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玉米显性赤霉素不敏感矮化突变的遗传学研究。

Genetics of dominant gibberellin-insensitive dwarfism in maize.

机构信息

Present address: Institute of Plant Science Research, Cambridge Laboratory, Maris Lane, Trumpington, Cambridge CB2 2JB, England.

出版信息

Genetics. 1989 Apr;121(4):827-38. doi: 10.1093/genetics/121.4.827.

Abstract

D8 and Mpl1 are two dominant dwarfing mutations of maize. Although they differ in severity of dwarfism, both D8 and Mpl1 mutants are unresponsive to gibberellin (GA). Because of their close phenotypic resemblance to the recessive GA-sensitive dwarf mutants these dominant mutations may identify a gene whose product is involved in the reception of GA. With this possibility in mind we have studied the genetic properties of D8 and Mpl1. Both mutations map close to Adh1 on chromosome 1L. By marking normal and translocated 1L arms with different Adh1 electrophoretic mobility alleles, we investigated the effect of gene dosage on dominant dwarf phenotype. The results suggest that D8 and Mpl1 encode novel product functions and that these functions are relatively insensitive to the presence of the (presumed) wild-type product. Using X-ray induced chromosome breakage we created sectors of wild-type cells within D8 or Mpl1 tissue; these sectors were marked by the linked recessive lw mutation. The phenotypes of these sectors demonstrated that, at least in certain plant organs and tissues, dominant dwarfism can be an autonomous phenotype. These results are consistent with the hypothesis that the wild-type gene product acts as a GA receptor. The potential utility of dominant dwarf phenotype in plant developmental analysis is discussed, and possible mechanisms for the action of the D8 and Mpl1 mutations are considered.

摘要

D8 和 Mpl1 是玉米的两种主要矮化突变体。尽管它们在矮化程度上有所不同,但 D8 和 Mpl1 突变体对赤霉素(GA)均无反应。由于它们与隐性 GA 敏感的矮化突变体在表型上非常相似,这些显性突变可能鉴定出一个基因,其产物参与 GA 的接收。考虑到这种可能性,我们研究了 D8 和 Mpl1 的遗传特性。这两个突变都靠近 1 号染色体上的 Adh1。通过用不同的 Adh1 电泳迁移率等位基因标记正常和易位的 1L 臂,我们研究了基因剂量对显性矮化表型的影响。结果表明,D8 和 Mpl1 编码新的产物功能,并且这些功能对(假定的)野生型产物的存在相对不敏感。使用 X 射线诱导的染色体断裂,我们在 D8 或 Mpl1 组织中创建了野生型细胞的扇区;这些扇区被连锁的隐性 lw 突变标记。这些扇区的表型表明,至少在某些植物器官和组织中,显性矮化可以是自主表型。这些结果与野生型基因产物作为 GA 受体的假说一致。讨论了显性矮化表型在植物发育分析中的潜在用途,并考虑了 D8 和 Mpl1 突变的作用机制。

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本文引用的文献

1
Cell-autonomous recognition of the rust pathogen determines rp1-specified resistance in maize.
Science. 1988 Jul 8;241(4862):208-10. doi: 10.1126/science.241.4862.208.
2
The Inflorescences of Maize.
Science. 1954 Jul 16;120(3107):77-87. doi: 10.1126/science.120.3107.77.
3
The genetic basis of dosage compensation of alcohol dehydrogenase-1 in maize.
Genetics. 1981 Mar;97(3-4):625-37. doi: 10.1093/genetics/97.3-4.625.
4
The cytogenetic localization of the alcohol dehydrogenase-1 locus in maize.
Genetics. 1980 Mar;94(3):687-700. doi: 10.1093/genetics/94.3.687.
6
In Vitro Gibberellin A(1) Binding in Zea mays L.
Plant Physiol. 1987 Dec;85(4):934-41. doi: 10.1104/pp.85.4.934.
7
GROWTH RESPONSE OF SINGLE-GENE DWARF MUTANTS IN MAIZE TO GIBBERELLIC ACID.
Proc Natl Acad Sci U S A. 1956 Apr;42(4):185-9. doi: 10.1073/pnas.42.4.185.
8
A second informational suppressor, SUP-7 X, in Caenorhabditis elegans.
Genetics. 1981 Feb;97(2):307-25. doi: 10.1093/genetics/97.2.307.
9
Clonal analysis of corn plant development. I. The development of the tassel and the ear shoot.
Dev Biol. 1983 May;97(1):154-72. doi: 10.1016/0012-1606(83)90073-8.
10
The lin-12 locus specifies cell fates in Caenorhabditis elegans.
Cell. 1983 Sep;34(2):435-44. doi: 10.1016/0092-8674(83)90377-x.

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