首页> 外文期刊>Plant and Cell Physiology >A Rice Dihydrosphingosine C4 Hydroxylase (DSH1) Gene, which is Abundantly Expressed in the Stigmas, Vascular Cells and Apical Meristem, may be Involved in Fertility
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A Rice Dihydrosphingosine C4 Hydroxylase (DSH1) Gene, which is Abundantly Expressed in the Stigmas, Vascular Cells and Apical Meristem, may be Involved in Fertility

机译:水稻双氢鞘氨醇C4羟化酶(DSH1)基因,在柱头,血管细胞和顶生分生组织中大量表达,可能与生育有关

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摘要

Dihydrosphingosine C4 hydroxylase is a key enzyme in the biosynthesis of phytosphingosine, a major constituent of sphingolipids in plants and yeasts. The rice genome contains five homologue genes for dihydrosphingosine C4 hydroxylase, DSH1–DSH5, whose gene products show high degrees of homology to the yeast counterpart, SUR2. Among them, expression of DSH1, DSH2 and DSH4 was detected, and DSH1 and DSH4 complement the yeast sur2 mutation. The DSH1 gene was specifically and abundantly expressed in vascular bundles and apical meristems. In particular, very strong expression was detected in the stigmas of flowers. Repression of DSH1 expression by the antisense gene or RNA interference (RNAi) resulted in a severe reduction of fertility. In the transformants in which DSH1 expression was suppressed, significantly increased expression of DSH2 was found in leaves but not in pistils, suggesting that there was tissue-specific correlation between DSH1 and DSH2 expression. Our results indicate that the product of DSH1 may be involved in plant viability or reproductive processes, and that the phenotype of sterility is apparently caused by loss of function of DSH1 in the stigma. It is also suggested that there is a complex mechanism controlling the tissue-specific expression of the DSH1 gene.
机译:二氢鞘氨醇C4羟化酶是植物鞘氨醇生物合成中的关键酶,植物鞘氨醇是植物和酵母中鞘脂的主要成分。水稻基因组包含5个双氢鞘氨醇C4羟化酶DSH1-DSH5的同源基因,其基因产物与酵母对应物SUR2具有高度同源性。其中,检测到DSH1,DSH2和DSH4的​​表达,并且DSH1和DSH4补充酵母sur2突变。 DSH1基因在血管束和顶端分生组织中特异性且大量表达。特别地,在花的柱头中检测到非常强的表达。反义基因或RNA干扰(RNAi)抑制DSH1表达导致生育力严重降低。在抑制了DSH1表达的转化子中,在叶片中发现了DSH2表达的显着增加,但在雌蕊中却没有,这表明DSH1和DSH2表达之间存在组织特异性的相关性。我们的结果表明,DSH1的产物可能参与植物的生存能力或生殖过程,并且不育的表型显然是由柱头中DSH1的功能丧失引起的。还表明存在控制DSH1基因的组织特异性表达的复杂机制。

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