Javascript must be enabled to continue!
Senescence Associated Genes Modulating Programmed Cell Death in Plant Leaves
View through CrossRef
The aim of this study was to evaluate the effects of various promoters and inhibitors of leaf senescence in Rosa hybrida by applying different concentrations of plant hormones under controlled tissue culture conditions. The study sought to identify hormonal treatments that can delay or accelerate senescence, with the goal of improving the postharvest quality and longevity of rose foliage. The plants were grown by tissue culture techniques, which were free from disease. Regenerated plants with well-defined leaves, were infiltrated with hormones and the untreated plant leaves used as control. After the infiltration, all plants were kept under growth conditions at 25±2ºC and phonotypical characteristics were observed regularly. Further, the round discs of rose leaves were prepared from two opposite of same sized leaves collected from tissue cultured plants and discs of same size were made. Molecular studies were performed on discs of leaves for further clarification involved regulatory mechanism. The results showed various narrative phenotypes with elevated level of transcripts. The phenotype was characterized by yellowing of leaves, observed in both treated and untreated samples. Notably, leaves treated with Ethylene, ABA, and NaCl exhibited more pronounced yellowing, particularly in the lower regions of the plants, accompanied by a reduced number of tillers at the plant base. To assess the senescence progression level, key markers gene expression of SAG12 (a senescence-associated gene) and photosynthesis-associated genes (PS), as well as content of chlorophyll and leakage of ions were analyzed. The results highlighted that hormonal treatments play a significant role in regulating leaf senescence. Promoter treatments accelerated the onset of senescence and reduced chlorophyll content, while inhibitor treatments preserved chlorophyll levels and delayed the senescence process. Furthermore, photosynthesis, essential for plant growth and development, was significantly disrupted in promoter-treated leaves, underscoring the pivotal influence of hormonal regulation on senescence
Society for Sustainable Agriculture & Friendly Environment
Title: Senescence Associated Genes Modulating Programmed Cell Death in Plant Leaves
Description:
The aim of this study was to evaluate the effects of various promoters and inhibitors of leaf senescence in Rosa hybrida by applying different concentrations of plant hormones under controlled tissue culture conditions.
The study sought to identify hormonal treatments that can delay or accelerate senescence, with the goal of improving the postharvest quality and longevity of rose foliage.
The plants were grown by tissue culture techniques, which were free from disease.
Regenerated plants with well-defined leaves, were infiltrated with hormones and the untreated plant leaves used as control.
After the infiltration, all plants were kept under growth conditions at 25±2ºC and phonotypical characteristics were observed regularly.
Further, the round discs of rose leaves were prepared from two opposite of same sized leaves collected from tissue cultured plants and discs of same size were made.
Molecular studies were performed on discs of leaves for further clarification involved regulatory mechanism.
The results showed various narrative phenotypes with elevated level of transcripts.
The phenotype was characterized by yellowing of leaves, observed in both treated and untreated samples.
Notably, leaves treated with Ethylene, ABA, and NaCl exhibited more pronounced yellowing, particularly in the lower regions of the plants, accompanied by a reduced number of tillers at the plant base.
To assess the senescence progression level, key markers gene expression of SAG12 (a senescence-associated gene) and photosynthesis-associated genes (PS), as well as content of chlorophyll and leakage of ions were analyzed.
The results highlighted that hormonal treatments play a significant role in regulating leaf senescence.
Promoter treatments accelerated the onset of senescence and reduced chlorophyll content, while inhibitor treatments preserved chlorophyll levels and delayed the senescence process.
Furthermore, photosynthesis, essential for plant growth and development, was significantly disrupted in promoter-treated leaves, underscoring the pivotal influence of hormonal regulation on senescence.
Related Results
Study of the regulatory mechanism involved in dark-induced Postharvest leaf senescence
Study of the regulatory mechanism involved in dark-induced Postharvest leaf senescence
Postharvest leaf senescence contributes to quality losses in flowers and leafy vegetables. The general goal of this research project was to investigate the regulatory mechanisms in...
Abstract A16: Wnt antagonist SFRP1 functions as secreted mediator of senescence
Abstract A16: Wnt antagonist SFRP1 functions as secreted mediator of senescence
Abstract
The purpose of this study was 1) to identify the mediator(s) of senescence that are secreted from senescent cells and induce senescence in an autocrine and ...
Microrna Regulation of Nodule Zone-Specific Gene Expression In Soybean
Microrna Regulation of Nodule Zone-Specific Gene Expression In Soybean
Nitrogen is a paramount important essential element for all living organisms. It has been found to bea crucial structural component of proteins, nucleic acids, enzymes and other ce...
Regulatory mechanisms associating innate leaves senescence of incongruent species
Regulatory mechanisms associating innate leaves senescence of incongruent species
<p class="abstract"><strong>Background:</strong> Senescence is the final developmental phase of a leaf which starts with nutrient salvage and ends with cell death...
Complex Collision Tumors: A Systematic Review
Complex Collision Tumors: A Systematic Review
Abstract
Introduction: A collision tumor consists of two distinct neoplastic components located within the same organ, separated by stromal tissue, without histological intermixing...
Systematic transcriptomic analysis and temporal modelling of human fibroblast senescence
Systematic transcriptomic analysis and temporal modelling of human fibroblast senescence
Cellular senescence is a diverse phenotype characterised by permanent cell cycle arrest and an associated secretory phenotype (SASP) which includes inflammatory cytokines. Typicall...
Revealing programmed cell death events during flower (petal) senescence
Revealing programmed cell death events during flower (petal) senescence
Abstract
Background
Flower petals serve to attract pollinators and inherently have a short lifespan. The senescence of these pla...
Delayed leaf senescence in ethylene‐deficient ACC‐oxidase antisense tomato plants: molecular and physiological analysis
Delayed leaf senescence in ethylene‐deficient ACC‐oxidase antisense tomato plants: molecular and physiological analysis
SummaryTo determine the role of ethylene during tomato (Lycopersicon esculentum Mill. cv. Alisa Craig) leaf senescence, transgenic ACC oxidase antisense plants were analysed. North...

