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Mutations in Argonaute5 Illuminate Epistatic Interactions of the K1 and / Loci Leading to Saddle Seed Color Patterns in Glycine max

机译:Argonaute5中的突变照亮K1和/基因座的背景相互作用,导致甘氨酸Max中的马鞍种子颜色图案

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The soybean (Glycine max) seed coat has distinctive, genetically programmed patterns of pigmentation, and the recessive k1 mutation can epistatically overcome the dominant I and i(i) alleles, which inhibit seed color by producing small interfering RNAs (siRNAs) targeting chalcone synthase (CHS) mRNAs. Small RNA sequencing of dissected regions of immature seed coats demonstrated that CHS siRNA levels cause the patterns produced by the i(i) and i(k) alleles of the I locus, which restrict pigment to the hilum or saddle region of the seed coat, respectively. To identify the K1 locus, we compared RNA-seq data from dissected regions of two Clark isolines having similar saddle phenotypes mediated by CHS siRNAs but different genotypes (homozygous i(k) K1 versus homozygous i(i) k1). By examining differentially expressed genes, mapping information, and genome resequencing, we identified a 129-bp deletion in Glyma. 11G190900 encoding Argonaute5 (AGO5), a member of the Argonaute family. Amplicon sequencing of several independent saddle pattern mutants from different genetic backgrounds revealed independent lesions affecting AGO5, thus establishing Glyma. 11G190900 as the K1 locus. Nonfunctional AGO5 from k1 alleles leads to altered distributions of CHS siRNAs, thus explaining how the k1 mutation reverses the phenotype of the seed coat regions from yellow to pigmented, even in the presence of the normally dominant I or i(i) alleles.
机译:大豆(甘氨酸Max)种子涂层具有独特的遗传编程的色素沉着图案,并且隐性K1突变可以坚定地克服主要I和I(i)等位基因,其通过产生靶向Chalcone合酶的小干扰RNA(siRNA)来抑制种子颜色(CHS)MRNA。解剖未解析的未成影涂层区域的小RNA测序证明了CHS siRNA水平导致I(I)和I(k)的图案和I(k)的等位基因,其将颜料限制在种子涂层的Hilum或鞍座区域,分别。为了鉴定K1基因座,我们将RNA-SEQ数据与由CHS SIRNA介导但不同基因型(纯合I(k)K1与纯合I(i)K1)介导的类似鞍形表位型具有相似的鞍形表型的RNA-SEQ数据。通过检查差异表达的基因,映射信息和基因组重构,我们鉴定了Glyma的129bp缺失。 11G190900编码Argonaute5(前5),Argonaute家族的成员。来自不同遗传背景下的几个独立鞍形图案突变体的扩增子测序揭示了影响前的独立病变,从而建立糖浆。 11G190900作为K1基因座。来自K1等位基因的非功能前期5导致CHS SIRNA的分布改变,因此即使在正常显性I或I(i)等位基因的存在下,K1突变如何将k1突变从黄色到色素中的种子涂层的表型。

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