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在非整倍体种间大麦杂种中,特定的大麦染色体的消除和重复。

Elimination and duplication of particular Hordeum vulgare chromosomes in aneuploid interspecific Hordeum hybrids.

机构信息

Agricultural Research Department, Risø National Laboratory, DK-4000, Roskilde, Denmark.

出版信息

Theor Appl Genet. 1988 Dec;76(6):897-908. doi: 10.1007/BF00273679.

Abstract

Seeds formed in crosses Hordeum lechleri (6x) x H. vulgare (2x and 4x), H. arizonicum (6x) x H. v. (2x), H. parodii (6x) x H. v. (2x), and H. tetraploidum (4x) x H. v. (2x) produced plants at high or rather high frequencies through embryo rescue. Giemsa C-banding patterns were used to analyze chromosomal constitutions and chromosomal locations on the methaphase plate. Among 100 plants obtained from H. vulgare (2x) crosses, 32 plants were aneuploid with 2n=29 (1), 28 (3), 27 (13), 26 (5), 25 (4), 24 (4), or 22 (2); 50 were euploid (12 analyzed), and 18 were polyhaploid (5 analyzed). Four plants had two sectors differing in chromosome number. Two of four hybrids with H. vulgare (4x) were euploid and two were aneuploid. Parental genomes were concentrically arranged with that of H. vulgare always found closest to the metaphase centre. Many plants showed a certain level of intraplant variation in chromosome numbers. Except for one H. vulgare (4x) hybrids, this variation was restricted to peripherally located non-H. vulgare genomes. This may reflect a less firm attachment of the chromosomes from these genomes to the spindle. Interplant variation in chromosome numbers was due to the permanent elimination or, far less common, duplication of the centrally located H. vulgare chromosomes in all 34 aneuploids, and in a few also to loss/gain of non-H, vulgare chromosomes. This selective elimination of chromosomes of the centrally located genome contrasts conditions found in diploid interspecific hybrids, which eliminate the peripherally located genome. The difference is attributed to changed "genomic ratios'. Derivatives of various H. vulgare lines were differently distributed among euploid hybrids, aneuploids, and polyhaploids. Chromosomal constitutions of hypoploid hybrids revealed a preferential elimination of H. vulgare chromosomes 1, 5, 6, and 7, but did not support the idea that H. vulgare chromosomes should be lost in a specific order. H. vulgare SAT-chromosomes 6 and 7 showed nucleolar dominance. Aneuploidy is ascribed to the same chromosome elimination mechanism that produces haploids in cross-combinations with H. vulgare (2x). The findings have implications for the utilization of interspecific Hordeum hybrids.

摘要

六倍体冰草(6x)与二倍体和四倍体普通小麦(2x 和 4x)、二倍体珍珠麦(6x)与普通小麦(2x)、六倍体节节麦(6x)与普通小麦(2x)和四倍体普通小麦(4x)杂交形成的种子,通过胚胎拯救产生了高频或较高频率的植株。用吉姆萨 C 带模式分析中期染色体的组成和位置。在 100 株来自二倍体普通小麦(2x)杂交的植株中,32 株为非整倍体,2n=29(1)、28(3)、27(13)、26(5)、25(4)、24(4)或 22(2);50 株为整倍体(12 株分析),18 株为多倍体(5 株分析)。四株植物有两个在染色体数目上有差异的区域。四倍体普通小麦(4x)杂交的两种杂种中有两种为整倍体,两种为非整倍体。亲本体基因组呈同心排列,普通小麦的基因组总是最接近中期中心。许多植物在染色体数目上表现出一定程度的种内变异。除了一个四倍体普通小麦(4x)杂种外,这种变异仅限于外周的非普通小麦基因组。这可能反映了这些基因组的染色体与纺锤体的结合不太牢固。34 个非整倍体中,所有染色体数目的植物间变异都是由于中央位置的普通小麦染色体永久性缺失或很少见的重复,少数也有非普通小麦染色体的丢失/获得。这种中央位置基因组染色体的选择性消除与二倍体种间杂种中发现的情况形成对比,后者消除了外周位置的基因组。这种差异归因于“基因组比例”的改变。不同的普通小麦系衍生的品系在整倍体杂种、非整倍体和多倍体中分布不同。亚倍体杂种的染色体组成揭示了优先消除普通小麦染色体 1、5、6 和 7,但并不支持普通小麦染色体应该按特定顺序丢失的观点。普通小麦 SAT 染色体 6 和 7 表现出核仁优势。非整倍性归因于产生与普通小麦(2x)杂交的单倍体的相同染色体消除机制。这些发现对种间大麦杂种的利用具有重要意义。

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