Search bioRxivSearch

Biology subjects

Xiang, D.

Publications and source records attributed to Xiang, D..

2 recordsLinked to original sources

Maternal genome dominance in early plant embryogenesis

Previous studies have alternately supported and discounted the hypothesis that the maternal genome plays a predominant role in early embryogenesis in plants. We used 24 embryo defective (emb) mutants of Arabidopsis thaliana to test for maternal and paternal effects in early embryogenesis. 5 emb mutants had equal maternal and paternal effects, 5 showed maternal effects and weak paternal effects, and the remaining 14 emb mutants conditioned only maternal effects, demonstrating a more important role for the maternal allele for most of these EMB genes. To assess genome-wide maternal and paternal contributions to early embryos, we produced allele-specific transcriptomes from zygote to mature stage embryos derived from reciprocal crosses of Columbia-0 and Tsu-1, a hybrid combination we show to be a faithful proxy for isogenic Columbia-0. Parent-of-origin analysis of these transcriptomes revealed a reciprocal maternal bias in thousands of genes from the zygote to octant stage. This bias greatly diminished by the globular stage, and was absent at later stages. Comparison with egg cell transcriptomes revealed no correlation between transcript levels in the egg and maternal bias in pre-globular embryos, suggesting that the maternal bias observed in early embryos is due to preferential zygotic transcription of maternal alleles. Taken together, the functional and transcriptome data presented here support a predominant role for the maternal genome in early Arabidopsis embryogenesis. SignificanceIn both animals and plants, the zygote is produced by the union of the egg and sperm cells. In animals, it is well accepted that mRNAs and proteins from the egg direct the first steps of embryogenesis. Here we present genetic and genomic experiments that support a predominant role for the maternal genome in early embryogenesis of plants, as well. In contrast to animals, our data suggest that this maternal influence is primarily derived not from inheritance of egg transcripts, but from preferential transcription of maternal alleles in the zygote and early embryo. This transient maternal zygotic bias may reflect an ancestral condition to diminish paternal influence on early embryogenesis in outcrossing plants.

plant biology

Testing Models of the Visual Word Form Area Using Combined ERP and fMRI Using the Special Properties of Chinese Characters

The visual word form area or VWFA has been of special interest for studies of reading and dyslexia and yet there are conflicting models regarding its function. Here we put the Local Combination Detector, Lexicon, and Interactive accounts to the test, using a combination of event-related potentials and functional magnetic resonance imaging. We do so using both pseudoword and reversed radical false word manipulations with Chinese characters, making use of its special properties. We recorded event-related potentials with 68 channels while twenty native Chinese speakers were making rhyme and meaning judgments on single Chinese characters and BOLD signals were collected in a 3T magnet using multi-plane EPI with a further fifteen native Chinese speakers. The word N170 showed a prolongation for reversed radical false characters while the VWFA also showed an effect of reversal, albeit only for pseudocharacters. Furthermore, an N450 rhyming effect was observed in the phonological task compared to the semantic task, but only via an interaction with reversal. The source analysis of the N450 co-registered with a Supplementary Motor Area activation. The combination of these observations suggests that the ventral orthographic pathway is partially order insensitive and that full phonological encoding occurs relatively late, supporting and expanding a model of dyslexia. Overall, they best support a version of the Lexicon account of the VWFA.

neuroscience