Research & Development Center of Blueberry, Key Laboratory of Forest Silviculture and Conservation of the Ministry of Education, Beijing Forestry University, Beijing 100083, China.
Int J Mol Sci. 2022 Apr 21;23(9):4590. doi: 10.3390/ijms23094590.
Sucrose phloem unloading plays a vital role in photoassimilate distribution and storage in sink organs such as fruits and seeds. In most plants, the phloem unloading route was reported to shift between an apoplasmic and a symplasmic pattern with fruit development. However, the molecular transition mechanisms of the phloem unloading pathway still remain largely unknown. In this study, we applied RNA sequencing to profile the specific gene expression patterns for sucrose unloading in fruits in the apo- and symplasmic pathways that were discerned by CF fluoresce labelling. Several key structural genes were identified that participate in phloem unloading, such as , , , and . In particular, the key genes controlling the process were involved in callose metabolism, which was confirmed by callose staining. Based on the co-expression network analysis with key structural genes, a number of transcription factors belonging to the MYB, C2C2, NAC, WRKY, and AP2/ERF families were identified to be candidate regulators for the operation and transition of phloem unloading. KEGG enrichment analysis showed that some important metabolism pathways such as plant hormone metabolism, starch, and sucrose metabolism altered with the change of the sugar unloading pattern. Our study provides innovative insights into the different mechanisms responsible for apo- and symplasmic phloem unloading in oil tea fruit and represents an important step towards the omics delineation of sucrose phloem unloading transition in crops.
蔗糖韧皮部卸出在光合产物在库器官(如果实和种子)中的分配和储存中起着至关重要的作用。在大多数植物中,随着果实的发育,韧皮部卸出途径被报道在质外体和共质体模式之间发生转变。然而,韧皮部卸出途径的分子转变机制在很大程度上仍然未知。在这项研究中,我们应用 RNA 测序来分析在通过 CF 荧光标记区分的质外体和共质体途径中蔗糖卸出的特定基因表达模式。鉴定了几个参与韧皮部卸出的关键结构基因,如、、、和。特别是,参与该过程的关键基因涉及到胼胝质代谢,这一点通过胼胝质染色得到了证实。基于与关键结构基因的共表达网络分析,鉴定了许多属于 MYB、C2C2、NAC、WRKY 和 AP2/ERF 家族的转录因子,它们可能是调控韧皮部卸出的候选调控因子。KEGG 富集分析表明,一些重要的代谢途径,如植物激素代谢、淀粉和蔗糖代谢,随着糖卸出模式的改变而发生变化。我们的研究为油茶果实中质外体和共质体韧皮部卸出的不同机制提供了新的见解,并代表了朝着作物蔗糖韧皮部卸出转变的组学描绘迈出的重要一步。