5个早实核桃品种枝条的低温生理响应与抗寒性评价

Evaluation of cold resistance and physiological responses to low temperature in branches of five early-fruiting walnut varieties

  • 摘要:
    目的 为评价新疆5个早实核桃品种的抗寒性,以‘新新2号’‘新温81号’‘温185’‘扎343号’和‘新早丰’的一年生核桃枝条为试验材料,测定不同低温处理对其生理指标的影响,为核桃的抗寒性研究提供参考。
    方法 采用人工模拟自然降温的试验方法,对5个品种休眠期的枝条进行低温(−10、−15、−20、−25、−30 ℃)胁迫处理,并测定处理过程中的电导率、相对电导率、可溶性糖含量、丙二醛含量、含水量、萌芽率、过氧化氢酶活性、过氧化物酶活性、脯氨酸含量等11个生理指标,并采用隶属函数法对5个品种的抗寒性进行综合评价。
    结果 随着处理温度的降低与处理时间的增加,5个品种电导率、相对电导率、可溶性糖含量与丙二醛含量均表现为不断上升的趋势,含水量与萌芽率则表现为不断下降的趋势,过氧化物酶活性、过氧化物酶活性与脯氨酸含量则表现为先上升后下降的趋势,超氧化物歧化酶活性与可溶性蛋白质含量则呈“S”型变化趋势。
    结论 ‘温185’抗寒性最优,而‘新温81号’抗寒性最差,低温耐受性排名‘温185’ > ‘扎343号’ > ‘新新2号’ > ‘新早丰’ > ‘新温81号’。这些发现有助于深入理解核桃应对低温逆境的生理机制,可为新疆早实核桃抗寒性育种提供理论支持。

     

    Abstract:
    Objective In order to evaluate the cold resistance of five early fruiting walnut varieties in Xinjiang, the annual walnut shoots of 'Xinxin 2', 'Wen 81', 'Wen 185', 'Zha343' and 'Xinzaofeng' were used as experimental materials to determine the effects of different low temperature treatments on their physiological indexes, so as to provide a reference for the study of cold resistance of walnut.
    Methods Using artificial simulation of natural cooling, 5 varieties of dormant branches were subjected to low temperature (−10, −15, −20, −25, −30 ℃) stress treatment. Eleven physiological indexes, such as electrical conductivity, relative electrical conductivity, soluble sugar content, malondialdehyde content, water content, germination rate, catalase activity, peroxidase activity and proline content, were measured during the treatment.
    Results With the decrease of treatment temperature and the increase of treatment time, the conductivity, relative conductivity, soluble sugar content, and malondialdehyde content showed a gradually increasing trend, while the water content and germination rate showed a gradually decreasing trend. Catalase activity, peroxidase activity, and proline content showed an increasing trend followed by a decreasing trend, while superoxide dismutase activity and soluble protein content showed an S-shaped curve change trend.
    Conclusion 'Wen 185' had the best cold resistance, while 'Wen 81' had the worst cold resistance, and the low temperature tolerance ranking was: 'Wen 185' > 'Zha 343' > 'Xin Xin 2' > 'Xin Zhaofeng' > 'Wen 81'. These findings are helpful to further understand the physiological mechanism of walnut coping with low temperature stress, and can provide theoretical support for the breeding of cold resistance in Xinjiang early-bearing walnut.

     

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