Colchicine induced manifestation of abnormal male meiosis and 2n pollen in Trachyspermum ammi (L.) Sprague (Apiaceae)

IF 2.1 4区 生物学 Q2 Agricultural and Biological Sciences
H. Dwivedi
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引用次数: 0

Abstract

Unreduced gametes are the key source for the natural polyploidization in plants, but process of its formation is very low in nature. Meiotic mutants are second source for the formation of 2n pollen. In this cytological investigation, the meiotic aberrations and its impact on post-meiotic products were analysed in autotetraploid Trachyspermum ammi (L.) Sprague (4n=36). The seedlings of T. ammi (L.) Sprague were treated with 3 different concentrations of colchicine (0.2, 0.4 and 0.5%, w/v) for 3 different durations. Six polyploid plants were induced which was confirmed on the basis of cytological analysis. Colchicine, an anti-microtubular drug induced different meiotic and post-meiotic abnormalities such as chromosomal bridges, lagging chromosomes, scattering, precocious, fragments, dyads, triads, and polyads. The formation of several abnormal sporads clearly signifies the meiotic restitution. The tendency of univalents to scattered in the cytoplasm at metaphase was identified as a peculiar aberration asynapsis. Pollen variability and fusion of pollen walls was reported and pollen fertility was calculated. The morphological analysis of the pollen allowed us to confirm the occurrence of 2n pollen.
秋水仙碱诱导的羊草雄性减数分裂异常和2n花粉的表现斯普拉格(伞形科)
未还原配子是植物自然多倍体化的关键来源,但其形成过程在自然界中是非常低的。减数分裂突变体是形成2n花粉的第二来源。本细胞学研究分析了同源四倍体羊尾草(Trachyspermum ammi, L.)减数分裂畸变及其对减数分裂后产物的影响。斯普拉格(4 n = 36)。棉蚜(T. ammi, L.)幼苗用3种不同浓度的秋水仙碱(0.2、0.4和0.5%,w/v)处理三种时间。通过细胞学分析,确定了6株多倍体植株。秋水仙碱是一种抗微管药物,可诱导不同的减数分裂和减数分裂后异常,如染色体桥、滞后染色体、散射、早熟、片段、二联体、三联体和多联体。几个异常孢子的形成清楚地表明减数分裂的恢复。在中期,单价体在细胞质中分散的趋势被认为是一种特殊的畸变。报道了花粉变异和花粉壁融合,并计算了花粉育性。花粉的形态分析使我们确认了2n花粉的存在。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Caryologia
Caryologia 生物-遗传学
CiteScore
1.60
自引率
23.80%
发文量
26
审稿时长
12 months
期刊介绍: Caryologia is devoted to the publication of original papers, and occasionally of reviews, about plant, animal and human karyological, cytological, cytogenetic, embryological and ultrastructural studies. Articles about the structure, the organization and the biological events relating to DNA and chromatin organization in eukaryotic cells are considered. Caryologia has a strong tradition in plant and animal cytosystematics and in cytotoxicology. Bioinformatics articles may be considered, but only if they have an emphasis on the relationship between the nucleus and cytoplasm and/or the structural organization of the eukaryotic cell.
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