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首页> 外文期刊>Tropical Plant Biology >S-RNase-like Sequences in Styles of Coffea (Rubiaceae). Evidence for S-RNase Based Gametophytic Self-Incompatibility?
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S-RNase-like Sequences in Styles of Coffea (Rubiaceae). Evidence for S-RNase Based Gametophytic Self-Incompatibility?

机译:S-RNase样序列的咖啡(菊科)的样式。基于S-RNase的配子体自我不相容性的证据?

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Although RNase-based self-incompatibility (SI) is suspected to operate in a wide group of plant families, it has been characterized as the molecular genetic basis of SI in only three distantly related families, Solanaceae, Plantaginaceae, and Rosaceae, all described over a decade ago. Previous studies found that gametophytic SI, controlled by a multi-allelic S-locus, operates in the coffee family (Rubiaceae). The molecular genetic basis of this mechanism remains unknown, despite the immense importance of coffee as an agricultural commodity. Here, we isolated ten sequences with features of T2-S-type RNases from two Coffea species. While three of the sequences were identified in both species and clearly do not appear to be S-locus products, our data suggest that six sequences may be S-alleles in the self-incompatible C. canephora, and one may be a relict in the self-compatible C. arabica. We demonstrate that these sequences show style-specific expression, display polymorphism in C. canephora, and cluster with S-locus products in a phylogenetic analysis that includes other plant families with RNase-based SI. Although our results are not definitive, in part because the available plant materials were limited and data patterns relatively complex, our results strongly hint that RNase-based SI mechanism operates in the Rubiaceae family.
机译:尽管怀疑基于RNase的自我不相容性(SI)在许多植物科中都起作用,但它被认为是仅有的三个远缘相关科(茄科,车前草科和蔷薇科)中SI的分子遗传基础。十年前。先前的研究发现,由多等位基因S-基因座控制的配子植物SI在咖啡家族中起作用。尽管咖啡作为一种农产品非常重要,但该机制的分子遗传基础仍然未知。在这里,我们从两个咖啡种中分离了十个具有T2-S型RNases特征的序列。虽然在两个物种中都鉴定出三个序列,但显然不是S-基因座产物,但我们的数据表明,六个序列可能是自我不相容的C. canephora中的S-等位基因,而一个可能是S-locus的遗物。自相容的阿拉伯咖啡我们证明这些序列显示风格特定的表达,在C. canephora中显示多态性,并在系统发育分析中与S-基因座产物簇集,包括基于RNase的其他植物科。尽管我们的结果尚不确定,部分原因是可用的植物材料有限且数据模式相对复杂,但我们的结果强烈暗示基于RNase的SI机制在茜草科中起作用。

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