摘要
在有氧条件下,脓青素可以缓解强光对菠菜叶绿体电子传递的抑制作用。加入解联剂尼日利亚菌素消除跨膜质子梯度会加剧叶绿体的光抑制,但脓青素的保护作用并不消失。脓青素对光系统Ⅰ与光系统Ⅱ均表现出保护作用,但对PSⅡ的保护在光抑制初期较明显;在厌氧条件下,脓青素加剧叶绿体的光抑制,引起DCIP光还原与水到p-BQ电子传递活力的降低。推测脓青素可能通过促进细胞色素b559介导的PSⅡ循环电子传递,减轻了叶绿体的光抑制。
Under aerobic conditions, pyocyanine alleviated strong-light-inducedinhibition of electron transport inspinach chloroplasts (Fig. 1 ). Althoughnigericin, an uncoupler eliminatingtransmembrane proton gradient, aggravated photoinhibition, it did not abolishthe protective effect of pyocyanine(Fig. 3 ). Pyocyanine could protectboth photosystem Ⅰ and photosystemⅡ, but the protection of photosystemⅡ was observbed only at the earlystage of photoinhibition (Fig. 6 ). Under anaerobic conditions, pyocyanineaggravated photoinhibition in chloroplasts and lowered the activity of DCIPphotoreduction (Fig. 7) and the rate ofelectron transport from water to P-BQ(Fig. 8). We assume that pyocyaninealleviates photoinhibition in chloroplastsby promoting cyclic electron transportaround photosystem Ⅱ mediated by cytochrome b559.
基金
国家自然科学重点基金
中国科学院上海植物生理研究所所长择优基金
关键词
叶绿体
光抑制
脓青素
菠菜
photoinhibition, pyocyanine, protection,photosystem Ⅱ cyclic electron transport, spinach