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      Transcriptome of wheat inflorescence development from spikelet initiation to floral patterning.

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          Abstract

          Early reproductive development in cereals is crucial for final grain number per spike, and hence the yield potential of the crop. To date, however, no systematic analyses of gene expression profiles during this important process have been conducted for common wheat (Triticum aestivum). Here, we studied the transcriptome profiles at four stages of early wheat reproductive development, from spikelet initiation to floral organ differentiation. K-means clustering and stage-specific transcript identification detected dynamically expressed homoeologs of important transcription regulators in spikelet and floral meristems that may be involved in spikelet initiation, floret meristem specification, and floral organ patterning, as inferred from their homologs in model plants. Small RNA transcriptome sequencing discovered key microRNAs that were differentially expressed during wheat inflorescence development alongside their target genes, suggesting that miRNA-mediated regulatory mechanisms for floral development may be conserved in cereals and Arabidopsis. Our analysis was further substantiated by the functional characterization of the ARGONAUTE 1d (AGO1d) gene, which was initially expressed in stamen primordia and later in the tapetum during anther maturation. In agreement with its stage-specific expression pattern, the loss of function of the predominantly expressed B homoeolog of AGO1d in a tetraploid durum wheat mutant resulted in smaller anthers with more infertile pollens than the wild type, and a reduced grain number per spike. Together, our work provides a first glimpse of the gene regulatory networks in wheat inflorescence development that may be pivotal for floral and grain development, highlighting potential targets for genetic manipulation to improve future wheat yields.

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          Author and article information

          Journal
          Plant Physiol.
          Plant physiology
          American Society of Plant Biologists (ASPB)
          1532-2548
          0032-0889
          May 17 2017
          Affiliations
          [1 ] Institute of Crop Science CITY: Bejing China [CN].
          [2 ] Shandong Agricultural University CITY: Taian China [CN].
          [3 ] Institute of Crop Science, Chinese Academy of Agricultural Sciences CITY: Beijing China [CN].
          [4 ] Institute of Crop Science CITY: Beijing STATE: Beijing POSTAL_CODE: 100081 China [CN].
          [5 ] Institute of Crop Science CITY: Bejing POSTAL_CODE: 100081 China [CN] maolong@caas.cn.
          Article
          pp.17.00310
          10.1104/pp.17.00310
          28515146
          17ff3c5c-3410-4ea3-b239-c5a17274aaa8
          History

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