首页> 外文学位 >The development of the modern strawberry Fragaria x ananassa: Physiology, biochemistry and morphology of progenitor species Fragaria virginiana and Fragaria chiloensis and resulting cultivars.
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The development of the modern strawberry Fragaria x ananassa: Physiology, biochemistry and morphology of progenitor species Fragaria virginiana and Fragaria chiloensis and resulting cultivars.

机译:现代草莓草莓(Fragaria x ananassa)的发展:祖种草莓(Fragaria virginiana)和草莓草莓(Fragaria chiloensis)的生理,生物化学和形态以及由此产生的品种。

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摘要

The cultivated strawberry (Fragaria x ananassa) in the northeastern United States has seen limited improvement in yield over the past century. Narrow germplasm diversity has been suggested to be a possible limitation and has resulted in evaluation of the progenitor species: F. chiloensis and F. virginiana for desirable characteristics. One of the possible avenues explored to improve the productivity of the cultivated strawberry is to increase the photosynthetic capacity through the use of F. chiloensis which has a high photosynthetic capacity. Previous research has relied exclusively on gas exchange data to quantify photosynthetic capacity however, due to the complexity of regulatory processes that influence gas exchange it is difficult to identify the basis of the different gas exchange rates observed. Evaluation of the strawberry cultivar 'Jewel' and the two progenitor species was conducted to determine the basis of the observed differences in photosynthetic capacity. Results of this research suggest that the high photosynthetic capacity of F. chiloensis may be a based on higher light use efficiency, determined by chlorophyll fluorescence, and increased activity of key enzymes of the Calvin Cycle. As these photosynthetic parameters are based on gene expression, these higher rates may be genetically heritable.In order to determine the most effective use of the wild species to improve the cultivated strawberry, a field study of cultivars released during the last century was established to evaluate changes in horticultural and physiological characteristics that have occurred and to identify possible limitations to productivity. Results indicated that limited changes have occurred in carbon allocation patterns and photosynthetic characteristics and suggest that there may be opportunity to increase the productivity through altering carbon allocation patterns and increasing fruit number. The lack of change in photosynthesis suggests that improving photosynthetic capacity of the cultivated strawberry may lead to increased productivity. Further research evaluating hybrids of F. chiloensis and the cultivated strawberry may allow us to better exploit this characteristic.
机译:在过去的一个世纪中,美国东北部的栽培草莓(Fragaria x ananassa)的单产提高有限。狭窄的种质多样性被认为是一个可能的局限性,并导致对祖种:Chiloensis和F. virginiana的理想特性进行评估。探索提高栽培草莓的生产力的可能途径之一是通过使用具有高光合作用能力的Chiloensis提高光合作用能力。先前的研究仅依靠气体交换数据来量化光合作用能力,但是,由于影响气体交换的调节过程非常复杂,因此难以确定观察到的不同气体交换率的基础。对草莓品种'Jewel'和两个祖种进行了评估,以确定观察到的光合能力差异的基础。这项研究的结果表明,F。chiloensis的高光合能力可能是由于较高的光利用效率(由叶绿素荧光确定)以及加尔文循环关键酶的活性增加所致。由于这些光合参数基于基因表达,因此较高的遗传率可能是遗传遗传的。为了确定最有效地利用野生种来改良栽培草莓,建立了上个世纪对栽培品种进行的田间研究,以评估发生的园艺和生理特征发生变化,并确定对生产力的可能限制。结果表明,碳分配模式和光合特性发生了有限的变化,并暗示可能有机会通过改变碳分配模式和增加果实数量来提高生产力。缺乏光合作用的变化表明,提高栽培草莓的光合作用能力可能会提高生产力。评价Chiloensis和栽培草莓的杂种的进一步研究可以使我们更好地利用这一特性。

著录项

  • 作者

    Harbut, Rebecca M.;

  • 作者单位

    Cornell University.;

  • 授予单位 Cornell University.;
  • 学科 Agriculture Horticulture.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 152 p.
  • 总页数 152
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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