Li Dong-Mei, Zhang Hai-Sen, Tan Qiu-Ping, Li Ling, Yu Qin, Gao Dong-Sheng
National Research Center for Apple Engineering and Technology, College of Horticulture Science and Engineering, Shandong Agricultural University, Tai' an 271018, Shandong, China.
Ying Yong Sheng Tai Xue Bao. 2011 Nov;22(11):2849-54.
Taking the nectarine variety 'Shuguang' (Prunus persica var. nectariana cv. Shuguang) as test material, and by using respiration inhibitors KCN and SHAM, this paper studied the cytochrome electron transport pathway and the alternative respiration pathway in nectarine flower bud during dormancy induction under the effects of short sunlight. Both the total respiration rate (V(t)) and the cytochrome electron transport pathway respiration rate (rho' V(cyt)) presented double hump-shaped variation. Short sunlight brought the first-hump of V(t) and rho' V(cyt), forward and delayed the second-hump synchronously, inhibited the rho' V(cyt), but had no significant effects on the V(t). The capacity (V(alt)) and activity (rho V (alt)) of alternative respiration pathway also varied in double hump-shape, and the variation was basically in synchronous. Short sunlight made the first climax of V(alt) and rhoV(alt) advanced, but had little effects on the later period climax. The inhibition of cytochrome electron transport pathway and the enhancement of alternative respiration pathway were the important features of nectarine flower bud during dormancy induction, and according to the respective contributions of the two electron transport pathways to the total respiration rate, the cytochrome electron transport pathway was still the main pathway of electron transport, whereas the alternative respiration pathway played an auxiliary and branched role.
以油桃品种‘曙光’(Prunus persica var. nectariana cv. Shuguang)为试材,利用呼吸抑制剂KCN和SHAM,研究了短日照处理下油桃花芽休眠诱导过程中的细胞色素电子传递途径和交替呼吸途径。总呼吸速率(V(t))和细胞色素电子传递途径呼吸速率(rho' V(cyt))均呈双峰形变化。短日照使V(t)和rho' V(cyt)的第一个峰提前,同时使第二个峰延迟,抑制了rho' V(cyt),但对V(t)无显著影响。交替呼吸途径的容量(V(alt))和活性(rho V (alt))也呈双峰形变化,且变化基本同步。短日照使V(alt)和rhoV(alt)的第一个高峰提前,但对后期高峰影响较小。细胞色素电子传递途径的抑制和交替呼吸途径的增强是油桃花芽休眠诱导过程中的重要特征,根据两条电子传递途径对总呼吸速率的各自贡献,细胞色素电子传递途径仍是主要的电子传递途径,而交替呼吸途径起辅助和分支作用。