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A MUTAGENESIS PROGRAMME FOR APOMIXIS GENES IN ARABIDOPSIS

机译:阿拉伯拟南芥中的无性生殖基因突变计划

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A genetic screen was used to isolate mutants in Arahidopsis thaliana that produce seed without pollination; these should include mutants that are apomictic. The screen is based on the visual difference in length between a seed pod that is seedless (short silique) and one in which seed is formed normally by self-pollination and fertilization (long silique). The rationale of the screen is to mutagenize a stamenless (and therefore pollenless) mutant of Arabidopsis with short siliques into plants that form seed without pollination and therefore have long siliques. Using the shortness of siliques of the Arabidopsis mutant pistillata (pi) compared with wild type as the basis of our genetic screen for apomixis, a number of mutants have been isolated which have fertilization independent partial seed development (fis1, fis2 and fis3) and some mutants which may have a low frequency of fertilization independent complete seed development (fis4). Homozygous pistillata (pi/pi) or heterozygous pi/PI seeds were mutagenized with ethylmethanesulphonate and screened for dominant and recessive mutants, respectively. In 40 000 M_2 pi/pi plants, eight mutants have been identified in which partial development of seeds occurs without fertilization (Fis phenotype). Three mutants, fis1, fis2 and fis3, have been characterized. In each of the three mutants, endosperm develops normally to the point of cellularization. At a lower frequency, embryos are also seen that degenerate without development beyond the globular stage. Following pollination, the maternal embryos formed are arrested at the torpedo stage and the endosperm develops to the cellular breakdown stage. Each of these three mutants has been mapped to a different chromosomal location in the Arabidopsis genome. After screening 15 000 M_1 plants, 22 sectored inflorescences with Fis phenotype were also identified. In particular, the mutant fis4, in which autonomous functional seeds are apparently formed without pollination, is being investigated. All these mutants define genes which promote seed development without fertilization and may be associated with the cases of apomixis seen in many angiosperms.
机译:遗传筛选用于分离拟南芥中产生不授粉种子的突变体。这些应该包括无融合生殖的突变体。该屏幕基于无种子的种子荚(短角果)和通常通过自花授粉和受精形成的种子(长角果)之间的视觉差异。筛选的基本原理是将具有短角果的拟南芥的无雄蕊(因此无花粉)突变体诱变为植物,该植物形成没有授粉的种子,因此具有长角果。利用与野生型相比拟南芥突变体pistillata(pi)的短角果作为我们无融合生殖遗传筛选的基础,已经分离出了许多具有受精独立的部分种子发育的突变体(fis1,fis2和fis3),还有一些突变体,其受精频率可能不高,不依赖完整种子的发育(fis4)。将纯合子pistillata(pi / pi)或杂合pi / PI种子用甲磺酸乙酯诱变,并分别筛选显性和隐性突变体。在40 000 M_2 pi / pi植物中,已经鉴定出八个突变体,其中种子的部分发育没有受精(Fis表型)。已经鉴定了三个突变体fis1,fis2和fis3。在这三个突变体的每一个中,胚乳都正常发育到细胞化的程度。在较低的频率下,还可以看到胚胎退化而没有发育超过球状阶段。授粉后,形成的母体胚胎停在鱼雷阶段,胚乳发育到细胞破裂阶段。这三个突变体均已定位到拟南芥基因组中不同的染色体位置。在筛选了15 000 M_1植物后,还鉴定出22个扇形的具有Fis表型的花序。特别地,正在研究突变体fis4,其中明显形成自主功能种子而没有授粉。所有这些突变体均定义了无需受精即可促进种子发育的基因,并且可能与许多被子植物中无融合生殖的情况有关。

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  • 会议地点 Vienna(AT)
  • 作者单位

    Institute of Plant Production and Processing, Division of Plant Industry, Commonwealth Scientific and Industrial Research Organization, Canberra, ACT, Australia;

    Institute of Plant Production and Processing, Division of Plant Industry, Commonwealth Scientific and Industrial Research Organization, Canberra, ACT, Australia;

    Institute of Plant Production and Processing, Division of Plant Industry, Commonwealth Scientific and Industrial Research Organization, Canberra, ACT, Australia;

    Institute of Plant Production and Processing, Division of Plant Industry, Commonwealth Scientific and Industrial Research Organization, Canberra, ACT, Australia;

    Institute of Plant Production and Processing, Division of Plant Industry, Commonwealth Scientific and Industrial Research Organization, Canberra, ACT, Austr;

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  • 正文语种 eng
  • 中图分类 作物遗传育种与良种繁育;
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