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Alterations of Endogenous Cytokinins in Transgenic Plants Using a Chimeric Isopentenyl Transferase Gene.利用嵌合异戊烯基转移酶基因对转基因植物中内源细胞分裂素的改变
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Requirement of the Auxin Polar Transport System in Early Stages of Arabidopsis Floral Bud Formation.生长素极性运输系统在拟南芥花芽形成早期的需求
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A Mutation Altering Auxin Homeostasis and Plant Morphology in Arabidopsis.一个改变拟南芥生长素稳态和植物形态的突变
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Leaf Vascular Pattern Formation.叶片维管束模式形成
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Altered Growth and Wood Characteristics in Transgenic Hybrid Aspen Expressing Agrobacterium tumefaciens T-DNA Indoleacetic Acid-Biosynthetic Genes.表达根癌农杆菌T-DNA吲哚乙酸生物合成基因的转基因杂交杨树的生长和木材特性变化
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9
The Arabidopsis gene MONOPTEROS encodes a transcription factor mediating embryo axis formation and vascular development.拟南芥基因MONOPTEROS编码一种转录因子,该转录因子介导胚轴形成和维管发育。
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Disruption of interfascicular fiber differentiation in an Arabidopsis mutant.拟南芥突变体中束间纤维分化的破坏。
Plant Cell. 1997 Dec;9(12):2159-70. doi: 10.1105/tpc.9.12.2159.

拟南芥突变体中侧生维管束向周木维管束的转变。

Transformation of the collateral vascular bundles into amphivasal vascular bundles in an Arabidopsis mutant.

作者信息

Zhong R, Taylor J J, Ye Z H

机构信息

Department of Botany, University of Georgia, Athens, Georgia 30602, USA.

出版信息

Plant Physiol. 1999 May;120(1):53-64. doi: 10.1104/pp.120.1.53.

DOI:10.1104/pp.120.1.53
PMID:10318683
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC59269/
Abstract

Arabidopsis inflorescence stems develop a vascular pattern similar to that found in most dicots. The arrangement of vascular tissues within the bundle is collateral, and vascular bundles in the stele are arranged in a ring. Although auxin has been shown to be an inducer of vascular differentiation, little is known about the molecular mechanisms controlling vascular pattern formation. By screening ethyl methanesufonate-mutagenized populations of Arabidopsis, we have isolated an avb1 (amphivasal vascular bundle) mutant with a novel vascular pattern. Unlike the collateral vascular bundles seen in the wild-type stems, the vascular bundles in the avb1 stems were similar to amphivasal bundles, i.e. the xylem completely surrounded the phloem. Furthermore, branching vascular bundles in the avb1 stems abnormally penetrated into the pith, which resulted in a disruption in the ring-like arrangement of vascular bundles in the stele. The avb1 mutation did not affect leaf venation pattern and root vascular organization. Auxin polar transport assay indicated that the avb1 mutation did not disrupt the auxin polar transport activity in inflorescence stems. The avb1 mutation also exhibited pleiotropic phenotypes, including curled stems and extra cauline branches. Genetic analysis indicated that the avb1 mutation was monogenic and partially dominant. The avb1 locus was mapped to a region between markers mi69 and ASB2, which is covered by a yeast artificial chromosome clone, CIC9E2, on chromosome 5. Isolation of the avb1 mutant provides a novel means to study the evolutionary mechanisms controlling the arrangement of vascular tissues within the bundle, as well as the mechanisms controlling the arrangement of vascular bundles in the stele.

摘要

拟南芥花序茎发育出一种与大多数双子叶植物中相似的维管模式。维管束内维管组织的排列是并生的,中柱中的维管束呈环状排列。尽管生长素已被证明是维管分化的诱导剂,但对于控制维管模式形成的分子机制却知之甚少。通过筛选经甲磺酸乙酯诱变的拟南芥群体,我们分离出了一个具有新型维管模式的avb1(周木维管束)突变体。与野生型茎中所见的并生维管束不同,avb1茎中的维管束类似于周木维管束,即木质部完全包围韧皮部。此外,avb1茎中的分支维管束异常地侵入髓部,这导致了中柱中维管束环状排列的破坏。avb1突变不影响叶脉模式和根维管组织。生长素极性运输分析表明,avb1突变不破坏花序茎中的生长素极性运输活性。avb1突变还表现出多效性表型,包括卷曲的茎和额外的茎生枝。遗传分析表明,avb1突变是单基因的且部分显性。avb1基因座被定位到标记mi69和ASB2之间的区域,该区域被第5号染色体上的酵母人工染色体克隆CIC9E2覆盖。avb1突变体的分离为研究控制维管束内维管组织排列的进化机制以及控制中柱中维管束排列的机制提供了一种新方法。