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首页> 外文期刊>American Journal of Plant Sciences >Thinking inside the Box: Tissue Culture for Plant Propagation in a Key Ecological Species, &i&Andropogon gerardii&/i&
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Thinking inside the Box: Tissue Culture for Plant Propagation in a Key Ecological Species, &i&Andropogon gerardii&/i&

机译:在盒子里思考:在关键生态物种中的植物繁殖的组织培养,Andropogon gerardii& i&

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Intraspecific diversity has widespread effects on ecological communities and ecosystems. To elucidate the mechanisms underlying these effects, manipulative studies require a rigorous and efficient empirical approach. Yet, replicating sufficient numbers of genetically identical individuals remains a challenge. As a result, we are limited in our understanding of the mechanisms underlying the ecological effects of intraspecific diversity. In contrast, large sample sizes are routinely produced in horticultural research using micropropagation, or tissue culture. In order to determine the potential usefulness of micropropagation technique for ecological studies, we investigated the efficiency and efficacy of micropropagation on the ecologically important non-model C4 grass species, Andropogon gerardii . Our preliminary results demonstrate that micropropagation is a rapid and effective technique for producing large numbers of genetically identical clones at up to 100 times the rate of traditional propagation. Key intraspecific differences among clones of A. gerardii were also retained through the micropropagation process. Given that traditional techniques used to test the effects of intraspecific diversity manipulations are time-limiting (greenhouse propagation) or can be biologically misrepresentative (seeds) for some species, we suggest that micropropagation might be a powerful tool for advancing ecological genetics studies in many plant systems.
机译:种内多样性对生态群落和生态系统具有广泛的影响。为了阐明这些影响的潜在机制,操纵研究需要严格而有效的经验方法。然而,复制足够数量的遗传上相同的个体仍然是一个挑战。结果,我们对种内多样性的生态影响的潜在机制的理解受到限制。相反,在园艺研究中,通常使用微繁殖或组织培养产生大量样本。为了确定微繁殖技术在生态学研究中的潜在实用性,我们研究了微繁殖对生态学上重要的非模式C4草种 Andropogon gerardii 的效率和功效。我们的初步结果表明,微繁殖是一种快速有效的技术,可以以高达传统繁殖速率100倍的速度生产大量遗传上相同的克隆。通过微繁过程,还保留了 gerardii 的克隆之间的关键种内差异。考虑到用于测试种内多样性操纵效应的传统技术是时限性的(温室繁殖),或者对于某些物种而言可能具有生物学上的代表性(种子),因此我们建议微繁殖可能是推进许多植物生态遗传学研究的有力工具系统。

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