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用γ辐射处理种子培育的番茄植株的形态解剖变异

Morpho-Anatomical Variations in L. Plants Raised from Seeds Treated with γ Radiation.

作者信息

Mohammad Anish, Verma Sarita, Iqbal Muhammad

机构信息

Department of Botany, School of Chemical and Life Sciences, Jamia Hamdard, New Delhi 110062, India.

出版信息

ACS Omega. 2024 Sep 25;9(40):41446-41455. doi: 10.1021/acsomega.4c04781. eCollection 2024 Oct 8.

Abstract

This study determines the effect of γ irradiation on seed germination, growth, and morpho-anatomical traits of the L. (London rocket) plant. Seeds irradiated with 2.5, 5, 10, 15, and 20 kGy of γ radiation showed a reduced germination percentage (13.68-56.84%) with reference to the control, showing an inverse relationship with radiation dose. Observations recorded at preflowering, flowering, and postflowering stages of plant growth showed a significant ( < 0.05%) dose-dependent decline in many growth parameters, such as root length, shoot length, shoot dry weight, number of leaves, and pods per plant, due to the radiation effect. However, root dry weight, leaf length, leaf dry weight, number of branches, and number of flowers per plant increased at the lowest dose (2.5 kGy) and then declined steadily with the increasing level of radiation. Likewise, several anatomical features (length of fibers and vessel elements, diameter of vessel elements, proportion of cortex, and vasculature in the stem) showed a consistent decrease with increasing γ irradiation in treated plants compared with the control. However, the pith area and the number of vessels per microscopic field decreased significantly with the lowest radiation dose (2.5 kGy) and then increased gradually with higher doses at each ontogenetic stage. The vulnerability factor in the control as well as treated plants increased with increasing plant age. In treated plants, vulnerability was higher under the effect of low-level radiation than in the control, but it showed an inverse relationship with the increasing level of radiation, thus being the lowest at 20 kGy radiation dose. Mesomorphy also showed an almost similar variation pattern with reference to the radiation dose.

摘要

本研究确定了γ射线辐照对紫花南芥植株种子萌发、生长及形态解剖特征的影响。与对照相比,用2.5、5、10、15和20千戈瑞γ射线辐照的种子发芽率降低(13.68 - 56.84%),且与辐射剂量呈负相关。在植物生长的开花前期、开花期和开花后期记录的观察结果显示,由于辐射效应,许多生长参数,如根长、茎长、茎干重、叶片数和单株荚果数,均呈现出显著的(< 0.05%)剂量依赖性下降。然而,根干重、叶长、叶干重、分枝数和单株花数在最低剂量(2.5千戈瑞)时增加,然后随着辐射水平的升高而稳步下降。同样,与对照相比,处理植株中一些解剖特征(纤维和导管分子长度、导管分子直径、皮层比例以及茎中的维管系统)随着γ射线辐照剂量的增加而持续减少。然而,在每个个体发育阶段,髓面积和每个显微镜视野中的导管数在最低辐射剂量(2.5千戈瑞)时显著减少,然后随着剂量升高逐渐增加。对照植株和处理植株的脆弱性因子均随着植株年龄的增加而增加。在处理植株中,低水平辐射影响下的脆弱性高于对照,但与辐射水平升高呈负相关,因此在20千戈瑞辐射剂量下最低。关于辐射剂量,中生性也呈现出几乎相似的变化模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8515/11465646/6e115cf0e81a/ao4c04781_0001.jpg

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