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Stress-Triggered Long-Distance Communication Leads to Phenotypic Plasticity: The Case of the Early Root Protoxylem Maturation Induced by Leaf Wounding in Arabidopsis

机译:应力触发的远距离交流导致表型可塑性:拟南芥叶片伤口诱导的早期根Protoxylem成熟的情况。

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Root architecture and xylem phenotypic plasticity influence crop productivity by affecting water and nutrient uptake, especially under those environmental stress, which limit water supply or imply excessive water losses. Xylem maturation depends on coordinated events of cell wall lignification and developmental programmed cell death (PCD), which could both be triggered by developmental- and/or stress-driven hydrogen peroxide (H 2 O 2 ) production. Here, the effect of wounding of the cotyledonary leaf on root protoxylem maturation was explored in Arabidopsis thaliana by analysis under Laser Scanning Confocal Microscope (LSCM). Leaf wounding induced early root protoxylem maturation within 3 days from the injury, as after this time protoxylem position was found closer to the tip. The effect of leaf wounding on protoxylem maturation was independent from root growth or meristem size, that did not change after wounding. A strong H 2 O 2 accumulation was detected in root protoxylem 6 h after leaf wounding. Furthermore, the H 2 O 2 trap N , N 1 -dimethylthiourea (DMTU) reversed wound-induced early protoxylem maturation, confirming the need for H 2 O 2 production in this signaling pathway.
机译:根系结构和木质部表型可塑性通过影响水和养分的吸收来影响作物的生产力,特别是在那些限制水供应或暗示过多水分流失的环境压力下。木质部成熟取决于细胞壁木质化和发育程序性细胞死亡(PCD)的协调事件,这两者都可能由发育和/或压力驱动的过氧化氢(H 2 O 2)产生触发。在这里,通过激光扫描共聚焦显微镜(LSCM)的分析,在拟南芥中探索了子叶叶片受伤对根系Protoxylem成熟的影响。受伤后3天内,叶片受伤导致根部原发性早熟,因为这段时间之后,原发性丙交酯的位置更靠近尖端。叶片受伤对Protoxylem成熟的影响与根系生长或分生组织大小无关,在受伤后不会改变。叶片受伤后6 h,根部的Protoxylem中检测到强烈的H 2 O 2积累。此外,H 2 O 2捕集的N,N 1-二甲基硫脲(DMTU)逆转了伤口诱导的早期丙交酯成熟,从而证实了在该信号传导途径中需要生产H 2 O 2。

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