首页> 外文期刊>Plant biology >Meristem aging is not responsible for age-related changes in growth and abscisic acid levels in the Mediterranean shrub, Cistus clusii
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Meristem aging is not responsible for age-related changes in growth and abscisic acid levels in the Mediterranean shrub, Cistus clusii

机译:分生组织的衰老与地中海灌木Cistus clusii中生长和脱落酸水平的年龄相关变化不负责

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To obtain new insights into the mechanisms underlying aging in perennials, we measured abscisic acid levels, growth and other stress indicators in leaves of Cistus clusii Dunal plants of different ages grown under Mediterranean field conditions. Recently emerged leaves from 9-year-old plants were compared to those of 1-year-old plants (obtained from cuttings from 9-year-old plants) to evaluate the effects of meristem aging on plant aging. Rooting and successful establishment of the cuttings allowed us to compare the physiology of plants with old meristems, but of different size. Plants obtained from cuttings were rejuvenated, with new leaves displaying a higher leaf area and chlorophyll content, but smaller leaf mass per unit area ratios and endogenous abscisic acid levels than those of 9-year-old plants. A comparative study in 1-, 4- and 9-year-old plants revealed that abscisic acid levels increase during the early stages of plant life (with increases of 90% between 1- and 4-year-old plants), but then remain constant at advanced developmental stages (between 4- and 9-year-old plants). Although leaf biomass was 53% smaller in 9-year-old compared to 4-year-old plants, the dry matter produced per shoot apical meristem was equivalent in both plant groups due to an increased number of leaves per shoot in the former. It is concluded that (i) C. clusii plants maintain the capacity to rejuvenate for several years; (ii) newly emerged leaves accumulate higher amounts of abscisic acid during early stages of plant life, but the levels of this phytohormone later remain constant; and (iii) although plant aging leads to the production of smaller leaves, the amount of biomass produced per shoot apical meristem remains constant at advanced developmental stages.
机译:为了获得对多年生植物衰老的潜在机制的新见解,我们测量了地中海田间条件下生长的不同年龄的水仙(Cistus clusii Dunal)植物叶片中的脱落酸水平,生长和其他胁迫指标。将9年龄植物的最近出现的叶子与1年龄植物的叶子(从9年龄植物的插条中获得)进行比较,以评估分生组织衰老对植物衰老的影响。 the插的生根和成功建立使我们能够比较具有旧分生组织但大小不同的植物的生理学。从插条中获得的植物得以恢复生机,新叶显示出比9年生植物更高的叶面积和叶绿素含量,但每单位面积比的叶质量和内源性脱落酸水平较小。在1年,4年和9年龄植物中进行的一项比较研究表明,脱落酸水平在植物生命的早期阶段有所增加(在1年和4年龄植物之间增加了90%),但随后保持不变在高级发育阶段(4至9年龄植物之间)保持恒定。尽管9年生植物的叶片生物量比4年生植物少53%,但由于前者每枝的叶片数量增加,因此每枝顶生分生组织产生的干物质在两个植物组中均相等。结论是:(i)C. clusii植物保持了几年的恢复活力; (ii)在植物生命的早期阶段,新出现的叶子积累了大量的脱落酸,但是后来这种植物激素的水平保持不变; (iii)尽管植物衰老导致叶片较小,但每个茎尖分生组织产生的生物量在发育后期仍保持恒定。

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