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低温胁迫对嫁接苦瓜幼苗抗氧化系统的影响
引用本文:王佳楠,商桑,田丽波,周萌萌,潘琼玉,邹凯茜,杜卓涛.低温胁迫对嫁接苦瓜幼苗抗氧化系统的影响[J].热带作物学报,2018,39(2):237-245.
作者姓名:王佳楠  商桑  田丽波  周萌萌  潘琼玉  邹凯茜  杜卓涛
作者单位:海南大学热带农林学院
摘    要:为研究低温胁迫对嫁接苦瓜幼苗生长及活性氧代谢系统的影响,以翠柳2号苦瓜为接穗,以苦砧2号(黄籽南瓜)和中原共荣(白籽南瓜)为砧木,利用靠接法进行嫁接,在人工气候箱内模拟低温胁迫条件,并对嫁接苦瓜幼苗的冷害指数和抗氧化系统的生理生化物质活性或含量进行测定。结果显示:在低温环境中,苦瓜嫁接苗与自根苗冷害指数以及抗氧化系统相关指标都会受到显著的影响。低温胁迫处理苦瓜自根苗的冷害指数显著升高,苦瓜嫁接幼苗冷害指数显著低于自根苗,说明嫁接可以显著提高苦瓜幼苗的对低温的耐受力。嫁接苗抗氧化酶活性以及抗氧化物质含量明显高于自根苗,而丙二醛(MDA)含量、过氧化氢(H2O2)以及超氧阴离子(O2*-)的产生速率则显著低于自根苗,该结果说明嫁接能够降低低温胁迫所引起的活性氧积累和膜质过氧化对细胞膜造成的损伤。研究表明,低温胁迫下,苦瓜嫁接幼苗的抗氧化酶、抗氧化剂含量提高,可以维持AsA-GSH循环系统稳定性,降低了H2O2、MDA的累积以及产生速率,从而减轻活性氧对苦瓜幼苗的伤害,保护细胞膜结构的稳定性,增强了苦瓜幼苗的抗低温能力。

关 键 词:低温胁迫  嫁接  苦瓜  抗氧化系统  

Effects of Low Temperature Stress on Antioxidant System of Grafted Bitter Gourd Seedlings
WANG Jianan,SHANG Sang,TIAN Libo,ZHOU Mengmeng,PAN Qiongyu,ZOU Kaixi,DU Zhuotao.Effects of Low Temperature Stress on Antioxidant System of Grafted Bitter Gourd Seedlings[J].Chinese Journal of Tropical Crops,2018,39(2):237-245.
Authors:WANG Jianan  SHANG Sang  TIAN Libo  ZHOU Mengmeng  PAN Qiongyu  ZOU Kaixi  DU Zhuotao
Institution:College of Tropical Agriculture and Forestry, Hainan University
Abstract:In order to study the effects of low temperature stress on the growth and active oxygen metabolism of    grafted bitter gourd seedlings, Chui-liu 2 bitter gourd scions were grafted to Bitter Anvil 2 (yellow seed pumpkin)  and Zhongyuan co-prosperity  (white seed pumpkin) rootstocks The results showed that the cold injury index  and  the antioxidant system -related indexes of the grafted seedlings and the self -rooted seedlings  were  significantly  affected in the low temperature environment. The  chilling  injury  index  of bitter gourd treated by  low  temperature  was the highest, which indicated that grafting could effectively improve the tolerability of bitter to low temperature.    But the MDA,H2O2, and were the lowest than those of  the  self -rooted  seedlings.  The  results  showed  that  the  content of antioxidant enzymes and antioxidant activities were significantly  higher  than  those  of  self -rooted  seedlings under low temperature stress. Studies showed that under low temperature, the antioxidant enzymes and antioxidants in the grafted seedlings of Balsam pear increased tomaintain the stability  of  AsA -GSH  circulatory  system, and the accumulation of H2O2, MDA and the increase ofproduction rate reduced to alleviate the damage of reactive oxygen species to bitter gourd seedlings, and to protect the stability of cell membrane,  and enhance  the     ability to resist low temperature.
Keywords:low temperature stress  grafting  bitter gourd  antioxidant system  
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