Department of Agronomy, Cornell University, Ithaca, New York 14853.
Plant Physiol. 1985 Nov;79(3):852-5. doi: 10.1104/pp.79.3.852.
Apical florets of maize (Zea mays L.) ears differentiate later than basal florets and form kernels which have lower dry matter accumulation rates. The purpose of this study was to determine whether increasing the temperature of apical kernels during the dry matter accumulation period would alter the difference in growth rate between apical and basal kernels. Apical regions of field-grown maize (cultivar Cornell 175) ears were heated to 25 +/- 3 degrees C from 7 days after pollination to maturity (tip-heated ears) and compared with unheated ears (control). In controls, apical-kernel endosperm had 24% smaller dry weight at maturity, lower concentration of sucrose, and lower activity of ADP-Glc starch synthase than basal-kernel endosperm, whereas ADP-Glc-pyrophosphorylase (ADPG-PPase) activities were similar. In tip-heated ears apical-kernel endosperm had the same growth rate and final weight as basal-kernel endosperm and apical kernels had higher sucrose concentrations, higher ADP-Glc starch synthase activity, and similar ADPG-PPase activity. Total grain weight per ear was not increased by tip-heating because the increase in size of apical kernels was partially offset by a slight decrease in size of the basal- and middle-position kernels. Tip-heating hastened some of the developmental events in apical kernels. ADPG-PPase and ADP-Glc starch synthase activities reached peak levels and starch concentration began rising earlier in apical kernels. However, tip-heating did not shorten the period of starch accumulation in apical kernels. The results indicate that the lower growth rate and smaller size of apical kernels are not solely determined by differences in prepollination floret development.
玉米(Zea mays L.)穗子的顶生小花分化晚于基生小花,形成的籽粒干物质积累速率较低。本研究的目的是确定在干物质积累期提高顶生籽粒的温度是否会改变顶生和基生籽粒生长速率的差异。从授粉后 7 天到成熟(顶端加热穗子),将田间生长的玉米(康奈尔 175 品种)穗子的顶端区域加热到 25 +/- 3 摄氏度,并与未加热的穗子(对照)进行比较。在对照中,顶生籽粒胚乳在成熟时的干重小 24%,蔗糖浓度低,ADP-Glc 淀粉合酶活性低,而 ADP-Glc-焦磷酸化酶(ADPG-PPase)活性相似。在顶端加热的穗子中,顶生籽粒胚乳的生长速率和最终重量与基生籽粒胚乳相同,顶生籽粒的蔗糖浓度较高,ADP-Glc 淀粉合酶活性较高,ADPG-PPase 活性相似。由于顶生籽粒的增大部分被基生和中部位置籽粒的轻微减小所抵消,因此每穗总粒重并未因顶端加热而增加。顶端加热加速了顶生籽粒的一些发育事件。ADPG-PPase 和 ADP-Glc 淀粉合酶活性达到峰值水平,顶生籽粒中的淀粉浓度更早开始上升。然而,顶端加热并没有缩短顶生籽粒中淀粉积累的时间。结果表明,顶生籽粒生长速率较低和体积较小不仅仅取决于授粉前小花发育的差异。