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一种与浮冰相关的蛋白质调节了小立碗藓从二维生长到三维生长的转变。

A FLOE-related protein regulates the two-dimensional to three-dimensional growth transition in the moss Physcomitrium patens.

作者信息

Weeks Zoe, Chaturvedi Gargi, Day Emily, Kelly Steven, Moody Laura A

机构信息

Department of Biology, University of Oxford, South Parks Road, Oxford OX1 3RB, UK.

出版信息

Development. 2025 Aug 15;152(16). doi: 10.1242/dev.204508. Epub 2025 Aug 26.

Abstract

The colonization of the land by plants coincided with the evolution of three-dimensional (3D) growth: the acquisition of apical cells with the capacity to rotate the plane of cell division. The moss Physcomitrium patens has recently been developed as a model system in which to dissect the genetic basis of 3D growth, a unifying feature of all land plants. The cytokinin-unresponsive nog1-R mutant incorrectly orients division planes in developing buds and thus fails to make the transition to 3D growth. To reveal the genetic interactors of the NOG1 gene, which encodes a protein with a C-terminal UBA domain, we performed a screen and identified the suppressor of nog1a (snog1a) mutant. We have mapped the causative mutation to a gene that encodes a protein related to FLOE2/3 from Arabidopsis and demonstrated that the mutant phenotypes observed in both a nog1 disruptant mutant (nog1dis) and snog1a can be attributed to changes in cytokinin perception. We present a revised model in which NOG1 operates independently of the APB transcription factors to promote 3D growth initiation.

摘要

植物在陆地上的定殖与三维(3D)生长的进化同时发生:获得具有旋转细胞分裂平面能力的顶端细胞。苔藓小立碗藓最近已被开发成为一个模型系统,用于剖析3D生长的遗传基础,这是所有陆地植物的一个统一特征。细胞分裂素无反应性的nog1-R突变体在发育中的芽中错误地定向分裂平面,因此无法过渡到3D生长。为了揭示编码具有C端UBA结构域蛋白质的NOG1基因的遗传相互作用因子,我们进行了筛选并鉴定出nog1a(snog1a)突变体的抑制子。我们已将致病突变定位到一个编码与拟南芥FLOE2/3相关蛋白质的基因,并证明在nog1破坏突变体(nog1dis)和snog1a中观察到的突变表型可归因于细胞分裂素感知的变化。我们提出了一个修订模型,其中NOG1独立于APB转录因子发挥作用以促进3D生长起始。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7d1/12448315/9398f012782f/develop-152-204508-g1.jpg

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