CAO Yang,LIANG Suoxing,HOU Dongmei,et al.Evaluation of Shoot Characteristics and Cold Resistance of Six Hybrid Hazelnut Varieties During Natural Overwintering[J].Northern Horticulture,2021,(24):32-38.[doi:10.11937/bfyy.20210922]
六个平欧杂交榛品种自然越冬过程中枝条特性与抗寒性评价
- Title:
- Evaluation of Shoot Characteristics and Cold Resistance of Six Hybrid Hazelnut Varieties During Natural Overwintering
- Keywords:
- hybrid hazelnut; osmotic regulators; protective enzyme activity; cold resistance evaluation; extraction rate
- 文献标志码:
- A
- 摘要:
- 以‘平欧28号’‘达维’‘玉坠’‘辽榛 8 号’‘B-21’和‘85-124’等6个品种的一年生枝条为试材,采用田间调查的方法,在山西地区植物越冬期即2019年12月至2020年2月,测定渗透调节物质含量和保护酶活性以及田间抽条率调查,研究了越冬期各品种枝条的生理变化和抗寒性,以期推动平欧杂交榛在山西地区新品种选育和规模化栽培的科学发展。结果表明:在山西地区自然越冬期,平欧杂交榛枝条中丙二醛(MDA)、可溶性蛋白质、可溶性糖含量均呈先上升后下降的趋势;过氧化物酶(POD)活性和超氧化物歧化酶(SOD)活性均呈下降趋势;‘达维’和‘平欧28号’抽条率为0%,‘85-124’抽条率最高;‘达维’在越冬期间除MDA含量最低外,其它各项生理指标均最高;‘85-124’则与其相反。对6个品种进行抗寒评价,其抗寒性由强到弱依次为‘达维’>‘平欧28号’>‘B-21’>玉坠>‘辽榛8号’>‘85-124’。
- Abstract:
- One-year-old shoot of six varieties, ‘Ping′ou 28’ ‘Dawei’‘Yuzhui’‘Liaozhen 8’‘B-21’and ‘85-124’ were used as test materials.The contents of osmotic adjustment substances,activities of protective enzymes and the percentage of field cuttings were measured during the overwintering period from December 2020 to February 2019 in Shanxi Province,in order to promote the scientific development of hybrid hazelnut breeding and large-scale cultivation in Shanxi Province.The results showed that the contents of MDA,soluble protein and soluble sugar in hybrid Corylus heterophylla cv.‘Ping′ou’ were increased firstly and then decreased,and the activities of POD and SOD were decreased ‘Dawei’ and ‘Ping′ou 28’ had 0%,and ‘85-124’ had the highest percentage,and ‘Dawei’ had the highest percentage of all physiological indexes except the lowest MDA content,while ‘85-124’ had the opposite.The cold resistance of 6 varieties was evaluated,the order from strong to weak was ‘Dawei’>‘Ping′ou 28’>‘B-21’>‘Yuzhui’>‘Liaozhen 8’>‘85-124’.
参考文献/References:
[1]梁维坚,董德芬.大果榛子育种与栽培[M].北京:中国林业出版社,2002.[2]王佳伟,张倩儒,王雨潭,等.侵蚀沟大果榛子自然条件下抗寒性研究[J].南方农业,2019,13(30):27-28.[3]彭筱娜,易自力,蒋建雄.植物抗寒性研究进展[J].生物技术通报,2007(4):15-18.[4]WISNIEWSKI M,BASSETT C,ARORA R.Distribution and partial characterization of seasonally expressed proteins in different aged shoot and root of ‘Loring’peach(Prunus persica)[J].Tree Physiology,2004,24(3):339-345.[5]杨建民,李艳华,杨敏生,等.几个仁用杏品系抗寒性的比较[J].中国农业科学,1999,32(1):46-50.[6]吕跃东,董凤祥,王贵禧,等.平欧杂交榛抗寒性综合评价体系的建立与应用[J].林业科学,2008,44(9):31-35.[7]LI W H,LI L F,TING M F,et al.Intensification of Northern Hemisphere subtropical highs in a warming climate[J].Nature Geoscience,2012,5(11):830-834.[8]YANG M T,CHEN S L,CHEN Y M.Chilling stress suppresses chloroplast development and nuclear gene expression in leaves of mung bean seedlings[J].Plant,2005,221(3):374-385.[9]苏喜廷,张桂芹,周建宇.高寒地区平欧杂交榛子引种试验初报[J].育苗技术,2009(11):26-28.[10]中国科学院上海植物生理研究所.现代植物生理学实验指南[M].北京:科学出版社,1999.[11]何伟,艾军,范书田,等.葡萄品种及砧木抗寒性评价方法研究[J].果树学报,2015,32(6):1135-1142.[12]KAZUOKA T,OEDA K.Hkat-stable COR(cold-regulated) proteins associated with freezing tolerance inspinach[J].Plant Cell Physiol,1992,33(8):1107-1114.[13]STRAND A,FOYER C H,GUATAFSSONP,et al.Altering flux through the sucrose biosynthesis pathway in transgenic Arabidopsis thaliana modifies photosynthetic acclimation at low temperatures and the development of freezing tolerance[J].Plant,Cell and Environment,2003(26):536-623.[14]欧欢,王绪春,王振磊,等.自然越冬过程中扁桃枝条生理特性变化与抗寒性评价[J].新疆农业科学,2017,54(10):1785-1795.[15]JAVADIANA N,KARIMZADEHA G,MAHFOOZIB S,et al.Cold-induced changes of enzymes,proline,carbohydrates,and chlorophyll in wheat[J].Russian Journal of Plant Physiology,2010,57(4):540-547.[16]王摇宁,袁美丽,安瑞云,等.低温对樟树抗寒性生理指标的影响[J]森林与环境学报,2020,40(5):512-518.[17]王新宇,胡青霞,冯梦晨,等.‘突尼斯软子’石榴品种低温忍耐程度研究[J].天津农业科学,2017,23(10):76-80.[18]CAMPOS P S,QUARTIN V N,RAMALHO J C,et al.Electrolyte leakage and lipid degradation account for cold sensitivity in leaves of Coffe asp.plants[J].Journal of Plant Physiology,2003,160(3):283-292.[19]王海鸥,高展,艾克拜尔·毛拉,等.自然越冬条件下17个葡萄砧木品种几个生理指标变化分析[J].经济林研究,2019(4),120-128.[20]郭燕,张树航,李颖,等.我国几个板栗品种抗寒性综合评价[J].中国农业大学学报,2019,24(4):52-63.[21]梁锁兴,孟庆仙,石美娟,等.平欧榛枝条可溶性蛋白及可溶性糖含量与抗寒性关系的研究[J].中国农学通报,2015,31(13):14-18.[22]刘坤,孙万河,陈涛.平欧杂交榛子抗抽条栽培技术[J].北方果树,2019(2):42-43.[23]李春牛,董凤祥,王贵禧,等.平欧杂交榛抗抽条能力及抽条临界含水量研究[J].林业科学研究,2010,23(3):330-335.[24]梁锁兴,侯东梅,席海源,等.不同平欧杂种榛品种越冬期间一年生枝条水分变化与抽条的关系[J].中国果树,2019(4):72-75.
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备注/Memo
第一作者简介:曹阳(1984-),女,硕士,研究实习员,现主要从事榛子育种与栽培等研究工作。E-mail:762933317@qq.com.责任作者:梁锁兴(1964-),男,本科,研究员,现主要从事榛子育种与栽培等研究工作。E-mail:suoxingliang@163.com.基金项目:山西省重点研发科技计划资助项目(201903D221056);山西农业大学生物育种工程资助项目(YZJC033)。收稿日期:2021-03-03