Wang Yu-Yun, Li Lan, Wang Rui-Xue, Tang Li, Zheng Yi
College of Resource and Environmental Science, Yunnan Agricultural University, Kunming 650201, China.
College of Tobacco, Yunnan Agricultural University, Kunming 650201, China.
Ying Yong Sheng Tai Xue Bao. 2020 Sep 15;31(9):3033-3039. doi: 10.13287/j.1001-9332.202009.029.
We examined the correlation between changes of root morphology and endogenous hormones in intercropping systems of wheat and faba bean under different phosphorus levels by hydroponics. Compared with monocropping wheat (MW), the intercropping of wheat and faba bean (W∥F) significantly increased root length of wheat, reduced root average diameter of wheat, and increased root surface area under the condition of 1/2P (low P) level. At the conventional phosphorus level, intercropping significantly reduced root average diameter of wheat, and increased root length and root surface area. Compared with monocropping faba bean (MF), W∥F significantly promoted the growth of faba bean root and increased root surface area of faba bean. At the level of 1/2P, intercropping significantly increased the content of auxin (IAA), abscisic acid (ABA), sali-cylic acid (SA) and jasmonic acid (JA). At the conventional phosphorus level, intercropping could significantly increase the content of IAA, ABA and JA in wheat root, while no significant difference in the SA content of wheat root between monocropping and intercropping wheat was found. Intercropping could increase the content of ABA and SA in faba bean roots, but did not affect IAA and JA contents of faba bean roots. There was no significant correlation between the contents of endogenous hormones (IAA, ABA, SA and JA) and root morphology (root length, root average diameter and root surface area) of wheat and faba bean roots in wheat or faba bean monocropping system. In wheat and faba bean intercropping system, there was a positive correlation between IAA contents of wheat and faba bean and their root length and root surface area. W∥F enhanced IAA of wheat and faba bean root, which was an important factor driving the change of root morphology in the intercropping system of wheat and faba bean.
通过水培法,我们研究了不同磷水平下小麦与蚕豆间作系统中根系形态变化与内源激素之间的相关性。与单作小麦(MW)相比,在1/2P(低磷)水平条件下,小麦与蚕豆间作(W∥F)显著增加了小麦的根长,减小了小麦的根平均直径,并增加了根表面积。在常规磷水平下,间作显著减小了小麦的根平均直径,并增加了根长和根表面积。与单作蚕豆(MF)相比,W∥F显著促进了蚕豆根系生长并增加了蚕豆的根表面积。在1/2P水平时,间作显著增加了生长素(IAA)、脱落酸(ABA)、水杨酸(SA)和茉莉酸(JA)的含量。在常规磷水平下,间作可显著增加小麦根中IAA、ABA和JA的含量,而单作小麦与间作小麦根中SA含量无显著差异。间作可增加蚕豆根中ABA和SA的含量,但不影响蚕豆根中IAA和JA的含量。在小麦或蚕豆单作系统中,小麦和蚕豆根中内源激素(IAA、ABA、SA和JA)含量与根系形态(根长、根平均直径和根表面积)之间无显著相关性。在小麦和蚕豆间作系统中,小麦和蚕豆的IAA含量与它们的根长和根表面积呈正相关。W∥F提高了小麦和蚕豆根中的IAA含量,这是驱动小麦与蚕豆间作系统中根系形态变化的重要因素。