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Early generation selection for cold chipping in potato genotypes developed by conventional tetraploid breeding and by interspecific and interploidy hybridizations.

机译:通过常规四倍体育种以及种间和种间杂交发展的马铃薯基因型冷切屑的早期选择。

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摘要

A potato cultivar with the cold chipping (CC) trait accumulates less reducing sugars during cold (4C) storage and can therefore produce light colored chips with reduced acrylamide levels directly from storage. Cold chipping cultivars could reduce the losses and costs associated with most potato storage regimes. Development of CC cultivars using sexual polyploidization (SP) coupled with early generation selection (EGS) may accelerate the development of CC cultivars by increasing genetic variation, reducing new parent development time, and reducing population sizes necessary in potato breeding programs.;The objectives of this research were to determine the variance and genetic gains that result from EGS for CC on tubers derived from seedling transplants or greenhousegrown tubers using populations developed from 2x-2x, 2x-4x, 4x-2x, and 4x-4x matings. Agronomic and horticultural traits were also evaluated for selected genotypes.;Cold chipping was evaluated after 3 and 6 months cold (4C) storage. Chips were made by frying a 1 mm thick slice from the center of one longitudinally cut tuber per genotype in 185C vegetable oil until bubbling ceased. Chip color scores were visually evaluated using a standard color scale ranging from 1 to 10 with a score of 4 or less considered acceptable. Total and marketable yield, specific gravity, general tuber appearance, eye depth, sprouting, skin and flesh color, tuber shape, and maturity were evaluated for selected genotypes.;Large variances, high frequencies of acceptably chipping genotypes, and excellent mean color scores were observed in all 4 mating types. Positive genetic gains resulted from EGS for CC but were reduced by genotype by environment interactions. This illustrates the importance of testing genotypes over multiple locations and storage durations as a part of developing CC varieties.;Greater genetic gains from early generation selection may result by using SP with germplasm that has excellent CC coupled with superior agronomic and horticultural trait performance. The excellent performance of the 2x-2x matings in this research suggests that combining EGS with bilateral sexual polyploidization for CC may increase the probability of selecting a tetraploid CC genotype with cultivar potential if accurate and efficient methods of separating the resulting diploid and tetraploid progeny can be utilized.
机译:具有冷切屑(CC)特性的马铃薯品种在冷(4C)保存过程中积累的还原糖较少,因此可以直接从存储中生产出色泽较浅的切片,其丙烯酰胺含量降低。冷切栽培品种可以减少大多数马铃薯存储方式带来的损失和成本。使用性多倍体化(SP)结合早世代选择(EGS)培育CC品种,可通过增加遗传变异,减少新的亲本发育时间并减少马铃薯育种计划中必要的种群规模来加速CC品种的发展。这项研究旨在确定使用2x-2x,2x-4x,4x-2x和4x-4x交配的种群,从幼苗移植或温室栽培块茎上提取的块茎上CC的EGS产生的方差和遗传增益。还评估了所选基因型的农艺和园艺性状;冷切(4C)3和6个月后评估了冷切屑。通过从每个基因型的一个纵向切块茎的中心在185C植物油中煎炸1毫米厚的薄片,直到冒泡停止为止,来制作切片。使用标准色标(范围为1到10)以可视方式评估芯片的颜色分数,认为分数在4或以下是可以接受的。对选定的基因型评估了总的和可销售的产量,比重,块茎外观,眼深度,发芽,皮肤和肉色,块茎形状和成熟度;大差异,可接受的切屑基因型的高频率和优异的平均颜色得分在所有4种交配类型中均观察到。 CC的EGS产生了积极的遗传收益,但由于环境相互作用,其基因型却有所减少。这说明了在不断发展的CC品种中测试基因型在多个位置和保存期限上的重要性。通过使用具有优良CC以及优良农艺和园艺性状表现的种质SP,可以从早期选择中获得更大的遗传收益。本研究中2x-2x交配的出色表现表明,如果可以使用准确而有效的方法分离得到的二倍体和四倍体后代,则将EGS与双边有性多倍体结合用于CC可能会增加选择具有栽培潜力的四倍体CC基因型的可能性。利用。

著录项

  • 作者

    Esplin, David L.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Agriculture General.;Agriculture Plant Culture.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 160 p.
  • 总页数 160
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:44:04

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