DISSERTATION RESEARCH: Supply-Side Regulation of Herbivore-Induced Phenolics in Plants
DISSERTATION RESEARCH: Supply-Side Regulation of Herbivore-Induced Phenolics in Plants
批准号:
0104820
负责人:
Jack Schultz
金额:
$1.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-07-01 至 2003-06-30
中文摘要
论文研究:植物中食草动物诱导的酚类物质的供应方调节Jack Schultz和Toni Schawei酚类物质是所有植物中合成的碳基化学物质。 木质素是木材的主要成分,是一种酚类化合物。 除了木质素的结构作用外,许多其他酚类化合物在所有植物的生命中作为结构和防御元素发挥着不同的作用。 酚类物质产生的变化是植物害虫研究中研究最多的一类“防御”。 许多关于植物如何分配碳和养分资源的生态理论都假定,植物能够根据环境的变化,改变用于合成酚类物质的资源比例。 世界上大部分的碳通过生物合成途径,导致酚类合成(一旦它在光合作用期间被植物从大气中吸收)。 因此,这些途径是全球碳循环的关键组成部分。 迄今为止的所有证据表明,全球变化将提高这些生物合成途径的重要性。 然而,植物对酚类物质产生的调节作用仍然知之甚少。 这可能部分是因为植物用来合成酚类物质的两种生物合成途径传统上被分开研究。 莽草酸途径(SP)已被研究为芳香族氨基酸的来源,苯丙素途径(PP)作为防御和木质素的来源。大多数植物科学家专注于PP的详细调节,这是这条管道中的第二条途径,忽略了这些途径中的早期步骤。 提出的研究的核心假设是,酚类化合物的调节是在SP,第一条途径,以及下游的PP内的合成的“供应侧”完成的。 通过一系列温室实验,本研究旨在确定植物如何协调调节这条合成管道的“顶部”和“底部”,即两种调节酶(DAHPS和PAL)。 另外一个正在探索的想法是,当植物改变其酚类物质的产生时,它们能够利用储存的碳基途径中间体库。 通过比较模式草本植物烟草和模式木本植物白杨的酚类调节策略,这项研究将有助于解释碳资源如何分配给这些不同植物的重要途径和产物。 研究结果将有助于阐明植物体内碳分配模式的调控和演化。 这些信息将指出植物的育种或工程方法,以最大限度地提高碳分配用于各种目的,并将有助于更好地了解植物生长,防御和生产力。
英文摘要
DISSERTATION RESEARCH: Supply-side Regulation of Herbivore-Induced Phenolics in PlantsJack Schultz and Toni SchaefferPhenolics are carbon-based chemicals synthesized within all plants. Lignin, the major component of wood, is a phenolic. In addition to the structural role of lignin, many other phenolics play diverse roles in the lives of all plants as both structural and defensive elements. Changes in phenolic production comprise the most-studied class of "defenses" in research on plant pests. Much ecological theory on how plants allocate their carbon and nutrient resources presumes that plants, in response to changes in their environment, are able to vary the proportion of their resources that they use to synthesize phenolics. The majority of the world's carbon passes through the biosynthetic pathways leading to phenolic synthesis (once it is taken from the atmosphere by the plant during photosynthesis). Hence, these pathways are critical components of global carbon cycling. All evidence to date suggests that global change will enhance the importance of these biosynthetic pathways. However, plant regulation of phenolic production is still poorly understood. This may be partly because the two biosynthetic pathways that plants use to synthesize phenolics have traditionally been studied separately. The shikimate pathway (SP) has been studied as the source of aromatic amino acids, and the phenylpropanoid pathway (PP) as the source of defenses and lignin. Most plant scientists have focused on the detailed regulation of the PP, the second pathway in this pipeline, ignoring earlier steps in these pathways. The core hypothesis of the proposed research is that regulation of phenolics is accomplished at the "supply-side" of synthesis within the SP, the first pathway, as well as downstream within the PP. Using a series of greenhouse experiments, this research aims to determine how plants coordinately regulate the "top" and "bottom" of this synthetic pipeline, namely two regulatory enzymes (DAHPS and PAL). Also being explored is the idea that plants are able to exploit stored pools of carbon-based pathway intermediates when they change their phenolic production. By comparing the phenolic regulation strategy of a model herbaceous plant, tobacco, to a model woody plant, poplar, this research will help explain how carbon resources are allocated to these important pathways and products in very different plants. The results will clarify the regulation and evolution of carbon allocation patterns in plants. This information will point to ways in which plants may be bred or engineered to maximize carbon allocation for various purposes, and will facilitate better understanding of plant growth, defense, and productivity.
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Molecular basis of plant parasitism by a galling insect
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Arabidopsis 2010: Integrating Gene Expression With Biochemical Phenotype in Plant-Insect Interactions
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COLLABORATIVE RESEARCH: Coordinate Induction of Sink Strength and Polyphenol Metabolism in Trees
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批准号:0114565
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Dissertation Research: The Ecological Consequences of Parasitoid Attraction to Damage-Induced Volatile Compounds
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批准号:9902199
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资助金额:$0.95万
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Dissertation Research: Sink Strength Manipulation and Fitness of a Galling Aphid
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LTREB: Long-term Study of a Gypsy Moth-impacted Forest
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批准号:9974067
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Linked Plant Responses to Mechanical Perturbation and Pests
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批准号:9630798
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Chemical Ecology of Plant-Pest Interactions: A Community Approach
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批准号:9420013
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资助金额:$21.01万
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依托单位:
LTREB: Long-Term Studies of a Gypsy Moth-Impacted Forest
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批准号:9318073
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项目类别:Continuing Grant
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资助金额:$22.22万
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Plant Responses to the Environment: Biochemical Bases, Physiological Responses, and Ecological Consequences
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批准号:9413204
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资助金额:$124.87万
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依托单位:
Seventh Annual Penn State Symposium in Plant Physiology: to be held May 1993, University Park, PA
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批准号:9306747
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项目类别:Standard Grant
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资助金额:$0.63万
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财政年份:1993
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负责人:Jack Schultz
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依托单位:
Dissertation Research: Top-down Versus Bottom-up Impacts on Creosote Bush Insects at the Jornada LTER Site, New Mexico
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批准号:9310938
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项目类别:Standard Grant
-
资助金额:$0.9万
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财政年份:1993
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依托单位:
EROL: Impact of Damage-induced Changes in Oak Leaves on Susceptibility of Gypsy Moth to a Baculovirus
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批准号:8918083
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项目类别:Continuing Grant
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财政年份:1990
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依托单位:
Stress-Mediated Interactions Among Oaks, Gypsy Moth, and a Baculovirus
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批准号:8813433
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财政年份:1988
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依托单位:
Dissertation Research: Impact of Environment on Plant Susceptibility to Leaf-Cutter Ants
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批准号:8815648
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资助金额:$1.0万
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依托单位:
Impacts of Host Plant Quality on the Gypsy Moth (Lymantrias Dispar. L.)
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批准号:8400284
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项目类别:Continuing Grant
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资助金额:$24.0万
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财政年份:1984
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依托单位:
Undergraduate Research Participation
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依托单位:
国内基金
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