Chloroplast Vesiculation and Induced Chloroplast Vesiculation and Senescence-Associated Gene 12 Expression During Tomato Flower Pedicel Abscission.

IF 2.3 3区 生物学 Q2 PLANT SCIENCES Plant Direct Pub Date : 2025-01-08 eCollection Date: 2025-01-01 DOI:10.1002/pld3.70035
Magda Tušek Žnidarič, Maja Zagorščak, Živa Ramšak, Katja Stare, Marko Chersicola, Maruša Pompe Novak, Aleš Kladnik, Marina Dermastia
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Abstract

Abscission is a tightly regulated process in which plants shed unnecessary, infected, damaged, or aging organs, as well as ripe fruits, through predetermined abscission zones in response to developmental, hormonal, and environmental signals. Despite its importance, the underlying mechanisms remain incompletely understood. This study highlights the deleterious effects of abscission on chloroplast ultrastructure in the cells of the tomato flower pedicel abscission zone, revealing spatiotemporal differential gene expression and key transcriptional networks involved in chloroplast vesiculation during abscission. Significant changes in chloroplast structure and vesicle formation were observed 8 and 14 h after abscission induction, coinciding with the differential expression of vesiculation-related genes, particularly with upregulation of Senescence-Associated Gene 12 (SAG12) and Chloroplast Vesiculation (CV). This suggests a possible vesicle transport of chloroplast degrading material for recycling by autophagy-independent senescence-associated vacuoles (SAVs) and CV-containing vesicles (CCVs). Ethylene signaling appears to be involved in the regulation of these processes, as treatment with a competitive inhibitor of ethylene action, 1-methylcyclopropene, delayed vesiculation, reduced the expression of SAG12, and increased expression of Curvature Thylakoid 1A (CURT1A). In addition, chloroplast vesiculation during abscission was associated with differential expression of photosynthesis-related genes, particularly those involved in light reactions, underscoring the possible functional impact of the observed structural changes. This work provides new insights into the molecular and ultrastructural mechanisms underlying abscission and offers potential new targets for agricultural or biotechnological applications.

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番茄花梗脱落过程中叶绿体空泡和诱导的叶绿体空泡及衰老相关基因12的表达
脱落是一个受到严格调控的过程,在这个过程中,植物根据发育、激素和环境信号,通过预定的脱落区脱落不必要的、受感染的、受损的或老化的器官以及成熟的果实。尽管它很重要,但潜在的机制仍然不完全清楚。本研究揭示了脱落对番茄花梗脱落区细胞叶绿体超微结构的有害影响,揭示了脱落过程中叶绿体囊泡形成的时空差异基因表达和关键转录网络。在诱导脱落后8和14 h,叶绿体结构和囊泡形成发生了显著变化,这与囊泡相关基因的差异表达一致,特别是衰老相关基因12 (SAG12)和叶绿体囊泡(CV)的上调。这表明叶绿体降解物质可能通过不依赖自噬的衰老相关液泡(sav)和含cv的囊泡(ccv)进行囊泡运输。乙烯信号似乎参与了这些过程的调控,如用乙烯作用的竞争性抑制剂1-甲基环丙烯处理,延迟囊泡,降低SAG12的表达,增加曲率类囊体1A (CURT1A)的表达。此外,脱落过程中的叶绿体囊泡与光合作用相关基因的差异表达有关,特别是与光反应有关的基因,强调了观察到的结构变化可能对功能产生的影响。这项工作为脱落的分子和超微结构机制提供了新的见解,并为农业或生物技术应用提供了潜在的新靶点。
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来源期刊
Plant Direct
Plant Direct Environmental Science-Ecology
CiteScore
5.00
自引率
3.30%
发文量
101
审稿时长
14 weeks
期刊介绍: Plant Direct is a monthly, sound science journal for the plant sciences that gives prompt and equal consideration to papers reporting work dealing with a variety of subjects. Topics include but are not limited to genetics, biochemistry, development, cell biology, biotic stress, abiotic stress, genomics, phenomics, bioinformatics, physiology, molecular biology, and evolution. A collaborative journal launched by the American Society of Plant Biologists, the Society for Experimental Biology and Wiley, Plant Direct publishes papers submitted directly to the journal as well as those referred from a select group of the societies’ journals.
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