钾素水平对网纹甜瓜叶片光合特性及叶绿体亚显微结构的影响  被引量:10

Effects of potassium level on photosynthetic characteristics and chloroplast submicroscopic structure of muskmelon leaves.

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作  者:林多[1] 黄丹枫[1] 杨延杰[2] 陈宁[2] 

机构地区:[1]上海交通大学农业与生物学院,上海201101 [2]莱阳农学院园艺系,山东青岛266109

出  处:《应用生态学报》2007年第5期1066-1070,共5页Chinese Journal of Applied Ecology

基  金:国家"863"重大资助项目(2006AA10A311).

摘  要:在设施基质栽培条件下,研究了营养液中120、240及360 mg.L-13个钾素水平对网纹甜瓜‘甜甜1号’叶片光合特性及叶绿体亚显微结构的影响.结果表明,营养液中钾素水平过低(120 mg.L-1)或过高(360 mg.L-1)均导致网纹甜瓜叶片净光合速率下降,使叶绿体片层结构混乱、变形和片层数减少,但对CO2补偿点(70μl.L-1)、饱和CO2(600μl.L-1)、光补偿点(50μmol.m-2.s-1)无显著影响.适宜的钾素水平能显著提高叶片的饱和光强、羧化效率和表观量子效率,3个指标分别为1 200μmol.m-2.s-1、0.1364和0.0237.在试验条件下,提高温室内基质栽培网纹甜瓜叶片光合效率的最适钾素水平为240 mg.L-1.With soiUess culture in greenhouse, this paper studied the effects of three potassium (K) levels (120, 240, and 360 mg · L^-1) on the photosynthetic characteristics and chloroplast submicroscopic structure of muskmelon cv. ‘ Tiantian No. 1 ' leaves. The resuhs showed that at low (120 mg · L^-1) and high (360 mg · L^-1) K levels, the net photosynthetic rate (P,) decreased, chloroplast lamellar structure disordered, and lamella number decreased. No significant effects were observed on CO2 compensation point (70 μl · L^-l ) , saturation CO2 for photosynthesis (600μl · L^-1 ) and light compensation point (50μmol· m^-2 ·s^-1 ) at the three K levels. The saturation light for photosynthesis, carboxylation efficiency and apparent quantum yield at 240 mg · L^ -1 K level were significantly higher, being 1 200 μmol·m^-2 · s^-1, 0. 1364 and 0. 0237, respectively. Under the conditions of this study, the optimal K level in the nutrient solution for muskmelon soilless culture was 240 mg · L^-1.

关 键 词:网纹甜瓜 钾素水平 光合特性 叶绿体亚显微结构 基质栽培 

分 类 号:S652[农业科学—果树学]

 

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