暴露于秋水仙碱的阿茶(Fonio)(Digitaria Exilis 和 Digitaria Iburua [Kippist] Stapf.)的农业形态生长响应:叶长、叶宽和叶面积指数

DD Nyam, NS Gonzuk, MD Sila, YC Tumba, EA Angyu, EH Kwon-Ndung
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摘要

本研究调查了秋水仙素处理对两种Acha(fonio)(即Digitaria exilis和Digitaria iburua)叶长、叶宽和叶面积指数(LAI)的影响。秋水仙素是一种强效的有丝分裂抑制剂,被广泛用于诱导多倍体和研究基因组复制对各种形态特征的影响。本研究旨在探讨秋水仙素处理是否会改变两种阿茶的叶片形态。用不同浓度(0.05、0.10、0.15 和 0.20 g/dL)的秋水仙素溶液处理这两个物种的种子,同时保留一个未作任何处理的对照组。使用米尺测量叶长和叶宽,并用两种植物的叶长和叶宽乘以常数计算 LAI。使用 SPSS 的方差分析进行统计分析,以确定处理组和对照组之间的显著差异。结果表明,秋水仙素处理对两种阿茶的叶片形态都有显著影响。叶片长度和宽度在秋水仙素处理后明显增加,增加程度取决于浓度。此外,与对照组相比,处理过的植株的叶片成熟度(LAI)也有明显增加。秋水仙素浓度为 0.10 克/分升时效果最佳,可用于提高两种阿茶的形态特征。研究结果表明,秋水仙素诱导的多倍体可提高阿茶植物的叶片生长和整体叶面积,对提高农业生产力和产量具有潜在意义。要阐明秋水仙素诱导的多倍体对阿茶其他生长参数、生殖性状和产量的潜在机制和长期影响,还需要进一步的研究。了解与阿茶多倍体相关的遗传和生理变化,将有助于为这种重要的谷类作物制定更好的育种策略和栽培方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Agro-morphological Growth Response of Acha (Fonio) (Digitaria Exilis and Digitaria Iburua [Kippist] Stapf.) Exposed to Colchicine: Leaf Length, Leaf Width and Leaf Area Index
The present study investigated the effects of colchicine treatment on leaf length, leaf width, and leaf area index (LAI) in two species of Acha (fonio), namely Digitaria exilis and Digitaria iburua. Colchicine, a potent mitotic inhibitor, has been widely used to induce polyploidy and in studying the effects of genome duplication on various morphological traits. This study aimed to explore if colchicine treatment could alter the leaf morphology of the two Acha species. Seeds of the two species were treated with colchicine solution at various concentrations (0.05, 0.10, 0.15, and 0.20 g/dL), while a control group was maintained without any treatment. Leaf length and width were measured using a meter rule, and LAI was calculated by multiplying the leaf length and leaf width with the constant for both species. Statistical analysis was performed using the Analysis of Variance on SPSS to determine significant differences between treated and control groups. The results showed that colchicine treatment had a significant effect on leaf morphology in both Acha species. Leaf length and width increased significantly in response to colchicine treatment, with the degree of increase depending on the concentration. Moreover, the LAI also exhibited a significant increase in treated plants compared to the control group. Colchicine concentration level of 0.10 g/dL produced the best results that can be exploited to enhance the morphological characteristics of both Acha species. The findings suggest that colchicine-induced polyploidy can enhance leaf growth and overall leaf area in Acha plants, leading to potential implications for agricultural productivity and yield improvement. Further studies are needed to elucidate the underlying mechanisms and long-term effects of colchicine-induced polyploidy on other growth parameters, reproductive traits, and yield in Acha. Understanding the genetic and physiological changes associated with polyploidy in Acha species will contribute to the development of improved breeding strategies and cultivation practices for this important cereal crop.
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