Division of Glycoscience, Department of Chemistry, KTH Royal Institute of Technology, AlbaNova University Centre, 106 91, Stockholm, Sweden.
Department of Biosciences, Sardar Patel University, Vallabh Vidyanagar, Gujarat, 388120, India.
Protoplasma. 2023 Sep;260(5):1339-1347. doi: 10.1007/s00709-023-01853-7. Epub 2023 Mar 23.
The structural changes in the secretory cells are important to understand the ontogeny and nectar secretion process from the nectaries. In this study, we investigated the ultrastructural changes during different developmental/secretion stages of extrafloral nectaries (EFNs) of Pithecellobium dulce. The dense cytoplasm with active biosynthesis mechanisms such as ribosomes, mitochondria, large nucleus, and plastids with accumulated starch grains characterized the pre-secretion stage of young nectariferous cells. During the secretory phase, the cytoplasm showed distinct changes associated with endomembrane transport such as the predominant occurrence of Golgi, secretory vesicles, and ER resulting in the subsequent appearance of secretions in the intercellular and subcuticular spaces. Cell wall loosening following the dissolution of middle lamellae leading to the formation of subcuticular spaces was evident during advanced stages of nectar secretion. The characteristic cytoplasmic and apoplastic changes associated with cell death were noticed during the post-secretory stages. The structural evidence from the present study suggests the occurrence of two modes of secretion (merocrine and holocrine) during the early and late stages of secretion in the EFNs of P. dulce.
为了了解从蜜腺中分泌的花蜜的个体发生和分泌过程,研究分泌细胞的结构变化是很重要的。在这项研究中,我们研究了 Pithecellobium dulce 的副蜜腺(EFN)在不同发育/分泌阶段的超微结构变化。在年轻蜜腺细胞的分泌前期,致密的细胞质具有活跃的生物合成机制,如核糖体、线粒体、大核和含有积累淀粉粒的质体。在分泌阶段,细胞质显示出与内膜运输相关的明显变化,如高尔基体、分泌小泡和内质网的大量出现,导致随后在细胞间和皮下空间出现分泌物。在花蜜分泌的后期阶段,细胞壁随着中层溶解而松弛,导致皮下空间的形成,这一点很明显。在后分泌阶段,注意到与细胞死亡相关的特征性细胞质和质外体变化。本研究的结构证据表明,在 P. dulce 的 EFN 中,分泌的早期和晚期阶段发生了两种分泌方式(胞吐和全质分泌)。