A BRASSINOSTEROID INSENSISTIVE 1 receptor kinase ortholog is required for sex determination in Ceratopteris richardii.

Katelin M Burow,Xi Yang,Yun Zhou,Brian P Dilkes,Jennifer H Wisecaver
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Abstract

Most ferns, unlike all seed plants, are homosporous and produce sexually undifferentiated spores. Sex ratio in many homosporous species is environmentally established by the secretion of antheridiogen from female/hermaphrodite gametophytes. Nearby undetermined gametophytes perceive antheridiogen, which induces male development. In the fern Ceratopteris richardii (Ceratopteris), hermaphroditic (her) mutants develop as hermaphrodites even in the presence of antheridiogen. Modern sequencing and genomic tools make the molecular identification of mutants in the 11-Gbp genome of this fern possible. We mapped 2 linked mutants, her7-14 and her7-19, to the same 16-Mbp interval on chromosome 29 of the Ceratopteris genome. An ortholog of the receptor kinase gene BRASSINOSTEROID INSENSITIVE 1 (BRI1) within this interval encoded a deletion mutation in her7-14 and a missense mutation in her7-19. Three other linked her mutants encoded missense mutations in the same gene, which we name HER7. Consistent with a function as a receptor kinase, HER7-GFP fusion protein localized to the plasma membrane and cytoplasm. Analysis of gene expression showed that brassinosteroid biosynthesis was upregulated in hermaphrodites compared with male gametophytes. Our work demonstrates that HER7 is required for sex determination in Ceratopteris and opens avenues for studying the evolution of antheridiogen systems.
一种油菜素内酯不敏感1受体激酶同源基因是决定richardii蠓性别所必需的。
与所有种子植物不同,大多数蕨类植物是同孢子的,产生性分化的孢子。许多同孢子物种的性别比是由雌性/雌雄同体配子体分泌的雄激素决定的。附近未确定的配子体感知雄激素,雄激素诱导雄性发育。在角蕨(角蕨)中,雌雄同体突变体即使在异雄素存在的情况下也会发展为雌雄同体。现代测序和基因组工具使这种蕨类植物11-Gbp基因组突变的分子鉴定成为可能。我们将两个连锁突变体her7-14和her7-19定位在角翅鸟基因组29号染色体上相同的16mbp间隔上。受体激酶基因brassinosteroids INSENSITIVE 1 (BRI1)的同源基因在这段时间内编码her7-14的缺失突变和her7-19的错义突变。另外三个与她有关的突变在同一基因中编码了错义突变,我们称之为HER7。HER7-GFP融合蛋白定位于质膜和细胞质,其功能与受体激酶一致。基因表达分析表明,与雄性配子体相比,雌雄同体的油菜素内酯生物合成上调。我们的工作表明HER7是角翅鸟性别决定所必需的,并为研究雄激素系统的进化开辟了途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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