Metabolism within the specialized guard cells of plants

警卫室 渗透压 叶绿体 光合作用 新陈代谢 细胞生物学 生物 生物化学 景天酸代谢 植物 化学 生物物理学 基因
作者
Danilo de Menezes Daloso,David B. Medeiros,Letícia dos Anjos,Takuya Yoshida,Wagner L. Araújo,Alisdair R. Fernie
出处
期刊:New Phytologist [Wiley]
卷期号:216 (4): 1018-1033 被引量:65
标识
DOI:10.1111/nph.14823
摘要

Contents 1018 I. 1018 II. 1019 III. 1022 IV. 1025 V. 1026 VI. 1029 1030 References 1030 SUMMARY: Stomata are leaf epidermal structures consisting of two guard cells surrounding a pore. Changes in the aperture of this pore regulate plant water-use efficiency, defined as gain of C by photosynthesis per leaf water transpired. Stomatal aperture is actively regulated by reversible changes in guard cell osmolyte content. Despite the fact that guard cells can photosynthesize on their own, the accumulation of mesophyll-derived metabolites can seemingly act as signals which contribute to the regulation of stomatal movement. It has been shown that malate can act as a signalling molecule and a counter-ion of potassium, a well-established osmolyte that accumulates in the vacuole of guard cells during stomatal opening. By contrast, their efflux from guard cells is an important mechanism during stomatal closure. It has been hypothesized that the breakdown of starch, sucrose and lipids is an important mechanism during stomatal opening, which may be related to ATP production through glycolysis and mitochondrial metabolism, and/or accumulation of osmolytes such as sugars and malate. However, experimental evidence supporting this theory is lacking. Here we highlight the particularities of guard cell metabolism and discuss this in the context of the guard cells themselves and their interaction with the mesophyll cells.
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