Gene Engineering Division, National Institute of Agricultural Sciences, Republic of Korea.
Center for Plant Aging Research, Institute for Basic Science (IBS), Daegu, Republic of Korea.
Physiol Plant. 2024 Sep-Oct;176(5):e14507. doi: 10.1111/ppl.14507.
Leaf senescence is a crucial process throughout evolution, vital for plant fitness as it facilitates the gradual shift of energy allocation between photosynthesis and catabolism overtime. This onset is influenced by a complex interplay of genetic and environmental factors, making senescence a key adaptation mechanism for plants in their natural habitats. Our study investigated the genetic mechanism underlying age-induced leaf senescence in Arabidopsis natural populations. Using a phenome high-throughput investigator, we comprehensively analyzed senescence responses across 234 Arabidopsis accessions and identified that environmental factors (e.g., ambient temperature) and physiological factors (e.g., defense responses) are substantially linked to senescence phenotypes. Through genome-wide association mapping, we identified the ACCELERATED CELL DEATH 6 (ACD6) locus as a potential regulator of senescence variation among natural accessions. Knocking out ACD6 in accessions with early and delayed senescence phenotypes resulted in varying degrees of delay in age-induced senescence, highlighting the accession-dependent regulatory role of ACD6 in leaf senescence. Furthermore, our findings suggest ACD6's involvement in senescence regulation via the salicylic acid signaling pathway. In summary, our study sheds light on the genetic regulation of leaf senescence in Arabidopsis natural populations, with the discovery of ACD6 as a potential candidate for genetic modification to enhance plant adaptation and survival.
叶片衰老在整个进化过程中是一个至关重要的过程,对植物的适应性至关重要,因为它促进了光合作用和分解代谢之间的能量分配随着时间的推移逐渐转移。这种起始受遗传和环境因素的复杂相互作用的影响,使衰老成为植物在其自然栖息地的关键适应机制。我们的研究调查了拟南芥自然种群中年龄诱导叶片衰老的遗传机制。使用表型高通量调查员,我们全面分析了 234 个拟南芥品系的衰老反应,发现环境因素(例如环境温度)和生理因素(例如防御反应)与衰老表型有很大关系。通过全基因组关联作图,我们确定了 ACCELERATED CELL DEATH 6(ACD6)基因座作为自然品系衰老变异的潜在调节剂。在具有早衰老和晚衰老表型的品系中敲除 ACD6 导致年龄诱导的衰老延迟程度不同,这突出了 ACD6 在叶片衰老中的品系依赖性调节作用。此外,我们的研究结果表明 ACD6 通过水杨酸信号通路参与衰老调节。总之,我们的研究揭示了拟南芥自然种群中叶片衰老的遗传调控,发现 ACD6 是遗传修饰的潜在候选基因,以增强植物的适应性和生存能力。