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Evaluating the spore genome sizes of ferns and lycophytes: a flow cytometry approach
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Evaluating the spore genome sizes of ferns and lycophytes: a flow cytometry approach

Li-Yaung Kuo, Yi-Jia Huang, JenYu Chang, Wen-Liang ChiouYao-Moan Huang
New Phytologist, 卷.213(4), 頁碼.1974-1983
03/2017
PMID: 28164337

摘要

bead-vortexing C-value fern flow cytometry genome size lycophyte reproduction spore Physiology Plant Science
Ferns and lycophytes produce spores to initiate the gametophyte stage for sexual reproduction. Approximately 10% of these seedless vascular plants are apomictic, and produce genomic unreduced spores. Genome size comparisons between spores and leaves are a reliable, and potentially easier way to determine their reproductive mode compared to traditional approaches. However, estimation of the spore genome sizes of these plants has not been attempted. We attempted to evaluate the spore genome sizes of ferns and lycophytes using flow cytometry, collected spores from selected species representing different spore physical properties and taxonomic groups, and sought to optimize bead-vortexing conditions. By evaluating the spore and sporophyte genome sizes, we examined whether reproductive modes could be ascertained from these flow cytometry results. We proposed two separate sets of optimized bead-vortexing conditions for the nuclear extraction of green and nongreen spores. We further successfully extracted spore nuclei of 19 families covering most orders, and the qualities and quantities of these extractions satisfied the C-value criteria. These evaluated genome sizes further supported the reproductive modes reported previously. In the current study, flow cytometry was used for the first time to evaluate the spore genome sizes of ferns and lycophytes. This use of spore flow cytometry provides a new, efficient approach to ascertaining the reproductive modes of these plants.

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https://doi.org/10.1111/nph.14291檢視
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