首页> 外文OA文献 >Inhibition of Brassinosteroid Biosynthesis by Either a dwarf4 Mutation or a Brassinosteroid Biosynthesis Inhibitor Rescues Defects in Tropic Responses of Hypocotyls in the Arabidopsis Mutant nonphototropic hypocotyl 41
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Inhibition of Brassinosteroid Biosynthesis by Either a dwarf4 Mutation or a Brassinosteroid Biosynthesis Inhibitor Rescues Defects in Tropic Responses of Hypocotyls in the Arabidopsis Mutant nonphototropic hypocotyl 41

机译:dwarf4突变或油菜甾体生物合成抑制剂抑制油菜甾体生物合成可挽救拟南芥下胚轴的热带反应中的缺陷突变体非亲光性下胚轴41

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摘要

The nonphototropic hypocotyl 4 (nph4)/auxin response factor 7 (arf7) mutant of Arabidopsis (Arabidopsis thaliana) is insensitive to auxin and has defects in hypocotyl tropism, hook formation, differential leaf growth, and lateral root formation. To understand an auxin-signaling pathway through NPH4, we carried out screening of suppressor mutants of nph4-103 and obtained a dwarf suppressor mutant, suppressor of nph4 (snp2). snp2 had short hypocotyls in the dark condition and dark green and round leaves, short petioles, and more lateral shoots than the wild type in the light condition. The snp2 phenotypes were rescued by adding brassinolide to the growth medium in both light and dark conditions. Genetic mapping, sequence analysis, and a complementation test indicated that snp2 was a weak allele of DWARF4 (DWF4), which functions in brassinosteroid (BR) biosynthesis. snp2, which was renamed dwf4-101, exhibited photo- and gravitropisms of hypocotyls similar to those of the wild type with a slightly faster response in gravitropism. dwf4-101 almost completely suppressed defects in both tropisms of nph4-103 hypocotyls and completely suppressed hyponastic growth of nph4-103 leaves. Treatment with brassinazole, an inhibitor of BR biosynthesis, also partially rescued the tropic defects in nph4-103. Hypocotyls of nph4-103 were auxin insensitive, whereas hypocotyls of dwf4-101 were more sensitive than those of the wild type. dwf4-101 nph4-103 hypocotyls were as sensitive as those of dwf4-101. Auxin inducibility of massugu 2 (MSG2)/IAA19 gene expression was reduced in nph4-103. mRNA level of MSG2 was reduced in dwf4-101 and dwf4-101 nph4-103, but both mutants exhibited greater auxin inducibility of MSG2 than the wild type. Taken together, dwf4-101 was epistatic to nph4-103. These results strongly suggest that BR deficiency suppresses nph4-103 defects in tropic responses of hypocotyls and differential growth of leaves and that BR negatively regulates tropic responses.
机译:拟南芥(Arabidopsis thaliana)的非光致性下胚轴4(nph4)/生长素反应因子7(arf7)突变株对生长素不敏感,在下胚轴向性,钩形成,叶片差异生长和侧根形成方面存在缺陷。为了了解通过NPH4的生长素信号通路,我们进行了nph4-103抑制子突变体的筛选,并获得了矮化抑制子突变体nph4(snp2)的抑制子。在黑暗条件下,snp2的胚轴短,深绿色和圆形叶片,叶柄短,在光照条件下的枝条比野生型短。通过在明亮和黑暗条件下向生长培养基中添加油菜素内酯来挽救snp2表型。遗传作图,序列分析和互补测试表明,snp2是DWARF4(DWF4)的弱等位基因,其在油菜素甾体(BR)的生物合成中起作用。 snp2(已重命名为dwf4-101)表现出与野生型相似的下胚轴的光合和重力趋化性,而对重力的响应稍快。 dwf4-101几乎完全抑制了nph4-103下胚轴的两个向性缺陷,并完全抑制了nph4-103叶片的假鼻生长。 BR生物合成抑制剂Braskinazole的治疗也部分挽救了nph4-103的热带缺陷。 nph4-103的下胚轴对生长素不敏感,而dwf4-101的下胚轴比野生型敏感。 dwf4-101 nph4-103下胚轴与dwf4-101一样敏感。在nph4-103中降低了马古古2(MSG2)/ IAA19基因表达的生长素诱导性。 dwf4-101和dwf4-101 nph4-103中MSG2的mRNA水平降低,但是两个突变体均比野生型显示出更高的MSG2生长素诱导性。两者合计,dwf4-101对nph4-103具有上位性。这些结果强烈表明,BR缺乏抑制了下胚轴的热带反应和叶片的差异生长中的nph4-103缺陷,并且BR负调控了热带反应。

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