Unreduced spore formation in a spontaneous chimeric pinnule in an artificially produced haploid Anisocampium niponicum (Athyriaceae, Polypodiales).

IF 2.7 3区 生物学 Q2 PLANT SCIENCES
Journal of Plant Research Pub Date : 2024-03-01 Epub Date: 2024-01-09 DOI:10.1007/s10265-023-01511-2
Suzue M Kawakami, Shogo Kawakami
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引用次数: 0

Abstract

Haploid sporophytes of Anisocampium niponicum with 2n = 40, were produced artificially by induced apogamy in vitro. They were subsequently transplanted into pots and two of them have been cultivated for the investigation of sporogenesis and/or production of chimera for more than 20 years. Haploid A. niponicum is sterile, but an abnormal chimeric pinnule that developed spontaneously in a single frond produced sporangia with spores. Each sporangium bore approximately 32 spores that were almost uniform in size. Sowing of these spores resulted in 50 gametophytes. Of 20 gametophytes cultured individually, five produced sporophytes apogamously after eight months. Both the gametophytes and subsequent apogamous sporophytes showed a chromosome number of 2n = 40. Our study demonstrates that a haploid sporophyte offspring can be produced from a haploid mother sporophyte via haploid spores. Since asexual reproduction is a prominent evolutionary process in ferns, the reproduction of a haploid A. niponicum sporophyte by unreduced spore formation might help to elucidate how apogamous ferns occur and evolve.

人工生产的单倍体 Anisocampium niponicum(鱼腥草科,多足目)中自发嵌合小羽叶中未还原孢子的形成。
通过体外诱导无配子作用,人工培育出了2n = 40的单倍体裸冠菊(Anisocampium niponicum)孢子体。这些孢子体随后被移植到花盆中,其中两个孢子体已被培育了 20 多年,用于研究孢子发生和/或生产嵌合体。单倍体 A. niponicum 是不育的,但在单个叶片中自发形成的异常嵌合小羽片产生了带有孢子的孢子囊。每个孢子囊约有 32 个孢子,大小几乎一致。播种这些孢子可产生 50 个配子体。在单独培养的 20 个配子体中,有 5 个在 8 个月后产生了孢子体。配子体和随后的无配子孢子体的染色体数都是 2n = 40。我们的研究证明,单倍体母孢子体可以通过单倍体孢子产生单倍体孢子体后代。由于无性繁殖是蕨类植物的一个重要进化过程,因此通过未还原孢子的形成来繁殖单倍体尼泊金孢子体可能有助于阐明无性繁殖蕨类植物是如何发生和进化的。
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
Journal of Plant Research
Journal of Plant Research 生物-植物科学
CiteScore
5.40
自引率
3.60%
发文量
59
审稿时长
1 months
期刊介绍: The Journal of Plant Research is an international publication that gathers and disseminates fundamental knowledge in all areas of plant sciences. Coverage extends to every corner of the field, including such topics as evolutionary biology, phylogeography, phylogeny, taxonomy, genetics, ecology, morphology, physiology, developmental biology, cell biology, molecular biology, biochemistry, biophysics, bioinformatics, and systems biology. The journal presents full-length research articles that describe original and fundamental findings of significance that contribute to understanding of plants, as well as shorter communications reporting significant new findings, technical notes on new methodology, and invited review articles.
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