Han Xiaoyu, Gao Chen, Liang Buyou, Cui Jingxuan, Xu Qiyu, Schulz Alexander, Liesche Johannes
College of Life Sciences, Northwest A&F University, Yangling 712100, China.
Biomass Energy Center for Arid and Semi-arid Lands, Northwest A&F University, Yangling 712100, China.
Tree Physiol. 2022 Mar 9;42(3):488-500. doi: 10.1093/treephys/tpab149.
Sucrose is the central unit of carbon and energy in plants. Active intercellular transport of sucrose is mediated by sucrose transporters (SUTs), genes for which have been found in the genomes of all land plants. However, they have only been assigned functions in angiosperm species. Here, we cloned two types of SUTs from two gymnosperms, the conifers Cedrus deodara (Roxb. G. Don) and Pinus massoniana Lambert, and analyzed their sucrose transport activities. Uptake of the fluorescent sucrose-analog esculin into tobacco epidermis cells expressing the conifer SUT confirmed their transport ability. To determine their function in planta, we investigated their mRNA abundance in relation to photosynthesis and sugar levels in leaves, inner bark, wood and roots. Combined with measurements of protein abundance and immunolocalization of C. deodara SUTs, our results suggest a role for CdSUT1G and CdSUT2 in supporting phloem transport under varying environmental conditions. The implications of these findings regarding conifer physiology and SUT evolution are discussed.
蔗糖是植物中碳和能量的核心单元。蔗糖的细胞间主动运输由蔗糖转运蛋白(SUTs)介导,在所有陆地植物的基因组中都已发现其相关基因。然而,它们仅在被子植物物种中被赋予功能。在此,我们从两种裸子植物,即针叶树雪松(Cedrus deodara (Roxb. G. Don))和马尾松(Pinus massoniana Lambert)中克隆了两种类型的SUT,并分析了它们的蔗糖运输活性。将荧光蔗糖类似物七叶苷摄取到表达针叶树SUT的烟草表皮细胞中,证实了它们的运输能力。为了确定它们在植物体内的功能,我们研究了它们在叶片、内皮、木材和根中与光合作用及糖水平相关的mRNA丰度。结合对雪松SUTs的蛋白质丰度测量和免疫定位,我们的结果表明CdSUT1G和CdSUT2在不同环境条件下支持韧皮部运输中发挥作用。讨论了这些发现对针叶树生理学和SUT进化的意义。