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LEAFY和杨树(Populus)中LEAFY/FLORICAULA同源基因PTLF过表达在转基因杨树和拟南芥中的多种效应。

Diverse effects of overexpression of LEAFY and PTLF, a poplar (Populus) homolog of LEAFY/FLORICAULA, in transgenic poplar and Arabidopsis.

作者信息

Rottmann W H, Meilan R, Sheppard L A, Brunner A M, Skinner J S, Ma C, Cheng S, Jouanin L, Pilate G, Strauss S H

机构信息

Department of Forest Science, Richardson Hall 321, College of Forestry, Oregon State University, Corvallis, OR 97331-5752, USA. de

出版信息

Plant J. 2000 May;22(3):235-45. doi: 10.1046/j.1365-313x.2000.00734.x.

Abstract

PTLF, the Populus trichocarpa homolog of LEAFY (LFY) and FLORICAULA, was cloned to assess its function in a dioecious tree species. In situ hybridization studies showed that the gene was expressed most strongly in developing inflorescences. Expression was also seen in leaf primordia and very young leaves, most notably in apical vegetative buds near inflorescences, but also in seedlings. Although ectopic expression of the PTLF cDNA in Arabidopsis accelerated flowering, only one of the many tested transgenic lines of Populus flowered precociously. The majority of trees within a population of 3-year-old transgenic hybrid Populus lines with PTLF constitutively expressed showed few differences when compared to controls. However, phenotypic effects on growth rate and crown development, but not flowering, were seen in some trees with strong PTLF expression and became manifest only as the trees aged. Competence to respond to overexpression of LFY varied widely among Populus genotypes, giving consistent early flowering in only a single male P. tremula x P. tremuloides hybrid and causing gender change in another hybrid genotype. PTLF activity appears to be subject to regulation that does not affect heterologously expressed LFY, and is dependent upon tree maturation. Both genes provide tools for probing the mechanisms of delayed competence to flower in woody plants.

摘要

PTLF是毛果杨中LEAFY(LFY)和花椰菜(FLORICAULA)的同源基因,被克隆用于评估其在雌雄异株树种中的功能。原位杂交研究表明,该基因在发育中的花序中表达最强。在叶原基和非常幼嫩的叶片中也有表达,最显著的是在花序附近的顶端营养芽中,但在幼苗中也有表达。尽管PTLF cDNA在拟南芥中的异位表达加速了开花,但在许多测试的杨树转基因株系中只有一个早熟开花。在组成型表达PTLF的3年生转基因杂交杨树群体中,与对照相比,大多数树木几乎没有差异。然而,在一些PTLF表达强烈的树木中,观察到了对生长速率和树冠发育的表型影响,但不是开花,并且只有随着树木年龄的增长才会显现出来。杨树基因型对LFY过表达的反应能力差异很大,仅在一个雄性欧洲山杨×美洲山杨杂种中一致地出现早花,并在另一个杂种基因型中导致性别变化。PTLF活性似乎受到不影响异源表达的LFY的调控,并且依赖于树木的成熟。这两个基因都为探究木本植物延迟开花能力的机制提供了工具。

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