黄连木雌雄叶片内源激素及过氧化物酶同工酶含量的研究

Liyuan Ma, G. Qi, B. Li, Suping Guo, Xue-mei Zhang, Lijuan Shi, Lili dong, Xi-Xing Liu
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引用次数: 1

摘要

为揭示黄合木雌雄植株生理差异,测定了黄合木雌雄植株叶片和叶柄中赤霉素(GA3)、脱落酸(ABA)、吲哚-3-乙酸(IAA)、亚精胺(Spd)、精胺(Spm)、腐胺(Put)和过氧化物酶同工酶的含量。雌株和雄株GA3含量在10月8日分别达到最大值100.9 μg/ FW和92.9 μg/ FW, 6 ~ 9月间差异极显著。雄株叶片ABA含量高于雌株,且在5月21日和7月8日表现出极显著差异,在5月21日分别达到最小值222.0 ng/g FW和340.1 ng/g FW。雄株叶片IAA含量高于雌株,9月8日雌株和雄株IAA含量最高,分别达到984.8 ng/g FW和1000.6 ng/g FW, 8月8日差异极显著。7 ~ 9月雌株叶片GA3/ABA比值极显著高于雄株,在9月8日达到最大差值42.8。5月21日雌雄植株叶片IAA/ABA差异最大值为0.54。雌株和雄株中Spd含量在7月份分别达到最大值47.9 μg/ FW和42.8 μg/ FW,差异显著或极显著。雄性植株叶片Spm含量高于雌性植株,10月8日差异极显著,分别达到最大值24.3 μg/ FW和34.5 μg/ FW。除5月21日外,雄性植株叶片Put含量均低于雌性植株,且差异显著或极显著,9月8日最高,分别为156.0 μg/g FW和135.1 μg/g FW。雌雄叶片和叶柄的过氧化物酶同工酶含量差异显著。雌性植株叶片的过氧化物酶同工酶条带为POD-1、POD-2、POD-3、POD-4和POD-5,雄性植株叶片的过氧化物酶同工酶条带为POD-2、POD-3、POD-4和POD-5。雌性植株叶柄上的过氧化物酶同工酶条带为POD-1′、POD-3′、POD-4′和POD-5′,雄性植株叶柄上的过氧化物酶同工酶条带为POD-2′、POD-4′和POD-5′。其中,POD-1为雌性植物叶片的特有带,POD-1′和POD-3′为雌性植物叶柄的特有带,POD-2′为雄性植物叶柄的特有带。综上所述,叶片ABA、IAA、Spd、Spm和Put含量与柽柳性别有关,叶片和叶柄过氧化物酶同工酶带是判别柽柳性别的有效指标。
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Content of Endogenous Phytohormones and Isoenzymes of Peroxidase in Male and Female Pistacia chinensis Plants Bunge Leaves
To reveal the physiology differences in male and female plants of Pistacia chinensis Bunge,the contents of gibberellin(GA3),abscisic acid(ABA),indole-3-aceticacid(IAA),spermidine(Spd),spermine(Spm),putrescine(Put) and peroxidase isoenzyme in the leaves and petioles of male and female plants were determined.The contents of GA3 in female and male plants reached maximum values of 100.9 μg/g FW and 92.9 μg/g FW,respectively,on October 8,and showed very significant differences from June to September.The leaf ABA contents in male plants were higher than that in female plants,and showed very significant differences on May 21 and July 8,and reached minimum values of 222.0 ng/g FW and 340.1 ng/g FW,respectively,on May 21.The leaf IAA contents in male plants were higher than that in female plants,with the contents in female and male maximum values of 984.8 ng/g FW and 1000.6 ng/g FW,respectively,reached on September 8,and very significant differences exhibited on August 8.The ratios of leaf GA3/ABA in female plants were very significantly higher than that in male plants from July to September,and reached a maximum difference value of 42.8 on September 8.The maximum difference value of leaf IAA/ABA in male and female plants was 0.54 on May 21.The contents of Spd in female and male plants reached maximum values of 47.9 μg/g FW and 42.8 μg/g FW,respectively,in July,and there existed significant or very significant differences.The leaf Spm contents in male plants were higher than that in female plants,showing very significant differences on October 8 and reaching maximum values of 24.3 μg/g FW and 34.5 μg/g FW,respectively.The leaf Put contents in male plants were lower than that in female plants,with significant or very significant differences observed(except on May 21),and maximum values of 156.0 μg/g FW and 135.1 μg/g FW,respectively,on September 8.Significant differences were observed in peroxidase isoenzymes among male and female leaves and petioles.The peroxidase isoenzyme bands in female plant leaves were POD-1,POD-2,POD-3,POD-4,and POD-5,but the male plants bands were POD-2,POD-3,POD-4,and POD-5.The peroxidase isoenzyme bands in female plant petioles were POD-1',POD-3',POD-4',and POD-5',but the male plant bands were POD-2',POD-4',and POD-5'.The POD-1 was the endemic band in female plants leaves;POD-1' and POD-3' were the endemic bands in female plant petioles,and POD-2' was the endemic band in male plant petioles.From the above trial,we obtained the conclusions that the leaf ABA,IAA,Spd,Spm and Put contents were related to P.chinensis Bunge sex,and the peroxidase isoenzyme bands in leaves and petioles were the efficiency index to identify sex of P.chinensis Bunge.
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