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Preparations of Meiotic Pachytene Chromosomes and Extended DNA Fibers from Cotton Suitable for Fluorescence In Situ Hybridization

机译:从棉花中制备适合于荧光原位杂交的减数分裂的粗线染色体和DNA延伸纤维

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摘要

Fluorescence in situ hybridization (FISH) has become one of the most important techniques applied in plant molecular cytogenetics. However, the application of this technique in cotton has lagged behind because of difficulties in chromosome preparation. The focus of this article was FISH performed not only on cotton pachytene chromosomes, but also on cotton extended DNA fibers. The cotton pollen mother cells (PMCs) instead of buds or anthers were directly digested in enzyme to completely breakdown the cell wall. Before the routine acetic acid treatment, PMCs were incubated in acetic acid and enzyme mixture to remove the cytoplasm and clear the background. The method of ice-cold Carnoy's solution spreading chromosome was adopted instead of nitrogen removed method to avoid chromosomes losing and fully stretch chromosome. With the above-improved steps, the high-quality well-differentiated pachytene chromosomes with clear background were obtained. FISH results demonstrated that a mature protocol of cotton pachytene chromosomes preparation was presented. Intact and no debris cotton nuclei were obtained by chopping from etiolation cotyledons instead of the conventional liquid nitrogen grinding method. After incubating the nuclei with nucleus lysis buffer on slide, the parallel and clear background DNA fibers were acquired along the slide. This method overcomes the twist, accumulation and fracture of DNA fibers compared with other methods. The entire process of DNA fibers preparation requires only 30 min, in contrast, it takes 3 h with routine nitrogen grinding method. The poisonous mercaptoethanol in nucleus lysis buffer is replaced by nonpoisonous dithiothreitol. PVP40 in nucleus isolation buffer is used to prevent oxidation. The probability of success in isolating nuclei for DNA fiber preparation is almost 100% tested with this method in cotton. So a rapid, safe, and efficient method for the preparation of cotton extended DNA fibers suitable for FISH was established.
机译:荧光原位杂交(FISH)已成为应用于植物分子细胞遗传学的最重要技术之一。但是,由于染色体制备困难,该技术在棉花上的应用落后。本文的重点是不仅在棉花粗线染色体上进行FISH,而且还在棉花延伸的DNA纤维上进行FISH。棉花花粉母细胞(PMC)代替芽或花药直接在酶中消化,从而完全破坏细胞壁。在常规乙酸处理之前,将PMC在乙酸和酶混合物中孵育,以除去细胞质并清除背景。采用冰冷的卡诺氏溶液扩散染色体的方法代替了脱氮方法,避免了染色体的丢失和染色体的完全伸展。通过以上改进步骤,获得了背景清晰,高质量的高分化粗线型染色体。 FISH结果表明,提出了一种成熟的棉厚膜染色体制备方案。通过从黄化子叶切碎,而不是常规的液氮研磨方法,获得了完整且没有碎片的棉核。用玻片上的细胞核裂解缓冲液孵育细胞核后,沿着玻片获取平行且清晰的背景DNA纤维。与其他方法相比,该方法克服了DNA纤维的扭曲,积累和断裂。 DNA纤维制备的整个过程仅需要30分钟,而常规的氮气研磨方法则需要3小时。核裂解缓冲液中的有毒巯基乙醇被无毒的二硫苏糖醇替代。核分离缓冲液中的PVP40用于防止氧化。用这种方法在棉花中测试成功分离出用于制备DNA纤维的核的可能性几乎为100%。因此,建立了一种快速,安全,有效的方法来制备适合FISH的棉花扩展DNA纤维。

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