Department of Botany, University of Rhode Island, Kingston, Rhode Island 02881.
Plant Physiol. 1987 Feb;83(2):254-8. doi: 10.1104/pp.83.2.254.
Lateral roots of intact summer squash seedlings (Cucurbita pepo L.) were used to quantify the effects of boron deficiency on DNA synthesis, protein synthesis, and respiration. The temporal relationship between changes in these metabolic activities and the cessation of root elongation caused by boron deprivation was determined. Transferring 5-day-old squash seedlings to a hydroponic culture medium without boron for 6 hours resulted in a 62% reduction in net root elongation and a 30% decrease in the incorporation of [(3)H]thymidine into DNA by root tips (apical 5-millimeter segments). At this time, root tips from both boron-deficient and boron-sufficient plants exhibited nearly identical rates of incorporation of [(14)C]leucine into protein and respiration as measured by O(2) consumption. After an additional 6 hours of boron deprivation, root elongation had nearly ceased. Concomitantly, DNA synthesis in root apices was 66% less than in the boron-sufficient control plants and protein synthesis was reduced 43%. O(2) consumption remained the same for both treatments. The decline and eventual cessation of root elongation correlated temporally with the decrease in DNA synthesis, but preceded changes in protein synthesis and respiration. These results suggest that boron is required for continued DNA synthesis and cell division in root meristems.
完整的夏季南瓜( Cucurbita pepo L. )幼苗的侧根被用来定量研究硼缺乏对 DNA 合成、蛋白质合成和呼吸作用的影响。确定了这些代谢活性的变化与硼剥夺导致的根伸长停止之间的时间关系。将 5 天大的南瓜幼苗转移到不含硼的水培培养基中 6 小时,导致净根伸长减少 62%,根尖(顶端 5 毫米段)中 [(3)H]胸苷掺入 DNA 的量减少 30%。此时,来自硼缺乏和硼充足植物的根尖表现出几乎相同的 [(14)C]亮氨酸掺入蛋白质和呼吸作用的速率,如通过 O2 消耗来测量。在另外 6 小时的硼剥夺后,根伸长几乎停止。同时,根尖的 DNA 合成比硼充足的对照植物少 66%,蛋白质合成减少 43%。两种处理的 O2 消耗保持不变。根伸长的下降和最终停止与 DNA 合成的减少在时间上相关,但先于蛋白质合成和呼吸作用的变化。这些结果表明,硼是根尖中持续的 DNA 合成和细胞分裂所必需的。