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Inactivation of a DNA Methylation Pathway in Maize Reproductive Organs Results in Apomixis-Like Phenotypes

机译:玉米生殖器官中DNA甲基化途径的失活导致无融合生殖样表型。

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Apomictic plants reproduce asexually through seeds by avoiding both meiosis and fertilization. Although apomixis is genetically regulated, its core genetic component(s) has not been determined yet. Using profiling experiments comparing sexual development in maize (Zea mays) to apomixis in maize-Tripsacum hybrids, we identified six loci that are specifically downregulated in ovules of apomictic plants. Four of them share strong homology with members of the RNA-directed DNA methylation pathway, which in Arabidopsis thaliana is involved in silencing via DNA methylation. Analyzing loss-of-function alleles for two maize DNA methyltransferase genes belonging to that subset, dmt102 and dmt103, which are downregulated in the ovules of apomictic plants and are homologous to the Arabidopsis CHROMOMETHYLASEs and DOMAINS REARRANGED METHYLTRANSFERASE families, revealed phenotypes reminiscent of apomictic development, including the production of unreduced gametes and formation of multiple embryo sacs in the ovule. Loss of DMT102 activity in ovules resulted in the establishment of a transcriptionally competent chromatin state in the archesporial tissue and in the egg cell that mimics the chromatin state found in apomicts. Interestingly, dmt102 and dmt103 expression in the ovule is found in a restricted domain in and around the germ cells, indicating that a DNA methylation pathway active during reproduction is essential for gametophyte development in maize and likely plays a critical role in the differentiation between apomictic and sexual reproduction.
机译:无融合生殖的植物通过避免减数分裂和受精而通过种子无性繁殖。尽管无融合生殖是遗传调控的,但其核心遗传成分尚未确定。使用比较玉米(Trisacum)杂种中玉米(Zea mays)和无性生殖的性状发育的分析实验,我们鉴定了在无融合生殖植物胚珠中特异下调的六个基因座。它们中的四个与RNA指导的DNA甲基化途径的成员具有强烈的同源性,在拟南芥中该途径通过DNA甲基化参与沉默。分析属于该子集的两个玉米DNA甲基转移酶基因dmt102和dmt103的功能缺失等位基因,它们在无融合生殖植物的胚珠中被下调并且与拟南芥染色体酶和DOMAINS REARRANGED METHYLTRANSFERASE家族同源,揭示了表型发育包括未减少的配子的产生和胚珠中多个胚囊的形成。胚珠中DMT102活性的丧失导致在原型组织和卵细胞中模仿无融合生殖细胞染色质状态的转录感受态染色质状态的建立。有趣的是,胚珠中dmt102和dmt103的表达存在于生殖细胞内和周围的限制性结构域中,这表明在繁殖过程中活跃的DNA甲基化途径对于玉米配子体的发育至关重要,并且可能在无融合生殖和无性生殖之间的分化中起关键作用。有性生殖。

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