Leaf Organogenesis Improves Recovery of Solid Polyploid Shoots from Chimeric Southern Highbush Blueberry.

IF 2.7 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
BioTech Pub Date : 2025-06-12 DOI:10.3390/biotech14020048
Emily Walter, Akshaya Biswal, Peggy Ozias-Akins, Ye Chu
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引用次数: 0

Abstract

Interspecific and intersectional crosses have introduced valuable genetic traits for blueberry (Vaccinium sect. Cyanococcus) cultivar improvement. Introgression from Vaccinium species at the diploid, tetraploid, and hexaploid levels has been found in cultivated blueberries. Continued efforts to integrate wild blueberry genetic resources into blueberry breeding are essential to broaden the genetic diversity of cultivated blueberries. However, performing heteroploid crosses among Vaccinium species is challenging. Polyploid induction through tissue culture has been useful in bridging ploidy barriers. Mixoploid or chimeric shoots often are produced, along with solid polyploid mutants. These chimeras are mostly discarded because of their genome instability and the difficulty in identifying periclinal mutants carrying germline mutations. Since induced polyploidy in blueberries often results in a low frequency of solid mutant lines, it is important to recover solid polyploids through chimera dissociation. In this study, two vegetative propagation methods, i.e., axillary and adventitious shoot induction, were evaluated for their efficiency in chimera dissociation. Significantly higher rates of chimera dissociation were found in adventitious shoot induction compared to axillary shoot induction. Approximately 89% and 82% of the adventitious shoots induced from mixoploid lines 145.11 and 169.40 were solid polyploids, respectively, whereas only 25% and 53% of solid polyploids were recovered through axillary shoot induction in these lines. Effective chimera dissociation provides useful and stable genetic materials to enhance blueberry breeding.

叶片器官发生促进南方高丛蓝莓嵌合多倍体实心芽的恢复。
种间杂交和交叉杂交为蓝莓品种改良引入了有价值的遗传性状。在栽培蓝莓中发现了二倍体、四倍体和六倍体水平的蓝莓基因渗入。继续努力将野生蓝莓遗传资源整合到蓝莓育种中,对于扩大栽培蓝莓的遗传多样性至关重要。然而,在不同品种间进行异倍体杂交是具有挑战性的。通过组织培养诱导多倍体在桥接倍性屏障方面是有用的。混合倍体或嵌合芽经常产生,以及固体多倍体突变体。这些嵌合体大多被丢弃,因为它们的基因组不稳定,而且很难识别携带种系突变的外周突变体。由于蓝莓的诱导多倍体往往导致实体突变系的频率较低,因此通过嵌合体分离恢复实体多倍体是很重要的。在本研究中,对两种无性繁殖方法,即腋生诱导和不定枝诱导,进行了嵌合体分离效率的评价。与腋芽诱导相比,不定芽诱导的嵌合体分离率显著提高。混倍系145.11和169.40诱导的不定枝分别约89%和82%为实心多倍体,而这两个系腋生诱导的不定枝实心多倍体仅为25%和53%。有效的嵌合体解离为蓝莓育种提供了有用的、稳定的遗传物质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BioTech
BioTech Immunology and Microbiology-Applied Microbiology and Biotechnology
CiteScore
3.70
自引率
0.00%
发文量
51
审稿时长
11 weeks
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