首页> 外文期刊>Plant physiology >The moss physcomitrella patens reproductive organ development is highly organized, affected by the two SHI/STY genes and by the level of active auxin in the SHI/STY expression domain
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The moss physcomitrella patens reproductive organ development is highly organized, affected by the two SHI/STY genes and by the level of active auxin in the SHI/STY expression domain

机译:mosphyphymitrella patens生殖器官发育高度有组织,受两个SHI / STY基因和SHI / STY表达域中活性生长素水平的影响

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In order to establish a reference for analysis of the function of auxin and the auxin biosynthesis regulators SHORT INTERNODE/ STYLISH (SHI/STY) during Physcomitrella patens reproductive development, we have described male (antheridial) and female (archegonial) development in detail, including temporal and positional information of organ initiation. This has allowed us to define discrete stages of organ morphogenesis and to show that reproductive organ development in P. patens is highly organized and that organ phyllotaxis differs between vegetative and reproductive development. Using the PpSHI1 and PpSHI2 reporter and knockout lines, the auxin reporters GmGH3pro:GUS and PpPINApro:GFP-GUS, and the auxin-conjugating transgene PpSHI2pro:IAAL, we could show that the PpSHI genes, and by inference also auxin, play important roles for reproductive organ development in moss. The PpSHI genes are required for the apical opening of the reproductive organs, the final differentiation of the egg cell, and the progression of canal cells into a cell death program. The apical cells of the archegonium, the canal cells, and the egg cell are also sites of auxin responsiveness and are affected by reduced levels of active auxin, suggesting that auxin mediates PpSHI function in the reproductive organs.
机译:为了为分析生长假单胞菌生殖发育期间植物生长素和植物生长素生物合成调节剂的功能建立参考,我们详细描述了雄性(花药)和雌性(古菌)的发育,包括器官启动的时间和位置信息。这使我们能够定义器官形态发生的不连续阶段,并表明P. patens中的生殖器官发育高度组织化,并且营养发育和生殖发育之间的器官叶序不同。使用PpSHI1和PpSHI2报告基因和敲除系,生长素报告基因GmGH3pro:GUS和PpPINApro:GFP-GUS以及与生长素结合的转基因PpSHI2pro:IAAL,我们可以证明PpSHI基因以及通过推论还可以得出生长素的重要作用。用于苔藓中生殖器官的发育。 PpSHI基因是生殖器官的顶端开放,卵细胞的最终分化以及管细胞进入细胞死亡程序的过程所必需的。弓形虫的根尖细胞,管细胞和卵细胞也是生长素应答性的部位,并受活性生长素水平降低的影响,这表明生长素在生殖器官中介导了PpSHI功能。

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