Unverified paper record
Unlocking the secret of soft X-ray impact on seed germination
30 May 2025 · 10.21203/rs.3.rs-6707946/v1
Abstract
Abstract Background Seed quality analysis using X-rays is increasingly explored due to its invasive and rapid nature. Yet, the current absence of reliable and standardised imaging protocols has led to contradictory effects of X-ray exposure in previous studies. Our work systematically investigated the effect of soft X-rays on a wide range of plant materials. Results The baseline of three germination categories was established across seven species before the application of soft X-ray exposure under controlled standard germination conditions. The high inter-varietal and inter-lot variabilities, in addition to the strong interaction between X-ray exposure with variety and lot, reinforced the need to consider genetic and seed quality aspects while evaluating the impacts of X-rays. A slight stimulative effect was observed on most of the species (bean, carrot, fennel, maize, radish, and ryegrass), notably, with a repeated reduction in ungerminated seeds. Intrinsic physical quality holds a crucial value where the minor negative impact observed in soybean originated from its degraded physical quality and not from X-ray exposure, hence, no destructive effects were detected. To understand whether seed size plays a significant role in a seed's response to exposure, linear regression models were built to predict 3D seed traits (volume) from 2D X-ray images. Yet, seed size did not explain the variation in responses to soft X-rays. However, the average density of the seven species explained both their natural germination ( p p Conclusion Soft X-ray exposure is non-destructive with a beneficial effect on germination but can be strongly influenced by underlying genetics and the physical quality of the tested seeds. This study adopted internationally-standardised germination procedures and tested the effect of soft X-rays across diverse botanical, genetic and seed quality profiles. This work addressed important gaps in evaluating X-ray impacts and proposed a robust design and well-examined radiography protocol for a proven non-destructive seed quality analysis.
Plant phenotyping relevance
軟X線ラジオグラフィーによる非破壊的な種子品質・3D形質推定プロトコルの検討と検証が中心的に含まれており、単なる発芽試験ではない。
abstractSeed quality analysis using X-rays is increasingly explored due to its invasive and rapid nature.
abstractlinear regression models were built to predict 3D seed traits (volume) from 2D X-ray images.
abstractproposed a robust design and well-examined radiography protocol for a proven non-destructive seed quality analysis.
Code and data availability
The supplied blocks describe X-ray radiography germination experiments, an image analysis pipeline, and GLM statistics, but contain no data availability statement, deposited dataset, or author code repository with a public URL. All URLs in the text are citations to prior work, not paper-specific assets.
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