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UV-B 信号在水稻中的作用:响应鉴定、基因表达谱分析和突变体分离。

UV-B signalling in rice: Response identification, gene expression profiling and mutant isolation.

机构信息

Botanical Gardens, Graduate School of Science, Osaka City University, Osaka, Japan.

Office of General Administration, Advanced Analysis Center, National Agriculture and Food Research Organization, Tsukuba, Japan.

出版信息

Plant Cell Environ. 2021 May;44(5):1468-1485. doi: 10.1111/pce.13988. Epub 2021 Jan 11.

Abstract

Responses of rice seedlings to UV-B radiation (UV-B) were investigated, aiming to establish rice as a model plant for UV-B signalling studies. The growth of japonica rice coleoptiles, grown under red light, was inhibited by brief irradiation with UV-B, but not with blue light. The effective UV-B fluences (10 -10 μmol m ) were much lower than those reported in Arabidopsis. The response was much less in indica rice cultivars and its extent varied among Oryza species. We next identified UV-B-specific anthocyanin accumulation in the first leaf of purple rice and used this visible phenotype to isolate mutants. Some isolated mutants were further characterized, and one was found to have a defect in the growth response. Using microarrays, we identified a number of genes that are regulated by low-fluence-rate UV-B in japonica coleoptiles. Some up-regulated genes were analysed by real-time PCR for UV-B specificity and the difference between japonica and indica. More than 70% of UV-B-regulated rice genes had no homologs in UV-B-regulated Arabidopsis genes. Many UV-B-regulated rice genes are related to plant hormones and especially to jasmonate biosynthetic and responsive genes in apparent agreement with the growth response. Possible involvement of two rice homologs of UVR8, a UV-B photoreceptor, is discussed.

摘要

研究了水稻幼苗对 UV-B 辐射(UV-B)的响应,旨在将水稻确立为 UV-B 信号研究的模式植物。在红光下生长的粳稻中胚轴的生长被短暂的 UV-B 照射抑制,但不受蓝光影响。有效 UV-B 剂量(10 -10 μmol m )远低于在拟南芥中报道的剂量。籼稻品种的反应要小得多,其程度在不同的稻种之间也有所不同。我们接下来在紫稻的第一片叶子中鉴定了 UV-B 特异性的花青素积累,并利用这种可见的表型来分离突变体。一些分离的突变体进一步进行了表征,发现一个突变体在生长反应方面存在缺陷。使用微阵列,我们鉴定了在粳稻中胚轴中由低剂量率 UV-B 调控的许多基因。通过实时 PCR 分析了一些上调基因的 UV-B 特异性和粳稻与籼稻之间的差异。超过 70%的 UV-B 调控的水稻基因在 UV-B 调控的拟南芥基因中没有同源物。许多 UV-B 调控的水稻基因与植物激素有关,特别是与茉莉酸生物合成和响应基因有关,这与生长反应明显一致。讨论了两个水稻 UVR8 同源物(UV-B 光受体)的可能参与。

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