鲁比斯科
光合作用
叶绿素荧光
光系统II
叶绿素
核酮糖
开枪
园艺
化学
叶绿素a
植物
生物
作者
Huan‐Xin Jiang,Ning Tang,Zheng Jin-gui,Yán Li,Li‐Song Chen
标识
DOI:10.1111/j.1399-3054.2009.01288.x
摘要
Limited data are available on the effects of phosphorus (P) and aluminum (Al) interactions on Citrus spp. growth and photosynthesis. Sour pummelo ( Citrus grandis ) seedlings were irrigated for 18 weeks with nutrient solution containing 50, 100, 250 and 500 μ M KH 2 PO 4 × 0 and 1.2 m M AlCl 3 · 6H 2 O. Thereafter, P and Al in roots, stems and leaves, and leaf chlorophyll (Chl), CO 2 assimilation, ribulose‐1,5‐bisphosphate carboxylase/oxygenase (Rubisco) and Chl a fluorescence (OJIP) transients were measured. Under Al stress, P increased root Al, but decreased stem and leaf Al. Shoot growth is more sensitive to Al than root growth, CO 2 assimilation and OJIP transients. Al decreased CO 2 assimilation, Rubisco activity and Chl content, whereas it increased or did not affect intercellular CO 2 concentration. Al affected CO 2 assimilation more than Rubisco and Chl under 250 and 500 μ M P. Al decreased root, stem and leaf P, leaf maximum quantum yield of primary photochemistry ( F v / F m ) and total performance index (PI tot,abs ), but increased leaf minimum fluorescence ( F o ), relative variable fluorescence at K‐ and I‐steps. P could alleviate Al‐induced increase or decrease for all these parameters. We conclude that P alleviated Al‐induced inhibition of growth and impairment of the whole photosynthetic electron transport chain from photosystem II (PSII) donor side up to the reduction of end acceptors of photosystem I (PSI), thus preventing photosynthesis inhibition through increasing Al immobilization in roots and P level in roots and shoots. Al‐induced impairment of the whole photosynthetic electron transport chain may be associated with growth inhibition.
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