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Genetic Organization and Heterogeneity of the Siberian Cedar Pine (Pinus Sibirica Du Tour) Population in the Western Siberia (Tomsk Region)

机译:西伯利亚西部(托木斯克州)西伯利亚雪松(Pinus Sibirica Du Tour)种群的遗传组织和异质性

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摘要

Cedar forest is the most complex and dynamic formation of the Siberian Taiga. It clearly demonstrates the processes of natural regeneration dynamics, sustainability, space-time structure and biodiversity of Siberian forests (Drozdov and Grishenkov, 2003). Within its range, Siberian stone pine grows in various environmental conditions, including high mountains and marshland, which led to the formation of various ecotypes, forms, biotypes that has been created by nature for centuries (Nikolaeva and Savchuk, 2013). Much attention is currently being paid to biological and seed productivity of cedar cultures depending on their geographical origin (Bratilova and Kalinin, 2012; Matveeva et al, 2012; Dragavcev, 2008). This study involved research on the growth of the Siberian cedar pine (Pinus sibirica Du Tour) in the process of artificial plantation formation. In order to develop methods for the genetic evaluation of plant structures and search for indicators, patterns of growth for 100 model trees were analyzed in the experimental population.
机译:雪松森林是西伯利亚大加羚羊最复杂,最有活力的形成。它清楚地说明了西伯利亚森林的自然再生动力学,可持续性,时空结构和生物多样性的过程(Drozdov和Grishenkov,2003年)。在其范围内,西伯利亚石松在各种环境条件下生长,包括高山和沼泽地,这导致了自然形成数百年来的各种生态型,形式和生物型的形成(Nikolaeva和Savchuk,2013)。目前,雪松文化的地理来源决定了它们的生物学和种子生产力(Bratilova和Kalinin,2012; Matveeva等,2012; Dragavcev,2008)。这项研究涉及在人工林形成过程中西伯利亚雪松(Pinus sibirica Du Tour)的生长研究。为了开发用于植物结构的遗传评估和寻找指标的方法,在实验种群中分析了100种模型树的生长模式。

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