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Gametophytic and sporophytic expression of anther-specific genes in developing tomato anthers.

机译:发育中的番茄花药中花药特异性基因的配子体和孢子体表达。

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摘要

The tissue localization of transcripts corresponding to five anther-specific cDNA clones isolated from tomato was determined. Transcripts specified by three of the cDNA clones were first detectable in anthers containing mitotic-stage gametophytes and were localized to the gametophyte. Transcripts specified by the two other cDNA clones were not detectable until anthers had reached a later developmental stage; these transcripts were also localized to the (now bicellular) gametophytes. Transcript levels for all of the cDNAs increased during gametogenesis and reached maximal levels in mature pollen grains. These mRNAs persisted in in vitro-grown pollen tubes, concentrating toward the tips of the growing tubes. At flower maturity, transcripts specified by each of the cDNAs were also detected in the epidermal and endothecial cell layers of the anther wall. The spatial distribution of transcripts in the anther wall was confined to that region of the anther that surrounds the locule. Transcripts were not detected in the sterile tip of the anther or in the filament. mRNA levels for these cDNA clones were markedly reduced in the anthers of several independent male-sterile mutants of tomato. Our results provide evidence that these anther-specific cDNAs represent genes expressed in both the gametophytic and sporophytic phases of the plant life cycle. The patterns of mRNA accumulation observed support the hypothesis that the proteins encoded by these genes function during pollen development and pollen tube growth.
机译:确定对应于从番茄分离的五个花药特异性cDNA克隆的转录本的组织定位。由三个cDNA克隆指定的转录本首先在含有有丝分裂期配子体的花药中可检出,并定位于配子体。在花药到达较晚的发育阶段之前,其他两个cDNA克隆指定的转录本无法检测到。这些转录本也定位于(现在是双细胞的)配子体。在配子发生过程中,所有cDNA的转录水平都增加,在成熟的花粉粒中达到最高水平。这些mRNA在体外生长的花粉管中持续存在,并向生长中的管的尖端集中。在花成熟时,在花药壁的表皮和内皮细胞层中也检测到每个cDNA所指定的转录本。花药壁中转录物的空间分布仅限于围绕小室的花药区域。在花药的无菌尖端或花丝中未检测到转录本。在几个独立的番茄雄性不育突变体的花药中,这些cDNA克隆的mRNA水平明显降低。我们的结果提供了证据,这些花药特异性cDNA代表在植物生命周期的配子体阶段和孢子体阶段表达的基因。观察到的mRNA积累模式支持以下假设:由这些基因编码的蛋白质在花粉发育和花粉管生长期间起作用。

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