indicates that the vast majority of regulatory differences observed between species are due to differences in the cis-acting elements associated with the genes under study. A corollary is that in almost all cases the host species provides the necessary regulatory proteins for expression of the transgenes in specific tissues in which the endogenous homolog is not expressed. Although the details of the cis-acting differences are unknown for most cases, it appears that these differences may consist of the acquisition or loss of unique elements or subtle variation of conserved elements. It is unknown whether much of this variation is directly related to adaptive evolution. The identification of the promoter/enhancer elements responsible for these differences is an important first step in examining the functional significance of this variation.  相似文献   

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The conservation of five traditional crops is an important aspect of achieving national food security. In the present study, we aimed to collect and conserve germplasm of five local crops from the Jazan region of southwestern Saudi Arabia: Sorghum: Sorghum bicolor (L.) Moench); Barley (Hordeum vulgare L.) Millet (Pennisetum glaucum (L.) R. Br.); Sesame (Sesamum indicum L.) and Guar (Cyamopsis tetragonoloba (L.) Taub). Forty-one seed accessions of these five crops were collected and tested to determine seed moisture content (MC%) and quality as indicators of their potential to survive during long-term dry storage at ?18 °C (i.e. ex-situ conservation of genetic resources). Seed viability was assessed using germination tests, the tetrazolium chloride (TZ) test and X-ray imaging. Seeds of the five crops had very low MC% and high viability (fully developed embryos and germination >91%), indicating that they were of good quality and had high potential for long-term survival in gene banks. The genetic resources of these crops (seeds) have now been preserved at the gene-bank of King Abdulaziz City for Science and Technology (KACST-BGB), Riyadh, Saudi Arabia.  相似文献   

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