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一个控制拟南芥维管束鞘中基因表达的双组分转录因子模块。

A bipartite transcription factor module controlling expression in the bundle sheath of Arabidopsis thaliana.

作者信息

Dickinson Patrick J, Kneřová Jana, Szecówka Marek, Stevenson Sean R, Burgess Steven J, Mulvey Hugh, Bågman Anne-Maarit, Gaudinier Allison, Brady Siobhan M, Hibberd Julian M

机构信息

Department of Plant Sciences, University of Cambridge, Cambridge, UK.

Department of Plant Biology and Genome Center, University of California, Davis, CA, USA.

出版信息

Nat Plants. 2020 Dec;6(12):1468-1479. doi: 10.1038/s41477-020-00805-w. Epub 2020 Nov 23.

Abstract

C photosynthesis evolved repeatedly from the ancestral C state, improving photosynthetic efficiency by ~50%. In most C lineages, photosynthesis is compartmented between mesophyll and bundle sheath cells, but how gene expression is restricted to these cell types is poorly understood. Using the C model Arabidopsis thaliana, we identified cis-elements and transcription factors driving expression in bundle sheath strands. Upstream of the bundle sheath preferentially expressed MYB76 gene, we identified a region necessary and sufficient for expression containing two cis-elements associated with the MYC and MYB families of transcription factors. MYB76 expression is reduced in mutant alleles for these transcription factors. Moreover, downregulated genes shared by both mutants are preferentially expressed in the bundle sheath. Our findings are broadly relevant for understanding the spatial patterning of gene expression, provide specific insights into mechanisms associated with the evolution of C photosynthesis and identify a short tuneable sequence for manipulating gene expression in the bundle sheath.

摘要

C4光合作用从祖先的C3状态反复进化而来,将光合效率提高了约50%。在大多数C4谱系中,光合作用在叶肉细胞和维管束鞘细胞之间进行区室化,但基因表达如何局限于这些细胞类型却知之甚少。利用C4模式植物拟南芥,我们鉴定了驱动维管束鞘细胞表达的顺式元件和转录因子。在维管束鞘优先表达的MYB76基因上游,我们鉴定了一个对表达必要且充分的区域,该区域包含与转录因子的MYC和MYB家族相关的两个顺式元件。这些转录因子的突变等位基因中MYB76表达降低。此外,两个突变体共有的下调基因在维管束鞘中优先表达。我们的发现对于理解基因表达的空间模式具有广泛的相关性,为与C4光合作用进化相关的机制提供了具体见解,并鉴定了一个用于操纵维管束鞘中基因表达的短可调节序列。

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