Preparation and Characterization of Biochar and Their Effect on Cell Division

Muwafaq F A Al-Hayali, A. Khalid, N. Abdelsalam, Rehab Y. Ghareeb, Haitham Emaish
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Abstract

main objectives of the current study are preparing and characterization of different sources of biochar from maize, rice, and farm residues; an application of biochar with wheat seeds in soils to determine the effect on germination and other testes and study the effect of biochar on mitotic division and chromosomal aberrations. For biochar generated from straw rice, the results showed a high percentage of carbon compared with the other elements. The sample recorded many elements such as Carbon, Oxygen, Magnesium, Silicon, Potassium and Calcium. While the biochar from maize stalk includes higher elements compared with the rice straw biochar, the highest two elements were Carbon and Silicon, respectively. Finally, for biochar from tree residues, the analysis of the elements showed an increase in Carbon, Calcium and Oxygen, respectively compared with the other biochar types the Calcium was higher. During the current study, different biochar levels and sources effect were tested on the cell division and mitotic index besides their effect on chromosomal aberration on wheat root tips. The wheat root tips were collected and examined under microscopic (100x) to detect the several mitosis phases such as prophase, metaphase, anaphase, and telophase, in addition to cytokinesis. The chromosomal aberrations were observed and detected to show the effect of different biochar levels and sources such as stickiness, lagging chromosome bridge, multinuclei, ergon, abnormal prophase, abnormal metaphase, abnormal anaphase, elongation of nucleus content and gab chromosome.
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生物炭的制备、表征及其对细胞分裂的影响
目前研究的主要目标是从玉米、水稻和农场残留物中制备和表征不同来源的生物炭;应用生物炭和小麦种子在土壤中测定对萌发和其他性状的影响,并研究生物炭对有丝分裂和染色体畸变的影响。对于秸秆稻产生的生物炭,与其他元素相比,结果显示碳的百分比很高。样品中含有碳、氧、镁、硅、钾和钙等多种元素。玉米秸秆生物炭的元素含量高于水稻秸秆生物炭,其中碳和硅元素含量最高。最后,对于树木残炭,元素分析表明碳、钙和氧含量均有所增加,且钙含量高于其他类型的生物炭。本研究考察了不同生物炭水平和来源对小麦根尖细胞分裂和有丝分裂指数的影响,以及对小麦根尖染色体畸变的影响。收集小麦根尖,在100倍显微镜下观察有丝分裂的前期、中期、后期和末期,以及细胞质分裂。观察和检测不同生物炭水平和来源对染色体畸变的影响,如黏性、染色体滞后桥、多核、ergon、前期异常、中期异常、后期异常、核含量延长和gab染色体。
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审稿时长
5 weeks
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