Effects of hormone concentrations on anther cultures and the acquisition of regenerated plants of five awnless triticale genotypes.

IF 4.7 2区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS Plant Methods Pub Date : 2025-01-07 DOI:10.1186/s13007-024-01322-z
Jun Ma, Fangyuan Zhao, Yinxia Zhang, Xinhui Tian, Wenhua Du
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Abstract

Background: The rapid production of doubled haploids by anther culture technology is an important breeding method for awnless triticale. The aim of this study was to explore the effects of triticale genotype and the types and ratios of exogenous hormones in the medium on the efficiency of triticale anther culture.

Results: Anthers of five triticale genotypes were cultured on four different callus induction media and the calli were induced to differentiate into green plants by culture on three different differentiation media. The triticale genotype T8004 showed the best performance in anther culture, with a callus induction rate of 28.64%, a green plantlet differentiation frequency of 33.33%, and a green plantlet production rate of 2.78%. The highest callus induction rates were obtained by culturing anthers on C3 medium (the main components were potassium nitrate, glutamine, inositol, etc.), and the highest green plantlet differentiation frequency was obtained by culturing calli on D2 differentiation medium (the main components were potassium nitrate, ammonium nitrate, calcium chloride dihydrate, etc.). Flow cytometry analyses showed that 15 of the 20 DH0 generation plants that grew normally in the field were doubled haploids. The average chromosome doubling success rate was 55.6%. Analyses of agronomic traits showed that the 11 DH1 doubled haploid plants reached the standard for awnless triticale, so they are candidate materials for breeding new awnless triticale varieties.

Conclusion: The anther culture technology of triticale was optimized in this paper, which made it possible to rapidly breed homozygous varieties of awnless triticale.

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激素浓度对5种无芒小黑麦基因型花药培养及再生植株获得的影响。
背景:利用花药培养技术快速生产双单倍体是无黑麦育种的重要手段。本研究旨在探讨小黑麦基因型及外源激素的种类和配比对小黑麦花药培养效率的影响。结果:将5种基因型小黑麦花药在4种不同的愈伤组织诱导培养基上培养,并在3种不同的愈伤组织诱导培养基上诱导愈伤组织向绿色植株分化。小黑麦基因型T8004在花药培养中表现最好,愈伤组织诱导率为28.64%,绿苗分化率为33.33%,绿苗产出率为2.78%。在C3培养基(主要成分为硝酸钾、谷氨酰胺、肌醇等)上培养的愈伤组织诱导率最高,在D2分化培养基(主要成分为硝酸钾、硝酸铵、二水合氯化钙等)上培养的愈伤组织绿苗分化率最高。流式细胞术分析表明,田间正常生长的20株DH0代植株中有15株为双倍单倍体。平均染色体加倍成功率为55.6%。农艺性状分析表明,11株DH1双单倍体植株均达到无芒小黑麦标准,是选育无芒小黑麦新品种的候选材料。结论:本文优化了小黑麦花药培养技术,为快速培育无黑麦纯合品种提供了可能。
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来源期刊
Plant Methods
Plant Methods 生物-植物科学
CiteScore
9.20
自引率
3.90%
发文量
121
审稿时长
2 months
期刊介绍: Plant Methods is an open access, peer-reviewed, online journal for the plant research community that encompasses all aspects of technological innovation in the plant sciences. There is no doubt that we have entered an exciting new era in plant biology. The completion of the Arabidopsis genome sequence, and the rapid progress being made in other plant genomics projects are providing unparalleled opportunities for progress in all areas of plant science. Nevertheless, enormous challenges lie ahead if we are to understand the function of every gene in the genome, and how the individual parts work together to make the whole organism. Achieving these goals will require an unprecedented collaborative effort, combining high-throughput, system-wide technologies with more focused approaches that integrate traditional disciplines such as cell biology, biochemistry and molecular genetics. Technological innovation is probably the most important catalyst for progress in any scientific discipline. Plant Methods’ goal is to stimulate the development and adoption of new and improved techniques and research tools and, where appropriate, to promote consistency of methodologies for better integration of data from different laboratories.
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