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碳离子束辐照的雄性配子导致胚胎和胚乳的独特发育。

Distinctive development of embryo and endosperm caused by male gametes irradiated with carbon-ion beam.

机构信息

Faculty of Agriculture, University of Miyazaki, 1-1 Gakuen-Kibanadai Nishi, Miyazaki, 889-2192, Japan.

Nishina Center for Accelerator-Based Science, RIKEN, 2-1 Hirosawa, Wako, Saitama, 351-0198, Japan.

出版信息

Plant Reprod. 2024 Sep;37(3):355-363. doi: 10.1007/s00497-024-00496-9. Epub 2024 Feb 9.

Abstract

In Cyrtanthus mackenii, development of embryo and endosperm were differentially affected by fertilization of male gametes with DNA damage and mutations. Pollen irradiation with ionizing radiations has been applied in plant breeding and genetic research, and haploid plant induction has mainly been performed by male inactivation with high-dose irradiation. However, the fertilization process of irradiated male gametes and the early development of embryo and endosperm have not received much attention. Heavy-ion beams, a type of radiation, have been widely applied as effective mutagens for plants and show a high mutation rate even at low-dose irradiation. In this study, we analyzed the effects of male gametes of Cyrtanthus mackenii irradiated with a carbon-ion beam at low doses on fertilization. In immature seeds derived from the pollination of irradiated pollen grains, two types of embryo sacs were observed: embryo sac with a normally developed embryo and endosperm and embryo sac with an egg cell or an undivided zygote and an endosperm. Abnormalities in chromosome segregation, such as chromosomal bridges, were observed only in the endosperm nuclei, irrespective of the presence or absence of embryogenesis. Therefore, in Cyrtanthus, embryogenesis is strongly affected by DNA damage or mutations in male gametes. Moreover, various DNA contents were detected in the embryo and endosperm nuclei, and endoreduplication may have occurred in the endosperm nuclei. As carbon-ion irradiation causes chromosomal rearrangements even at low doses, pollen irradiation can be an interesting tool for studying double fertilization and mutation heritability.

摘要

在嘉兰属(Cyrtanthus mackenii)中,胚胎和胚乳的发育受到带 DNA 损伤和突变的雄性配子受精的不同影响。用电离辐射辐照花粉已被应用于植物育种和遗传研究中,并且主要通过高剂量辐射使雄性失活来诱导单倍体植物。然而,辐照雄性配子的受精过程以及胚胎和胚乳的早期发育并没有得到太多关注。重离子束作为一种辐射,已被广泛应用于植物的有效诱变剂,即使在低剂量辐照下也显示出很高的突变率。在这项研究中,我们分析了用碳离子束辐照的嘉兰属雄性配子对受精的影响。在未成熟种子中,观察到两种类型的胚囊:一种是具有正常发育胚胎和胚乳的胚囊,另一种是具有卵细胞或未分裂的合子和胚乳的胚囊。仅在胚乳核中观察到染色体分离异常,如染色体桥,而不论是否存在胚胎发生。因此,在嘉兰属中,胚胎发生强烈受到雄性配子中 DNA 损伤或突变的影响。此外,在胚胎和胚乳核中检测到各种 DNA 含量,并且胚乳核中可能发生了内复制。由于碳离子辐照即使在低剂量下也会引起染色体重排,因此花粉辐照可以成为研究双受精和突变遗传性的有趣工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be4e/11377488/d4525a3d8795/497_2024_496_Fig1_HTML.jpg

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