首页> 外文学位 >Maize sugary enhancer1 (se1) is a presence-absence variant of a previously uncharacterized gene and development of educational videos to raise the profile of plant breeding and improve curricula.
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Maize sugary enhancer1 (se1) is a presence-absence variant of a previously uncharacterized gene and development of educational videos to raise the profile of plant breeding and improve curricula.

机译:玉米含糖增强子1(se1)是以前未鉴定的基因的存在变异体,并且通过开发教育视频来提高植物育种水平并改进课程。

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摘要

Carbohydrate metabolism is a biologically, economically, and culturally important process in crop plants. Humans have selected many crop species such as maize (Zea mays L.) in ways that have resulted in changes to carbohydrate metabolic pathways, and understanding the underlying genetics of this pathway is therefore exceedingly important.;A previously uncharacterized starch metabolic pathway mutant, sugary enhancer1 (se1), is a recessive modifier of sugary1 (su1) sweet corn that increases the sugar content while maintaining an appealing creamy texture. This allele has been incorporated into many sweet corn varieties since its discovery in the 1970s, however, testing for the presence of this allele has been difficult. A genetic stock was developed that allowed the presence of se1 to be visually scored in segregating ears, which were used to genetically map se1 to the deletion of a single gene model located on the distal end of the long arm of chromosome 2. An analysis of homology found that this gene is specific to monocots, and the gene is expressed in the endosperm and developing leaf. The se1 allele increased water soluble polysaccharide (WSP) and decreased amylopectin in maize endosperm, but there was no overall effect on starch content in mature leaves due to se1. This discovery will lead to a greater understanding of starch metabolism, and the marker developed will assist in breeding.;There is a present need for increased training for plant breeders to meet the growing needs of the human population. To raise the profile of plant breeding among young students, a series of videos called Fields of Study was developed. These feature interviews with plant breeders who talk about what they do as plant breeders and what they enjoy about their chosen profession. To help broaden the education of students in college biology courses, and assist with the training of plant breeders, a second video series, Pollination Methods was developed. Each video focuses on one or two major crops, their genetics, and shows how to make controlled crosses with these plants. Both video series have already made contributions to the recruitment and training of future plant breeders.
机译:碳水化合物代谢是作物中生物学,经济和文化上重要的过程。人类已经选择了许多农作物物种,例如玉米(Zea mays L.),这会导致碳水化合物代谢途径的改变,因此了解该途径的内在遗传至关重要,因此;以前未知的淀粉代谢途径突变体,含糖增强剂1(se1)是甜玉米糖(su1)的隐性改良剂,可增加糖含量,同时保持诱人的奶油质地。自从1970年代发现以来,这种等位基因已被纳入许多甜玉米品种中,但是,很难检测到这种等位基因的存在。已开发出一种遗传种群,可以在分离的耳朵中目视对se1的存在进行评分,这被用来对se1进行基因定位,使其缺失位于2号染色体长臂末端的单个基因模型。同源性发现该基因对单子叶植物具有特异性,并且该基因在胚乳和发育中的叶子中表达。 se1等位基因增加了玉米胚乳中的水溶性多糖(WSP)并减少了支链淀粉,但由于se1对成熟叶片中的淀粉含量没有整体影响。这一发现将使人们对淀粉代谢有更深入的了解,并且所开发的标记将有助于育种。;目前需要对植物育种者进行更多培训,以满足其日益增长的需求。为了提高年轻学生对植物育种的认识,开发了一系列名为“研究领域”的视频。这些采访对象是植物育种者,他们谈论他们作为植物育种者所做的事情以及他们对所选专业的欣赏。为了帮助扩大大学生物学课程中学生的教育水平,并协助植物育种人员的培训,开发了第二个视频系列“授粉方法”。每个视频重点介绍一种或两种主要农作物及其遗传学,并展示如何与这些植物进行杂交。这两个视频系列已经为未来植物育种者的招募和培训做出了贡献。

著录项

  • 作者

    Haro von Mogel, Karl J.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Plant sciences.;Genetics.;Science education.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 132 p.
  • 总页数 132
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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