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Modification of sex expression in transgenic melon via altered ethylene production and perception.

机译:通过改变乙烯的产生和感知来改变转基因瓜中的性别表达。

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摘要

Cucurbit species are noted for their diversity of sexual phenotypes which are subject to control by developmental, genetic, and hormonal factors. Understanding the basis of sex expression is of basic interest to elucidate underlying mechanisms of sex determination and is of applied interest as pistillate flowers are necessary for fruit production. Studies with exogenous hormones have indicated that ethylene is the primary hormone influencing sex determination in cucurbits, with increased ethylene causing increased femaleness. In this dissertation, I sought to: examine the role of ethylene perception by the developing flower in sex determination, test the ability to increase femaleness in the field through increased endogenous ethylene production, and examine possible ecological impacts of altered ethylene sensitivity or production. In the first study, melon (Cucumis melo L.) plants were transformed with the Arabidopsis dominant mutant ethylene receptor etr1-1, under the control of the petal/stamen targeted Arabidopsis Apetela3 (AP3) promoter, or carpel/nectary targeted Arabidopsis Crab's Claw (CRC) promoter, to evaluate the effects of blocked ethylene perception in different regions of the developing flower. CRC::etr1-1 melon plants showed increased femaleness as measured by earlier and increased pistillate bud production, and the formation of female rather than hermaphrodite buds. AP3::etr1-1 melon plants showed increased maleness as measured by almost exclusive staminate flower production and the presence of poorly developed carpels in the few pistillate buds that were produced. The results of these experiments suggest a model for sex determination in melon whereby ethylene perception by the stamen is required for carpel development while ethylene perception by the carpel is required for stamen development. In the second study, field grown transgenic melon constitutively overexpressing an ACS gene for ethylene biosynthesis showed earlier and increased production of mature pistillate flowers as well as earlier fruit set and increased sequential fruit set on the main stem. These results indicate that ethylene is important for pistillate bud development and also may suggest an additional role in signaling associated with patterns of fruit set. Lastly, published literature was examined to conduct a case study on modified ethylene production and perception in order to provide insight into possible secondary effects and ecological impacts of altered signaling pathways.
机译:葫芦科物种因其性表型的多样性而受到关注,这些性表型受发育,遗传和激素因素的控制。理解性别表达的基础对于阐明性别决定的基本机制具有重要意义,并且由于雌蕊花对于水果生产是必需的,因此具有实用意义。对外源激素的研究表明,乙烯是影响葫芦丝性别的主要激素,乙烯含量增加会导致雌性增加。在这篇论文中,我试图:研究发育中的花对乙烯的感知在性别决定中的作用,测试通过增加内源性乙烯产量在田间增加雌性的能力,以及研究改变乙烯敏感性或产量对生态可能的影响。在第一个研究中,在拟定为花瓣/雄蕊的拟南芥Apetela3(AP3)启动子或拟定为心皮/蜜腺的拟南芥蟹爪的控制下,用拟南芥优势突变乙烯受体etr1-1转化了瓜类(Cucumis melo L.)植物。 (CRC)启动子,以评估发育中的花朵不同区域中乙烯受体受阻的影响。 CRC :: etr1-1瓜类植物显示雌性增加(通过早期和雌芽芽产生的增加来衡量),并且形成雌性而不是雌雄同体的芽。 AP3 :: etr1-1瓜类植物显示出雄性增加,这通过几乎唯一的固定花产生和少数产生的雌芽中存在发育不良的心皮来衡量。这些实验的结果提出了用于瓜中性别确定的模型,由此心皮发育需要雄蕊的乙烯感知,而雄蕊发育需要心皮的乙烯感知。在第二项研究中,组成性地过量表达ACS基因用于乙烯生物合成的田间种植转基因瓜显示成熟雌蕊花的早产和增加产量,以及较早的坐果和主茎上依次坐果的增加。这些结果表明乙烯对于雌蕊芽的发育很重要,也可能暗示了在与果实结实相关的信号传递中的额外作用。最后,对公开发表的文献进行了研究,对改性乙烯的生产和感知进行了案例研究,以便深入了解信号通路改变可能产生的次级影响和生态影响。

著录项

  • 作者

    Little, Holly A.;

  • 作者单位

    Michigan State University.;

  • 授予单位 Michigan State University.;
  • 学科 Biology Plant Physiology.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 161 p.
  • 总页数 161
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;
  • 关键词

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