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节水 高产冬小麦新品种衡H116021的选育 被引量:1
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作者 李丁 孙书娈 +7 位作者 孟祥海 李强 魏建伟 陈秀敏 赵明辉 李会敏 赵凤梧 乔文臣 《河北农业科学》 2019年第2期76-78,F0003,共4页
衡H116021是河北省农林科学院旱作农业研究所以(衡7228×衡94-5096) F1为母本、石97-6365 (石家庄8号)为父本,采用系谱选择法和水旱交替选择法选育的冬小麦新品种。该品种突出特点是抗寒耐低温,节水性强,高抗条锈,中感叶锈病,中抗... 衡H116021是河北省农林科学院旱作农业研究所以(衡7228×衡94-5096) F1为母本、石97-6365 (石家庄8号)为父本,采用系谱选择法和水旱交替选择法选育的冬小麦新品种。该品种突出特点是抗寒耐低温,节水性强,高抗条锈,中感叶锈病,中抗白粉病,抗干热风,熟相好。2014~2015年参加河北省冀中南水地组小麦品种区域试验,平均产量为8 839.1 kg/hm^2,较对照石4185增产8.4%。2016年参加河北省冀中南水地组小麦品种生产试验,平均产量为8 507.6 kg/hm^2,较对照衡4399增产2.3%。2018年7月通过河北省农作物品种审定委员会审定(审定编号:冀审麦20180033)。该品种适宜在冀中南冬麦区中高水肥地块种植。 展开更多
关键词 节水育种 高产育种 冬小麦 衡H116021 栽培技术
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Evaluation of a new method for quantification of heat tolerance in different wheat cultivars 被引量:1
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作者 LI Qiang WANG Zheng-rui +8 位作者 LI Ding WEI Jian-wei QIAO Wen-chen MENG Xiang-hai SUN Shu-luan LI Hui-min zhao Ming-hui CHEN Xiu-min zhao feng-wu 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2018年第4期786-795,共10页
Heat stress seriously affects wheat production in many regions of the world. At present, heat tolerance research remains one of the least understood fields in wheat genetics and breeding and there is a lack of effecti... Heat stress seriously affects wheat production in many regions of the world. At present, heat tolerance research remains one of the least understood fields in wheat genetics and breeding and there is a lack of effective methods to quantify heat stress and heat tolerance in different wheat cultivars. The objective of this study was to use various wheat cultivars to evaluate stress intensity(δ) and a new method for quantification of heat tolerance and compare this technique with three other currently utilized methods. This new parameter for heat tolerance quantification is referred to as the heat tolerance index(HTI) and is an indicator of both yield potential and yield stability. Heat treatments were applied in a controlled setting when anthesis had been reached for 80% of the wheat. The stress intensity evaluation indicated heat shock was the main factor associated with kernel weight reduction while grain yield reduction was mainly associated with chronic high temperature. The methods evaluation showed that a temperature difference of 5°C from natural temperatures was a suitable heat treatment to compare to the untreated controls. HTI was positively correlated with yield under heat stress(r=0.8657, δ=0.15, in 2009–2010; r=0.8418, δ=0.20, in 2010–2011; P<0.01), and negatively correlated with yield reduction rate(r=–0.8344, in 2009–2010; r=–0.7158, in 2010–2011; P<0.01). The results of this study validated the use of HTI and temperature difference control for quantifying wheat heat tolerance that included the yield potential and the stability of different wheat cultivars under heat stress. Additionally, 10 wheat cultivars showed high HTI and should be further tested for their heat confirming characteristics for use in wheat heat tolerance breeding. 展开更多
关键词 wheat breeding heat tolerance quantification HTI temperature difference controlling stress intensity
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