首页> 外文期刊>Plant Physiology and Biochemistry >Gibberellins regulate the stem elongation rate without affecting the mature plant height of a quick development mutant of winter wheat (Triticum aestivum L.)
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Gibberellins regulate the stem elongation rate without affecting the mature plant height of a quick development mutant of winter wheat (Triticum aestivum L.)

机译:赤霉素调节茎伸长率而不影响冬小麦快速发育突变体(Triticum aestivum L.)的成熟株高。

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摘要

Gibberellin (GA) is essential for determining plant height. Alteration of GA content or GA signaling results in a dwarf or slender phenotype. Here, we characterized a novel wheat mutant, quick development (qd), in which GA regulates stem elongation but does not affect mature plant height. qd and wild-type plants did not exhibit phenotypic differences at the seedling stage. From jointing to heading stage, qd plants were taller than wild-type plants due to elongated cells. However, wild-type and qd plants were the same height at heading. Unlike wild-type plants, qd plants were sensitive to exogenous GA due to mutation of Rht-B1. With continuous GA stimulation, qd seedlings and adult plants were taller than wild-type. Thus, the GA content of qd plants might differ from that of wild-type during the growth process. Analysis of GA biosynthetic gene expression verified this hypothesis and showed that TaKAO, which is involved in catalyzing the early steps of GA biosynthesis, was differentially expressed in qd plants compared with wild-type. The bioactive GA associated gene TaGA20ox was downregulated in qd plants during the late growth stages. Measurements of endogenous GA content were consistent with the gene-expression analysis results. Consistent with the GA content variation, the first three basal internodes were longer and the last two internodes were shorter in qd than in wild-type plants. The qd mutant might be useful in dissecting the mechanism by which GA regulates stem-growing process, and it may be serve as a GA responsive semi-dwarf germplasm in breeding programs. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:赤霉素(GA)对于确定植物高度至关重要。 GA含量或GA信号传导的改变导致矮化或细长表型。在这里,我们表征了一种新型的小麦突变体,即快速发育(qd),其中GA调节茎伸长,但不影响成熟株高。 qd和野生型植物在苗期没有表现出表型差异。从拔节到抽穗期,由于细胞伸长,qd植物比野生型植物高。但是,野生型和qd植物的抽穗期高度相同。与野生型植物不同,由于Rht-B1的突变,qd植物对外源GA敏感。在连续的GA刺激下,qd幼苗和成年植物比野生型高。因此,在生长过程中,qd植物的GA含量可能与野生型的GA含量不同。 GA生物合成基因表达的分析证实了这一假设,并表明与野生型相比,参与催化GA生物合成早期步骤的TaKAO在qd植物中差异表达。在生长后期,qd植物中具有生物活性的GA相关基因TaGA20ox被下调。内源性GA含量的测定与基因表达分析结果一致。与GA含量变化一致,qd的前三个基节间较长,而野生型植物的后两个节间较短。 qd突变体可能有助于剖析GA调节茎生长过程的机制,并且在育种计划中可用作GA响应半矮种质。 (C)2016 Elsevier Masson SAS。版权所有。

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