Ho I, Below F E
Department of Agronomy, University of Illinois, Urbana, Illinois 61801.
Plant Physiol. 1989 Sep;91(1):85-90. doi: 10.1104/pp.91.1.85.
This study was undertaken to further clarify the relationship between seed development and monocarpic senescence of sunflower (Helianthus annuus L.). Field-grown plants with and without seedheads were evaluated for rate and duration of accumulation of dry weight, reduced N, and P by whole shoots, and for partitioning of these constituents within the individual plant parts. Concurrent with seedhead removal, [(15)N]nitrate was applied to the plants in a selected area of the experimental plot. Whole plants (above ground portions) were harvested seven times during the seed-filling period and analyzed for dry weight, reduced N, and P. Although seedhead removal depressed the rates of dry weight, reduced N, and P accumulation by whole shoots, it extended the duration of accumulation of these constituents, relative to headed control plants. As a result, the final whole shoot dry weight and N and P contents at seed maturity were similar for deheaded and headed plants. Seedhead removal also affected the partitioning of dry matter, reduced N, and P but the relative proportions varied as a function of constituent and growth stage. Analysis of (15)N present in whole shoots at physiological maturity showed that similar amounts of nitrate were absorbed during the postflowering period by headed and deheaded plants. These data indicate that the absence of seeds does not affect the total accumulation of dry matter, reduced N, or P, by sunflower plants, but does alter the rates of accumulation and partitioning of these constituents.
本研究旨在进一步阐明向日葵(Helianthus annuus L.)种子发育与单花衰老之间的关系。对有和没有花盘的田间种植植株,评估其全株干重、还原态氮和磷的积累速率及持续时间,以及这些成分在植株各部分的分配情况。在去除花盘的同时,在试验区选定区域给植株施用[15N]硝酸盐。在种子灌浆期对全株(地上部分)进行了7次收获,并分析其干重、还原态氮和磷。虽然去除花盘降低了全株干重、还原态氮和磷的积累速率,但相对于有花盘的对照植株,它延长了这些成分的积累持续时间。结果,去头和有头植株在种子成熟时的最终全株干重以及氮和磷含量相似。去除花盘还影响了干物质、还原态氮和磷的分配,但相对比例因成分和生长阶段而异。对生理成熟时全株中15N的分析表明,有花盘和去头植株在开花后时期吸收的硝酸盐量相似。这些数据表明,没有种子并不影响向日葵植株干物质、还原态氮或磷的总积累,但会改变这些成分的积累速率和分配情况。