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玉米双单倍体系的分子和形态学评价。1. DH 系内的同质性。

Molecular and morphological evaluation of doubled haploid lines in maize. 1. Homogeneity within DH lines.

机构信息

BIOCEM-Groupe LIMAGRAIN, 24 Avenue des Landais, 63170, Aubieŕre Cedex, France.

出版信息

Theor Appl Genet. 1993 Aug;86(7):837-42. doi: 10.1007/BF00212610.

Abstract

The homogeneity of anther culture-derived lines of maize has been evaluated by means of field observations and molecular markers. The homogeneity of the doubled haploid (DH) lines was shown by the absence of segregation for morphological oligogenic traits. The intravariance for polygenic traits for 42 DH and two conventionally derived lines was similar, which confirmed the homozygosity of the DH lines. More than 100 RFLP markers were tested on 189 DH lines derived from two crosses, DH5 x DH7 and A188 x DH7, and 60 single-seed descent (SSD, F6) lines derived from A188 x DH7. The overall rate of heterozygosity for all of the DH lines was approximatively 1% and pertained to 6 lines out of 189, while it was 8.5% for the SSD lines after four selfings. A precise description of the material used suggested that the events which led to this unexpected heterozygozity in DH lines were more likely to have occurred after rather than during the androgenetic process. Nine duplicated pairs of genotypes were found within the DH lines, indicating that a single microspore-derived structure can fragment to give two identical plantlets. Despite the extensive screening with more than 100 markers, only 2 lines showed unexpected banding profiles, and these were probably gametoclonal variants. The use of a direct regeneration system that avoids any callus phase might explain this low frequency of gametoclonal variation.

摘要

已采用田间观察和分子标记的方法来评估花药培养衍生系的同质性。加倍单倍体(DH)系的同质性通过不存在形态寡基因性状的分离来显示。42 个 DH 系和两个传统衍生系的多基因性状的内方差相似,这证实了 DH 系的纯合性。对来自两个杂交种 DH5 x DH7 和 A188 x DH7 的 189 个 DH 系和来自 A188 x DH7 的 60 个单粒传代(F6)系进行了 100 多个 RFLP 标记的检测。所有 DH 系的总体杂合率约为 1%,涉及 189 个系中的 6 个,而经过四次自交后 SSD 系的杂合率为 8.5%。对所用材料的精确描述表明,导致 DH 系中这种意外杂合性的事件更可能发生在雄性生殖过程之后而不是期间。在 DH 系中发现了 9 对重复的基因型,表明单个花粉衍生结构可以分裂成两个相同的植株。尽管使用了 100 多个标记进行了广泛的筛选,但只有 2 个系显示出意外的带型谱,这些可能是配子克隆变体。使用避免任何愈伤组织阶段的直接再生系统可能解释了配子克隆变异的这种低频率。

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