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Cytoplasmic Male Sterility in Barley. Xi. the msm2 Cytoplasm

机译:大麦的细胞质雄性不育。兮。 msm2细胞质

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摘要

A new cytoplasmic male sterility in barley (Hordeum vulgare s.l.) is described and designated as msm2. The cytoplasm was derived from a selection of the wild progenitor of barley (H. vulgare ssp. spontaneum). This selection, 79BS14-3, originates from the Southern Coastal Plain of Israel. The selection 79BS14-3 has a normal spike fertility in Finland. When 79BS14-3 was crossed by cv. Adorra, the F1 displayed partial male fertility and progeny of recurrent backcrosses with cv. Adorra were completely male sterile. Evidently 79BS14-3 is a carrier of a recessive or semidominant restorer gene of fertility. The dominant restorer gene Rfm1a for another cytoplasmic male sterility, msm1, is also effective in msm2 cytoplasm. The different partial fertility restoration properties of msm2 and msm1 cause these cytoplasms to be regarded as being distinct. Seventy spontaneum accessions from Israel have been studied for their capacity to produce F1 restoration of male fertility both in msm1 and in msm2 cytoplasms with a cv. Adorra-like seed parent (nuclear gene) background. The msm2 cytoplasm shows partial restoration more commonly than msm1 in these F1 combinations. The mean restoration percentage per accession for msm2 is 28, and for msm1 4. Most of the F1 seed set differences of the two cytoplasms are statistically significant. When estimated with partially restored F1 combinations, msm2 cytoplasm appeared to be about 50 times more sensitive to the male fertility-promoting genes present in the spontaneum accessions. The spontaneum sample from Central and Western Negev, which has been found to be devoid of restoration ability in msm1 cytoplasm, had only low partial restoration ability in msm2 (mean 0.3%). The female fertility of msm2 appears normal. The new msm2 cytoplasm could be useful in producing hybrid barley.
机译:描述了大麦中新的细胞质雄性不育(大麦(Hordeum vulgare s.l.)),并将其命名为msm2。细胞质衍生自选择的大麦野生祖细胞(H. vulgare ssp。spontaneum)。此选择79BS14-3来自以色列的南部沿海平原。选项79BS14-3在芬兰具有正常的穗生育力。当79BS14-3被cv越过。 Adorra,F1表现出部分雄性育性和与cv反复回交的后代。 Adorra完全不育。显然,79BS14-3是隐性或半显性生殖基因的载体。另一个细胞质雄性不育体msm1的显性恢复基因Rfm1a在msm2细胞质中也有效。 msm2和msm1不同的部分生育能力恢复特性导致这些细胞质被认为是不同的。对以色列的70种自发性自发种质进行了研究,发现它们在具有cv的msm1和msm2细胞质中均能产生F1恢复雄性育性。类Adorra的种子亲本(核基因)背景。在这些F1组合中,msm2的细胞质显示出比msm1更普遍的部分恢复。对于msm2,每个登录的平均恢复百分比是28,对于msm1,是4。两种细胞质的大多数F1种子集差异在统计学上是显着的。用部分恢复的F1组合估算时, msm2 细胞质对 spontaneum 品种中存在的促进雄性育性基因的敏感性提高约50倍。已发现中内盖夫和西内盖夫的 spontaneum 样品在 msm1 细胞质中缺乏恢复能力,而在 msm2 中仅具有较低的部分恢复能力。 em>(平均0.3%)。 msm2 的女性生育能力正常。新的 msm2 细胞质可用于生产杂交大麦。

著录项

  • 期刊名称 Genetics
  • 作者

    H. Ahokas;

  • 作者单位
  • 年(卷),期 1982(102),2
  • 年度 1982
  • 页码 285–295
  • 总页数 11
  • 原文格式 PDF
  • 正文语种
  • 中图分类 遗传学;
  • 关键词

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