耐热抗逆性玉米杂交种对尼泊尔玉米增产和稳定生产的田间评价

Kb Koirala, M. Tripathi, K. Seetharam, M. Vinayan, P. Zaidi
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引用次数: 3

摘要

近年来,国家玉米研究计划(NMRP)旨在实现从开放授粉品种(opv)向杂交玉米的范式转变,以实现国内粮食、饲料和杂交种子玉米的自给自足。在这项任务中,有必要确定和部署能够应对气候变化影响(包括热胁迫)的高产抗逆性玉米杂交品种。在“亚洲耐热玉米(HTMA)”项目下,NMRP从海德拉巴国际玉米和小麦改良中心(CIMMYT)引进了前几年在不同环境下表现较好的杂交品种,进行了多地点的农场试验。在两个地点评估了15个基因型,两个地点在Chitwan的Madi,一个地点在Dang的Ghorahi,以及Rampur Hybrid-8作为耐热性检查,以及RML-86/RML-96和RML-95/RML-96作为正常检查。2016/17年春季采用随机完全区设计(RCBD),共3个重复。同样,在2016/17和2017/18冬季,另外20种和18种有希望的杂交品种分别在不同的杂交种植区域进行了演示,考虑到一个地点-复制。记录了所有地点的粮食产量和产量归因性状。从跨站数据分析中,本试验选育的耐热杂交种为CAH1432、ZH15405、ZH141592和CAH1715,统计上与有前途的普通杂交种RML-86/RML-96相当,优于已发布的耐热Rampur hybrid -8。2016/17年度,ZH138098、ZH1620和VH121062是农民首选的耐热杂交种。2017/18年度,农民首选Rampur Hybrid-10、ZH141592、CAH1715和ZH15440。选定的最佳品种将提前进行正式发布/注册,然后通过与尼泊尔种子公司/合作社的公私伙伴关系进行商业化。南盟J.农业浙江农业学报,19(1):27-43 (2021)
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Field Evaluation of Heat Stress-Resilient Maize Hybrids for Improved and Stable Maize Production in Nepal
In recent years, National Maize Research Program (NMRP) aimed a paradigm shift from open-pollinated varieties (OPVs) towards hybrid maize to achieve self-sufficiency in maize for food, feed, and hybrid seed within the country. In this mission, it is necessary to identify and deploy high-yielding stress-resilient maize hybrids that can cope with climate change effects, including heat stress. Under the project “Heat Tolerant Maize for Asia (HTMA)”, NMRP introduced the hybrids that performed better in previous years in different environments from International Maize and Wheat Improvement Center (CIMMYT) Hyderabad for multilocation on-farm testing. Fifteen genotypes were evaluated at two locations, two sites in Madi, Chitwan, and one in Ghorahi, Dang, along with Rampur Hybrid-8 as a heat-tolerant check, and RML-86/RML-96 and RML-95/RML-96 as normal checks. Randomized complete block design (RCBD) was used with three replicates during the spring of 2016/17. Likewise, another 20 and 18 promising hybrids were demonstrated during the winter of 2016/17 and 2017/18, respectively, in different hybrid growing pockets considering a site – a replication. Grain yield and yield attributing traits at all locations were recorded. From the across-site data analysis, selected heat-tolerant hybrids from the experiment were CAH1432, ZH15405, ZH141592, and CAH1715 which were statistically at par with promising normal hybrid RML-86/RML-96 and superior to already released heat-tolerant Rampur Hybrid-8. In 2016/17, ZH138098, ZH1620, and VH121062 were farmers’ preferred heat-tolerant hybrids. In 2017/18, Rampur Hybrid-10, ZH141592, CAH1715, and ZH15440 were preferred by farmers. The selected bestbet are taken forward for official release/registration followed by commercialization through a public-private partnership with Nepali seed companies/cooperatives. SAARC J. Agric., 19(1): 27-43 (2021)
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