Effects of Indole Acetic Acid ( IAA) on the Negative Phototropism of Rice Root 生长素在水稻根负向光性反应中的作用
The negative phototropism of rice root had nothing to do with the upper part of rice, when the upper part of rice was cut, the root can show the characteristics of negative phototropism with little influence. 稻根负向光性与地上部分的生长无关,在将地上部分切除后,地上部分仍然能够表现出负向光性反应的特性。
Rice root could resume the characteristic of negative phototropism when the new root cap grew up, if the original cells of root cap were well protected while root cap was divested. 剥除根冠而保留根尖的分生区和伸长区时,根能生长但失去负向光性,保留根冠的原始细胞时,当根冠重新长出时,又恢复负向光性生长。
Negative Phototropism of Rice Root and Its Influencing Factors 水稻根的负向光性及其影响因素
It suggested that the blue light receptor might be the photoreceptor for the negative phototropism in rice root. 推测稻根负向光性的光受体可能为蓝光受体。
If root cap was shaded when the root was irradiated, the root showed no negative phototropism'And the root lost the characteristics of negative phototropism when root cap was divested completely. 对根冠遮光而给根尖其他部分照光时,稻根不发生负向光性反应。
Our research use "Yangdaoliuhao" as the material and adopted water-culture and air-culture method to explore the influence of environmental factors such as light, temperature, water, hormones and chemical factors on the growth and development and negative phototropism of rice root. 本研究以扬稻6号为实验材料,应用水培法和气培法开展光照、温度、水分、激素和化学因素等环境因子对稻根生长发育和负向光性的研究。
These results provide evidence for the molecular mechanism of development of peanut fruit-needle and pod, also provide new clues for the study of regulatory mechanism of physiological phenomena, such as plant gravitropism, negative phototropism and thigmotropism. 这些结果为进一步认识花生果针与荚果发育的分子调控机制提供证据,同时也为研究植物向重力性、负向光性、向触性等生理现象的调控机制提供新线索。