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Changes in genetic diversity parameters in unimproved and improved populations of teak (Tectona grandis L.f.) in Karnataka state, India

机译:印度卡纳塔克邦未经改良和改良的柚木(Tectona grandis L.f.)种群遗传多样性参数的变化

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摘要

Teak (Tectona grandis L. f.; family Verbanaceae) is an important plantation tree species in the tropics and in India one of the first species to be prioritized for improvement. Improvement efforts for the last 50 years have essentially concentrated on augmenting quality seed production by establishing seed production areas (SPA) and clonal seed orchards (CSO). Presently, these two form the main sources of quality planting material for teak throughout the country. However, there is no information on the genetic quality of such sources nor information on the progeny used in plantation programmes. Reports of studies based on coniferous and tropical species provide conflicting results on the impact of domesticationudon the genetic diversity of populations (Chaisurisri and El Kassaby 1994; Rajora 1999; Moran et al. 2000; Godt et al. 2001; Icgen et al. 2006). Also the impact of domestication on the genetic diversity of progeny populations is poorly understood (Stoehr and El-Kassaby 1997; Schmitdtling and Hiplins 1998). Such studies become pertinent not only for gauging the impact of selection on reforestation stock, but also for effective genetic conservation of existing breeding populations. We therefore address two issues in the present study: (i) the change in genetic diversity with increasing levels of improvement, and (ii) the impact of the above change on genetic diversity of progeny populations.
机译:柚木(Tectona grandis L. f .;马鞭草科)在热带地区是重要的人工林树种,在印度,也是最早优先改善的树种之一。过去50年的改进工作主要集中在通过建立种子生产区(SPA)和无性种子园(CSO)来提高优质种子生产上。目前,这两个构成了全国柚木优质种植材料的主要来源。但是,没有关于此类来源的遗传质量的信息,也没有关于人工林计划中使用的后代的信息。基于针叶和热带物种的研究报告对驯化对种群遗传多样性的影响提供了相互矛盾的结果(Chaisurisri和El Kassaby,1994; Rajora,1999; Moran等,2000; Gott等,2001; Icgen等。 2006)。驯化对后代种群遗传多样性的影响知之甚少(Stoehr and El-Kassaby 1997; Schmitdtling and Hiplins 1998)。这些研究不仅对于衡量选择对造林种群的影响,而且对现有育种种群的有效遗传保护都具有重要意义。因此,我们在本研究中解决了两个问题:(i)随着改善水平的提高遗传多样性的变化,以及(ii)上述变化对后代种群遗传多样性的影响。

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