染色体异常不能解释超声检查蚕豆根分生组织生长速率降低的原因

M.W. Miller, G.E. Kaufman, E.L. Carstensen
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引用次数: 4

摘要

考虑了超声诱导的染色体异常细胞的生殖完整性丧失可能是超声诱发的根生长速率降低的结果。采用频率为2MHz、强度为8w /cm2的超声波对蚕豆根分生组织进行1分钟超声处理。根据Hall, Lajtha和Oliver(14)的模型,从根生长率计算出的细胞存活率为0·58。第一次超声后有丝分裂时携带染色体异常细胞的加权平均产率为0.105。因此,有染色体异常的细胞数量只有14个,这是计算出的细胞存活分数所需的数量。这一结果表明,超声处理后根系生长速率的降低可能主要是由于声场对伸长细胞的影响,而不是对分生细胞的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chromosomal anomalies cannot account for growth rate reduction in ultrasonicated Vicia faba root meristems

The possibility that root growth rate reduction following ultrasonication might be the result of loss of reproductive integrity in cells bearing ultrasound-induced chromosomal anomalies was considered. Root meristems of Vicia faba were ultrasonicated at a frequency of 2MHz and an intensity of 8 W/cm2 for one minute. The surviving fraction of cells, calculated from root growth rate according to the model of Hall, Lajtha and Oliver(14) was 0·58. The weighted average yield of chromosomal-anomaly-bearing cells at the first post-sonication mitosis was 0·105. Thus, the number of cells with chromosomal anomalies is only 14 the number needed to account for the calculated cell surviving fraction. This result suggests that root growth rate reduction following ultrasonication may be due largely to effects of the sound field on elongating cells rather than to effects on meristematic cells.

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