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低温胁迫下增施锌肥对水稻氮代谢与干物质积累的影响
引用本文:刘智蕾,苏锦铠,孟静柔,李鹏飞,宋佳媚,张昊楠,陈志豪,于彩莲,袁英才,彭显龙. 低温胁迫下增施锌肥对水稻氮代谢与干物质积累的影响[J]. 植物营养与肥料学报, 2022, 28(1): 15-22. DOI: 10.11674/zwyf.2021288
作者姓名:刘智蕾  苏锦铠  孟静柔  李鹏飞  宋佳媚  张昊楠  陈志豪  于彩莲  袁英才  彭显龙
作者单位:1.东北农业大学,黑龙江哈尔滨 150030
基金项目:黑龙江省高校青年创新人才(UNPYSCT-2018171)资助。
摘    要:[目的]施锌是缓解低温胁迫对水稻伤害的有效途径之一,低温胁迫下研究增加施锌量对水稻氮代谢与物质积累的影响,为低温年提高水稻抗低温能力提供理论依据.[方法]采用三叶一心期水稻幼苗进行水培试验,设置低(Zn?0.08?μmol/L)、常规(Zn?0.15?μmol/L)、高(Zn?0.30?μmol/L)?3个ZnSO4·...

关 键 词:水稻  低温抗性    根系活力  氮代谢  干重
收稿时间:2021-05-31

Effect of increasing zinc application on rice nitrogen metabolism and dry matter accumulation under low temperature stress
LIU Zhi-lei,SU Jin-kai,MENG Jing-rou,LI Peng-fei,SONG Jia-mei,ZHANG Hao-nan,CHEN Zhi-hao,YU Cai-lian,YUAN Ying-cai,PENG Xian-long. Effect of increasing zinc application on rice nitrogen metabolism and dry matter accumulation under low temperature stress[J]. Plant Nutrition and Fertilizer Science, 2022, 28(1): 15-22. DOI: 10.11674/zwyf.2021288
Authors:LIU Zhi-lei  SU Jin-kai  MENG Jing-rou  LI Peng-fei  SONG Jia-mei  ZHANG Hao-nan  CHEN Zhi-hao  YU Cai-lian  YUAN Ying-cai  PENG Xian-long
Affiliation:1.Northeast Agricultural University, Harbin, Heilongjiang 150030, China
Abstract:  【Objectives】  Zinc (Zn) has been proved of enhancing rice growth and resistance to low temperature stress. We studied the potential of increasing Zn supply to alleviate low temperature damage on rice during vegetative period.  【Methods】  A hydroponic culture experiment was conducted using 3-leaves-1-heart leaf rice seedlings inside growth chamber. ZnSO4·7H2O concentrations of 0.08, 0.15, and 0.30 μmol/L were set up to represent low, conventional and high Zn application levels. When the rice seedlings grew to 5 leaves-1-heart leaf stage, they were subjected to low and regular temperatures (12℃ and 20℃) for 7 days, then harvested for analysis of dry matter, Zn and N content, root vitality, and indexes of N metabolism.   【Results】  Compared to regular temperature, low temperature significantly reduced the total and active absorption area and oxidizing ability of rice root, decreased N and Zn uptake, and then decreased rice tiller number by 22.86% (P < 0.05), shoot and root dry matter by 33.60% (P < 0.05) and 28.42% (P < 0.05), respectively. Under low temperature, high Zn treatment significantly increased the total and active absorption area, and oxidizing capacity of root, although the rice tillering and shoot dry matter under high Zn treatment were not as high as regular temperature, but were significantly higher than the conventional Zn treatment. Compared with conventional Zn treatment, high Zn under low temperature significantly increased Zn concentration, the nitrate reductase (NR) and glutamine synthetase (GS) activities, the shoot and root N accumulation. Meanwhile, high Zn increased the rice leaf antioxidant enzymes activities and decreased the malondialdehyde concentration by 26.39% (P < 0.05). Under low temperature, rice root Zn concentration decreased significantly, the GS activity and N concentration decreased by 17.65% and 4.78% (P < 0.05), respectively.  【Conclusions】  Increasing Zn supply level during rice seedling stage could increase the root vigor, improve Zn absorption, enhance N metabolism, and then promote nutrients and dry matter accumulation, thus effectively alleviate the possible low temperature damage happened in vegetative stages.
Keywords:rice  low temperature tolerance  zinc  root vigor  nitrogen metabolism  dry matter
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