Unifying plant molecular data and plants.

N Jacobsen, M Orgaard
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Abstract

Located at a botanical department at an Agricultural University, our taxonomical and genetic research is mainly directed towards cultivated plants and their wild relatives. The investigations are usually under a common heading 'experimental taxonomy', and include basic systematics, cytogenetics, biodiversity, population dynamics, conservation and evolutionary questions correlating the wild species and the cultivated forms. Our point of initiation is the plants and questions/problems raised regarding these plants. Our way of approaching the problems is usually by applying different sets of data and testing them. Experimental taxonomy covers classical cytogenetics (chromosome counting and karyotyping) as well as molecular cytogenetic methods (RAPD, RFLP, in situ hybridization), and includes also chemical data on isoenzymes and anthocyanins. We have had good collaborations with other laboratories and found their expertise on the plants in question very helpful. The aim is always to unify various data on the same set of problems, in order to get a more complete understanding of the plants. At present the department is working on several, quite different plant genera, comprising herbs, aquatic plants, and trees. The methods vary, depending on the plants and the problems in question. Some of the current investigations concern the horticultural genera Lilium and Crocus, in which the main point of interest is the study of chromosome evolution using fluorescence in situ hybridization; preliminary investigations into the composition of anthocyanins in Crocus look very promising. In the tropical starch tuber crop Pachyrhizus (Fabaceae), molecular analyses of relationships between existing cultivars, landraces and wild material have been carried out. A genus which we, in cooperation with a number of other laboratories, have been working with for many years is Hordeum (Poaceae) with one cultivated species (barley) and 31 wild species. Here the main areas of investigation have been field studies and collecting, followed by a taxonomical treatment, hybridization experiments, cytogenetic analysis and isoenzyme studies. Within the field of forestry, we have used population genetics as a tool in the management of natural and domesticated populations and for conservation of genetic diversity. We have also ventured into the identification and use of DNA markers that are suited for genome mapping in Picea abies (Norway Spruce).

统一植物分子数据和植物。
我们的分类学和遗传学研究主要针对栽培植物及其野生近缘种。这些调查通常在“实验分类学”的共同标题下进行,包括基本的系统学、细胞遗传学、生物多样性、种群动态、野生物种和栽培物种之间的保护和进化问题。我们的起始点是植物和关于这些植物的问题/问题。我们解决问题的方法通常是应用不同的数据集并对它们进行测试。实验分类学包括经典的细胞遗传学(染色体计数和核型)以及分子细胞遗传学方法(RAPD, RFLP,原位杂交),还包括同工酶和花青素的化学数据。我们与其他实验室进行了良好的合作,发现他们在有关植物方面的专业知识非常有用。目的始终是统一同一组问题的各种数据,以便对植物有更全面的了解。目前,该部门正在研究几个完全不同的植物属,包括草本植物、水生植物和树木。方法因植物和问题的不同而不同。目前的一些研究涉及园艺属百合和番红花,其中主要的兴趣点是利用荧光原位杂交研究染色体进化;对番红花中花青素成分的初步研究看起来很有希望。在热带淀粉块茎作物厚根(Fabaceae)中,对现有品种、地方品种和野生品种之间的关系进行了分子分析。我们与许多其他实验室合作多年的一个属是Hordeum (Poaceae),其中有一个栽培种(大麦)和31个野生种。在这里,调查的主要领域是实地研究和收集,其次是分类处理,杂交实验,细胞遗传学分析和同工酶研究。在林业领域,我们利用种群遗传学作为管理自然种群和驯化种群以及保护遗传多样性的工具。我们还冒险进行了适合云杉(挪威云杉)基因组定位的DNA标记的鉴定和使用。
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