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鉴定和表征矮化 62 号突变体,该突变体是一个功能丧失突变,位于 DLT/OsGRAS-32 基因,影响水稻赤霉素代谢。

Identification and characterization of dwarf 62, a loss-of-function mutation in DLT/OsGRAS-32 affecting gibberellin metabolism in rice.

机构信息

Department of Agronomy, College of Agriculture and Biotechnology, Zhejiang University, Hangzhou, 310029, China.

出版信息

Planta. 2010 Nov;232(6):1383-96. doi: 10.1007/s00425-010-1263-1. Epub 2010 Sep 10.

Abstract

A dwarf mutant, dwarf 62 (d62), was isolated from rice cultivar 93-11 by mutagenesis with γ-rays. Under normal growth conditions, the mutant had multiple abnormal phenotypes, such as dwarfism, wide and dark-green leaf blades, reduced tiller numbers, late and asynchronous heading, short roots, partial male sterility, etc. Genetic analysis indicated that the abnormal phenotypes were controlled by the recessive mutation of a single nuclear gene. Using molecular markers, the D62 gene was fine mapped in 131-kb region at the short arm of chromosome 6. Positional cloning of D62 gene revealed that it was the same locus as DLT/OsGRAS-32, which encodes a member of the GRAS family. In previous studies, the DLT/OsGRAS-32 is confirmed to play positive roles in brassinosteroid (BR) signaling. Sequence analysis showed that the d62 carried a 2-bp deletion in ORF region of D62 gene which led to a loss-of-function mutation. The function of D62 gene was confirmed by complementation experiment. RT-PCR analysis and promoter activity analysis showed that the D62 gene expressed in all tested tissues including roots, stems, leaves and panicles of rice plant. The d62 mutant exhibited decreased activity of α-amylase in endosperm and reduced content of endogenous GA(1). The expression levels of gibberellin (GA) biosynthetic genes including OsCPS1, OsKS1, OsKO1, OsKAO, OsGA20ox2/SD1 and OsGA2ox3 were significantly increased in d62 mutant. Briefly, these results demonstrated that the D62 (DLT/OsGRAS-32) not only participated in the regulation of BR signaling, but also influenced GA metabolism in rice.

摘要

一个矮秆突变体,dwarf 62(d62),是通过γ射线诱变从水稻品种 93-11 中分离得到的。在正常生长条件下,该突变体具有多种异常表型,如矮化、叶片宽大深绿、分蘖数减少、抽穗迟且不同步、根系短、部分雄性不育等。遗传分析表明,这些异常表型受单个核隐性基因突变的控制。利用分子标记,将 D62 基因精细定位在 6 号染色体短臂的 131-kb 区域。D62 基因的定位克隆表明,它与 DLT/OsGRAS-32 是同一个基因座,该基因编码一个 GRAS 家族的成员。在之前的研究中,DLT/OsGRAS-32 被证实正向调控油菜素内酯(BR)信号。序列分析表明,d62 在 D62 基因的 ORF 区发生了 2-bp 的缺失,导致功能丧失突变。通过互补实验证实了 D62 基因的功能。RT-PCR 分析和启动子活性分析表明,D62 基因在水稻植株的根、茎、叶和穗等所有测试组织中都有表达。d62 突变体在内胚乳中α-淀粉酶的活性降低,内源 GA(1)含量降低。GA 生物合成基因 OsCPS1、OsKS1、OsKO1、OsKAO、OsGA20ox2/SD1 和 OsGA2ox3 的表达水平在 d62 突变体中显著增加。总之,这些结果表明,D62(DLT/OsGRAS-32)不仅参与了 BR 信号的调控,还影响了水稻中 GA 的代谢。

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