Dakora Felix D, Nelwamondo Aziwe
Research Development, Cape Technikon, District Six, Keizersgracht, PO Box 652, Cape Town 8000, South Africa. Corresponding author; email:
Research Development, Cape Technikon, District Six, Keizersgracht, PO Box 652, Cape Town 8000, South Africa.
Funct Plant Biol. 2003 Oct;30(9):947-953. doi: 10.1071/FP02161.
Application of metasilicic acid (0, 0.04, 0.08, 0.20, 0.40 or 0.80 g L) to hydroponically-grown, Bradyrhizobium-infected cowpea [Vigna unguiculata (L.) Walp.] plants showed an increased assimilation of silicon into roots and shoots, which triggered a significant (P<0.05) promotion of root growth, but not shoot growth. Root : shoot ratio therefore, increased markedly (P<0.05) with higher metasilicate application. Mechanical strength of stems and peduncles also increased significantly (P<0.05) with silicon nutrition compared with control plants receiving no metasilicate. But the mechanical strength of roots was not affected. Radioimmunoassay of lateral roots, free of nodules, from plants fed metasilicate revealed markedly (P<0.05) increased concentrations of endogenous ABA, a hormonal signal that stimulates root growth. In contrast, a decreasing concentration of the cytokinin zeatin ribose was obtained with increasing metasilicate supply. These data show that silicon nutrition in symbiotic cowpea promotes an increase in mechanical strength of stems, which bear the entire weight of shoots, and peduncles, which, in turn, support weighty reproductive structures including developing pods and seeds. The increased concentration of ABA in roots as a result of improved silicon nutrition suggests that this element might be an elicitor of ABA biosynthesis and / or its accumulation, which then affected lateral root growth in this study.
将偏硅酸(0、0.04、0.08、0.20、0.40或0.80 g/L)施用于水培种植、感染慢生根瘤菌的豇豆[Vigna unguiculata (L.) Walp.]植株,结果显示植株根和地上部分对硅的吸收增加,这引发了根系生长的显著促进(P<0.05),但地上部分生长未受促进。因此,随着偏硅酸盐施用量增加,根冠比显著增加(P<0.05)。与未施用偏硅酸盐的对照植株相比,硅营养处理也显著提高了茎和花梗的机械强度(P<0.05)。但根系的机械强度未受影响。对施用偏硅酸盐植株不含根瘤的侧根进行放射免疫分析显示,内源脱落酸(ABA)浓度显著增加(P<0.05),ABA是一种刺激根系生长的激素信号。相反,随着偏硅酸盐供应增加,细胞分裂素玉米素核糖的浓度降低。这些数据表明,共生豇豆中的硅营养促进了茎(承担地上部分全部重量)和花梗(依次支撑包括发育中的豆荚和种子在内的沉重生殖结构)机械强度的增加。由于硅营养改善导致根系中ABA浓度增加,表明该元素可能是ABA生物合成和/或其积累的诱导因子,进而在本研究中影响侧根生长。