Identity of normal and mutant flower-color pigments in four different Tradescantia clones confirmed by means of microspectrophotometry

Marie Sanda-Kamigawara, S. Ichikawa
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引用次数: 5

Abstract

As a step to investigate the genetic identity of normal blue and mutant pink flower-color pigments in four different Tradescantia clones (BNL 02, KU 27, KU 9 and KU 20), which are heterozygous for flower color (blue/pink), the light absorption spectra of the normal blue and mutant pink cells in their stamen hairs were measured microspectrophotometrically. It was found that the blue cells of all the four clones showed the maximum absorption peak at 574 nm, the second peak at 618 nm, and a shoulder at around 544 nm. It was also found that the pink cells of all these clones had two absorption peaks at 546 and 586 nm and a shoulder at around 512 nm. These findings prove that all the four clones examined produce the identical blue-color pigment normally, and also the identical pink-color pigment when the dominant gene for the blue color underwent mutation. One leaky mutant (intermediately colored) hair cell of clone BNL 02 was shown to be producing both the blue- and pink-color pigments.
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用显微分光光度法鉴定了4个不同无性系正常和突变花色素的同一性
为了研究4个花色(蓝/粉)杂合的Tradescantia无性系(bnl02、KU 27、KU 9和KU 20)正常蓝色和突变粉色花色素的遗传特性,用显微分光光度法测定了正常蓝色和突变粉色花色素在雄蕊毛中的吸收光谱。结果表明,4个克隆的蓝色细胞在574 nm处出现最大吸收峰,在618 nm处出现第二吸收峰,在544 nm处出现肩峰。所有克隆的粉色细胞在546和586 nm处有两个吸收峰,在512 nm处有一个肩。这些发现证明,所有被检测的4个克隆在正常情况下产生相同的蓝色色素,当蓝色的显性基因发生突变时,也产生相同的粉红色色素。无性系bnl02的一个漏突变体(中色)毛细胞同时产生蓝色和粉红色色素。
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