a College of Horticulture , Sichuan Agricultural University , Chengdu , China.
b College of Agriculture and Biological Technology , Hexi University , Zhangye , China.
Int J Phytoremediation. 2019;21(5):503-508. doi: 10.1080/15226514.2018.1540544. Epub 2019 Jan 18.
The effects of mutual grafting on the cadmium (Cd) accumulation characteristics of two ecotypes (farmland and mining) of the potential Cd-hyperaccumulator Solanum photeinocarpum were studied through a pot experiment for one month. Four treatments were used in the experiment: ungrafted farmland ecotype (F-CK), ungrafted mining ecotype (M-CK), the farmland ecotype as the scion grafted onto rootstocks of the mining ecotype (F-Scion), and the mining ecotype as the scion grafted onto rootstocks of the farmland ecotype (M-Scion). Mutual grafting increased the rootstock biomass of both S. photeinocarpum ecotypes. However, mutual grafting decreased the scion biomass of F-Scion compared with F-CK and M-CK, and the scion biomass of M-Scion was higher than that of M-CK and lower than that of F-CK. The Cd content in the rootstock of M-Scion increased compared with F-CK, and the Cd content in the rootstock of F-Scion increased compared with M-CK, but mutual grafting decreased the Cd content in scions of both S. photeinocarpum ecotypes. Mutual grafting increased Cd extraction by rootstocks of both S. photeinocarpum ecotypes, but decreased extraction by scions. Therefore, mutual grafting can increase Cd accumulation in S. photeinocarpum rootstocks but not increase Cd accumulation in S. photeinocarpum scions in a short period.
通过一个月的盆栽实验,研究了相互嫁接对两种生态型(农田和矿区)潜在镉超积累植物茄(Solanum photeinocarpum)镉积累特性的影响。实验中使用了四种处理方法:未嫁接的农田生态型(F-CK)、未嫁接的矿区生态型(M-CK)、将农田生态型作为接穗嫁接到矿区生态型砧木上(F-Scion)和将矿区生态型作为接穗嫁接到农田生态型砧木上(M-Scion)。相互嫁接增加了两种茄生态型的砧木生物量。然而,与 F-CK 和 M-CK 相比,相互嫁接降低了 F-Scion 的接穗生物量,而 M-Scion 的接穗生物量高于 M-CK 但低于 F-CK。与 F-CK 相比,M-Scion 的根中 Cd 含量增加,而与 M-CK 相比,F-Scion 的根中 Cd 含量增加,但相互嫁接降低了两种茄生态型接穗中的 Cd 含量。相互嫁接增加了两种茄生态型砧木对 Cd 的提取,但降低了接穗的提取。因此,在短时间内,相互嫁接可以增加茄根中 Cd 的积累,但不能增加茄接穗中 Cd 的积累。