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玉米中光诱导组织特异性调控基因Sn的遗传与分子分析

Genetic and molecular analysis of Sn, a light-inducible, tissue specific regulatory gene in maize.

作者信息

Tonelli C, Consonni G, Dolfini S F, Dellaporta S L, Viotti A, Gavazzi G

机构信息

Dipartimento di Genetica e di Biologia dei Microganismi, Università degli Studi di Milano, Italia.

出版信息

Mol Gen Genet. 1991 Mar;225(3):401-10. doi: 10.1007/BF00261680.

Abstract

The Sn locus of maize is functionally similar to the R and B loci, in that Sn differentially controls the tissue-specific deposition of anthocyanin pigments in certain seedling and plant cells. We show that Sn shows molecular similarity to the R gene and have used R DNA probes to characterize several Sn alleles. Northern analysis demonstrates that all Sn alleles encode a 2.5 kb transcript, which is expressed in a tissue-specific fashion consistent with the distribution of anthocyanins. Expression of the Sn gene is light-regulated. However, the Sn: bol3 allele allows Sn mRNA transcription to occur in the dark, leading to pigmentation in dark-grown seedlings and cob integuments. We report the isolation of genomic and cDNA clones of the light-independent Sn: bol3 allele. Using Sn cDNA as a probe, the spatial and temporal expression of Sn has been examined. The cell-specific localization of Sn mRNA has been confirmed by in situ hybridization using labelled antisense RNA probes. According to its proposed regulatory role, expression of Sn precedes and, in turn, causes a coordinate and tissue-specific accumulation of mRNA of structural genes for pigment synthesis and deposition, such as A1 and C2. The functional and structural relationship between R, B, Lc and Sn is discussed in terms of an evolutionary derivation from a single ancestral gene which gave rise this diverse gene family by successive duplication events.

摘要

玉米的Sn位点在功能上与R和B位点相似,因为Sn差异控制着某些幼苗和植物细胞中花青素色素的组织特异性沉积。我们发现Sn与R基因在分子上具有相似性,并使用R DNA探针来表征几个Sn等位基因。Northern分析表明,所有Sn等位基因都编码一个2.5 kb的转录本,其以与花青素分布一致的组织特异性方式表达。Sn基因的表达受光调节。然而,Sn:bol3等位基因允许Sn mRNA在黑暗中进行转录,导致黑暗中生长的幼苗和玉米穗苞叶出现色素沉着。我们报道了光不依赖型Sn:bol3等位基因的基因组和cDNA克隆的分离。使用Sn cDNA作为探针,研究了Sn的时空表达。通过使用标记的反义RNA探针进行原位杂交,证实了Sn mRNA的细胞特异性定位。根据其假定的调控作用,Sn的表达先于并进而导致色素合成和沉积的结构基因(如A1和C2)的mRNA的协同和组织特异性积累。从一个单一祖先基因通过连续复制事件产生这个多样化基因家族的进化推导角度,讨论了R、B.Lc和Sn之间的功能和结构关系。

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