首页> 外文期刊>Plant signaling & behavior >Unraveling mechanisms of cell expansion linking solute transport, metabolism, plasmodesmatal gating and cell wall dynamics.
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Unraveling mechanisms of cell expansion linking solute transport, metabolism, plasmodesmatal gating and cell wall dynamics.

机译:解散溶质运输,新陈代谢,胞膜门控和细胞壁动力学的细胞扩展的机制。

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摘要

Cell expansion is a major component of plant cell development and plays a key role in organ growth, hence realization of crop productivity. Thus, unraveling mechanisms controlling plant cell expansion is essential not only for understanding fundamental plant biology but also for designing innovative approaches to increase crop yield and quality. The multi-cellular plant tissues, however, impose enormous technique challenges to assess the contribution of molecular or cellular events to the expansion of given cell types as they often deeply embedded within the tissues, thus are not readily accessible for sampling or measurement. In this context, cotton fibers, single-celled hairs developed from the seed coat epidermis represent an ideal system for studying regulation of cell expansion, owing to their rapid and synchronized elongation (up to 3-5 cm long) and high accessibility for experimentation. Recently, we demonstrated the essential role of vacuolar invertase (VIN) in early fiber elongation. Remarkably, we discovered that VIN controls cotton fiber and Arabidopsis root elongating through osmotic dependent and independent pathways, respectively. This shows mechanistic complexity of cell expansion. Here, we evaluate the coordinated actions of multiple pathways in regulating cotton fiber elongation linking solute transport and metabolism with plasmodesmatal gating, water flow and cell wall dynamics and we outline future directions for deepening our understanding of plant cell expansion.
机译:细胞扩增是植物细胞发育的主要组成部分,并且在器官生长中起着关键作用,因此实现了作物生产力。因此,控制植物细胞扩展的机制不仅对于理解植物基本生物学至关重要,而且对于设计创新方法以提高农作物产量和质量至关重要。然而,由于多细胞植物组织通常深深地嵌入组织内,因此不容易进行采样或测量,因此多细胞植物组织对评估分子或细胞事件对给定细胞类型扩展的贡献提出了巨大的技术挑战。在这种情况下,由于棉纤维,从种皮表皮发育而来的单细胞毛,由于其快速且同步的伸长(长达3-5厘米长)和较高的实验可及性,代表了研究细胞膨胀调控的理想系统。最近,我们证明了液泡转化酶(VIN)在早期纤维伸长中的重要作用。值得注意的是,我们发现VIN通过渗透依赖和独立途径分别控制棉纤维和拟南芥根的伸长。这显示了细胞扩增的机械复杂性。在这里,我们评估了调节棉纤维伸长的多种途径的协同作用,这些棉花纤维将溶质的运输和新陈代谢与等离子门控,水流和细胞壁动力学联系起来,并概述了加深我们对植物细胞膨胀的理解的未来方向。

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