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Effects of aluminium on photosynthetic performance in Al-sensitive and Al-tolerant maize inbred lines

机译:铝对铝敏感和耐铝玉米自交系光合性能的影响

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摘要

Maize plant inbred lines, one Al-sensitive (B-73) and two Al-tolerant (F-2 and L-2039), were grown hydroponically in the presence of 200 µM Al. After 13 d of growth, root and shoot lengths, photosystem 2 (PS2) activity, chlorophyll (Chl) content, 5-aminolevulinic acid (5-ALA) synthesis rate, chlorophyllase (Chlase) activity, and N, Mg, Fe, and Mn contents in leaves were determined. PS2 activity and Chl content were most severely affected by Al in B-73, but F-2 was almost unaffected. This was in accordance with Al-accumulation in the plants. The observed changes in B-73 coincided with 5-ALA synthesis inhibition, Chlase activation, and leaf deprivation of Fe and Mg. In Al-treated L-2039 plants, the leaf Mg and Mn contents were decreased. Also, an excessive Chlase activation was found in Al-treated L-2039, without a substantial Chl loss. This may indicate the activation of different enzyme pools in tolerant and sensitive genotypes under low-stress conditions.
机译:玉米植物自交系,一种对铝敏感的(B-73)和两种对铝耐受的(F-2和L-2039),在200 µM Al的存在下水培。生长13天后,根和茎长,光系统2(PS2)活性,叶绿素(Chl)含量,5-氨基乙酰丙酸(5-ALA)合成速率,叶绿素酶(Chlase)活性以及N,Mg,Fe和测定叶片中的Mn含量。 B-73中的Al对PS2活性和Chl含量的影响最大,但F-2几乎不受影响。这与植物中铝的积累一致。 B-73的观察到的变化与5-ALA合成抑制,纤维素酶活化以及铁和镁的叶剥夺相吻合。在铝处理的L-2039植物中,叶片的Mg和Mn含量降低。而且,在经铝处理的L-2039中发现过分的纤维素酶活化,而没有大量的氯离子损失。这可能表明在低压力条件下耐受和敏感基因型中不同酶库的激活。

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