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Physiological, biochemical and molecular factors associated with heat tolerance in bentgrass (Agrostis spp.).

机译:与草根耐热性相关的生理,生化和分子因素(Agrostis spp。)。

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摘要

High temperature is a major factor limiting the growth of cool-season plant species during summer. Understanding mechanisms of plant tolerance to high temperature would help develop effective management practices and heat-tolerant cultivars through breeding or biotechnology. This dissertation research explored physiological, biochemical and molecular mechanisms for improving heat tolerance in two bentgrass species, creeping bentgrass ( Agrostis stolonifera L.), a widely used cool-season grass species on golf course tees and putting greens, and thermal rough bentgrass ( Agrostis scabra Willd.) adapted to geothermal areas in Yellowstone National Park.;The dissertation reports research in three main components. The first section compared differential heat-induced metabolism of hormones, proteins and metabolites between heat-sensitive creeping bentgrass and heat-tolerant A. scabra. Based on the findings that heat tolerance of bentgrass was associated with changes in stress-related hormone levels, the effects of foliar-applied hormone or hormone inhibitors on creeping bentgrass to enhance heat tolerance were further studied. Results from both growth chamber and field studies confirmed the effectiveness of applying hormones or hormone-based plant growth regulators on alleviating heat injuries in creeping bentgrass. In the last part of the dissertation, a few transgenic creeping bentgrass lines with improved heat tolerance were characterized. These transgenic lines carry a gene (ipt) controlling cytokinin synthesis. Increased ipt gene expression and cytokinin levels were confirmed and changes in morphological and physiological traits of the plants were examined. Genome-wide protein responses to the addition of the gene and their association with heat tolerance were discussed. The results indicated that transformation with the ipt gene induced protein changes involved in multiple functional groups, mainly in energy, protein destination and storage, and disease/defense categories in both leaves and roots of creeping bentgrass, thus cytokinins may have regulatory roles in multiple metabolic pathways for heat tolerance. Taken together, these studies suggest summer performance of creeping bentgrass may be improved by properly applying hormone-based plant growth regulators or biostimulants, and incorporating molecular markers developed from heat- and/or hormone-responsive proteins and metabolites may facilitate selection of heat-tolerant creeping bentgrass cultivars.
机译:高温是限制夏季凉爽季节植物物种生长的主要因素。了解植物对高温的耐受机制将有助于通过育种或生物技术发展有效的管理措施和耐热品种。本论文的研究探索了生理,生化和分子机制,以提高两种弯曲草种类的耐热性,即蠕动弯曲草(Agrostis stolonifera L.),一种广泛使用的凉爽草种,在高尔夫球场三通和果岭上,以及热粗糙弯曲草(Agrostis)。 scabra Willd。)适应了黄石国家公园的地热区域。第一部分比较了热敏感爬行草和耐热曲霉之间不同的热诱导激素,蛋白质和代谢产物代谢。根据研究结果,草的耐热性与压力相关激素水平的变化有关,进一步研究了叶面施用的激素或激素抑制剂对bent草提高耐高温性的作用。生长室和田野研究的结果均证实,应用激素或基于激素的植物生长调节剂可缓解bent草的热损伤。在论文的最后部分,对一些耐热性提高的转基因creep草进行了鉴定。这些转基因品系带有控制细胞分裂素合成的基因(ipt)。确认ipt基因表达和细胞分裂素水平增加,并检查了植物形态和生理特性的变化。讨论了全基因组蛋白对基因添加的反应及其与耐热性的关系。结果表明,用ipt基因转化可引起蛋白质功能变化,涉及多个功能组,主要涉及能量,蛋白质的转运和储存,以及bent草的叶和根中的疾病/防御类别,因此细胞分裂素可能在多种代谢中起调节作用。耐热性的途径。综上所述,这些研究表明,适当应用基于激素的植物生长调节剂或生物刺激剂,并掺入由热和/或激素反应性蛋白质和代谢物形成的分子标记,可以改善facilitate草的夏季生长性能,这可能有助于选择耐热性的植物。蔓生的本草品种。

著录项

  • 作者

    Xu, Yan.;

  • 作者单位

    Rutgers The State University of New Jersey - New Brunswick.;

  • 授予单位 Rutgers The State University of New Jersey - New Brunswick.;
  • 学科 Biology Botany.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 285 p.
  • 总页数 285
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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