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HAWAIIAN SKIRT: An F-Box Gene That Regulates Organ Fusion and Growth in Arabidopsis

机译:夏威夷裙子:一个F框基因调节拟南芥中的器官融合和生长。

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摘要

A fast neutron-mutagenized population of Arabidopsis (Arabidopsis thaliana) Columbia-0 wild-type plants was screened for floral phenotypes and a novel mutant, termed hawaiian skirt (hws), was identified that failed to shed its reproductive organs. The mutation is the consequence of a 28 bp deletion that introduces a premature amber termination codon into the open reading frame of a putative F-box protein (At3g61590). The most striking anatomical characteristic of hws plants is seen in flowers where individual sepals are fused along the lower part of their margins. Crossing of the abscission marker, ProPGAZAT:β-glucuronidase, into the mutant reveals that while floral organs are retained it is not the consequence of a failure of abscission zone cells to differentiate. Anatomical analysis indicates that the fusion of sepal margins precludes shedding even though abscission, albeit delayed, does occur. Spatial and temporal characterization, using ProHWS:β-glucuronidase or ProHWS:green fluorescent protein fusions, has identified HWS expression to be restricted to the stele and lateral root cap, cotyledonary margins, tip of the stigma, pollen, abscission zones, and developing seeds. Comparative phenotypic analyses performed on the hws mutant, Columbia-0 wild type, and Pro35S:HWS ectopically expressing lines has revealed that loss of HWS results in greater growth of both aerial and below-ground organs while overexpressing the gene brings about a converse effect. These observations are consistent with HWS playing an important role in regulating plant growth and development.
机译:筛选了快速中子诱变的拟南芥(Arabidopsis thaliana)Columbia-0野生型植物的花卉表型,并鉴定了一种新的突变体,称为夏威夷裙(hws),该突变体未能脱落其生殖器官。该突变是28 bp缺失的结果,该缺失将过早的琥珀色终止密码子引入假定的F-box蛋白(At3g61590)的开放阅读框中。在花朵中可以看到硬毛植物最明显的解剖特征,在花朵的边缘下部融合了个别的萼片。脱落标记ProPGAZAT:β-葡糖醛酸糖苷酶与突变体的杂交表明,虽然保留了花器官,但这不是脱落区细胞未能分化的结果。解剖学分析表明,尽管确实发生了脱落,但尽管发生延迟,但房间隔的融合仍能防止脱落。使用ProHWS:β-葡糖醛酸糖苷酶或ProHWS:绿色荧光蛋白融合物进行时空表征,已确定HWS表达仅限于碑le和侧根帽,子叶边缘,柱头尖端,花粉,脱落区和发育中的种子。对hws突变体,Columbia-0野生型和Pro35S:HWS异位表达细胞系进行的比较表型分析显示, HWS 的缺失导致空中和地下器官的更大生长,而过表达基因带来相反的效果。这些观察结果与HWS在调节植物生长和发育中起重要作用是一致的。

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