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Assessment of Tolerance to Drought Stress of Thirty-five Bread Wheat (Triticum aestivum L.) Genotypes Using Boxplots and Cluster Analysis

机译:使用Boxplots和Crount分析评估三十五个面包小麦(Triticum Aestivum L.)基因型的干旱胁迫的耐受性

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Drought is an acute abiotic stress that limits wheat production worldwide, particularly in arid and semi-arid zones, due to the uneven distribution of rainfall, possibly as a consequence of climate change. In south Asia, including Bangladesh, India and Pakistan, wheat is generally grown under rainfall deficit in winter causing the reduction of wheat yield during this period. This study aimed to characterize the drought tolerance of 35 wheat genotypes of diverse morphologies grown in the field. Plants were grown under drought (irrigation was stopped after the crown root initiation (CRI) stage and the crop was protected from receiving rainfall) and well-watered (control) conditions. Phenological variation on days to first visible awn, days to heading, days to anthesis, days to full expansion of flag leaf, days to awn drying, and days to physiological maturity of all 35 wheat genotypes were significantly different (p≤0.01) under water deficit (drought stress). Similarly, plant height, tillers m-2, spike length, spikelets spike-1, grains spike-1, grain weight, grain yield (GY) and straw yield of all 35 genotypes were significantly reduced under water deficit. Among the tested genotypes, nine genotypes i.e., ‘BARI Gom 26’, ‘Sourav’, ‘BAW 1169’ and ‘BAW 1158’ (GY reduction 30%), and ‘BAW 1151’, ‘BAW 1157’, ‘BAW 1159’, ‘BAW 1161’, ‘BAW 1165’ and ‘BAW 1170’ (GY reduction 40%) were classified as tolerant on the basis of minimum variation in phenology, growth and yield attributes, while also considering the lowest yield reduction (40%) under drought stress. Genotypes ‘Prodip’, ‘Shatabdi’, Gourav, ‘Sufi’, ‘Kanchan’, ‘Barkat’, ‘Balaka’, ‘Aghrani’, ‘Akbar’, ‘Protiva’, ‘Ananda’, ‘Bijoy’, ‘BARI Gom 25’, ‘BAW 1160’, ‘BAW 1162’, ‘BAW 1163’,  ‘BAW 1164’, ‘BAW 1168’ and ‘BAW 1172’ were categorized as moderately sensitive ( 50% GY reduction), while genotypes ‘Seri’, ‘Pavon’, ‘BAW 1166’, ‘BAW 1167’, ‘BAW 1171’ and ‘BAW 1173’ were considered to be highly susceptible to drought (50% GY reduction). Therefore, among the 35 genotypes, nine may be recommended as drought-tolerant wheat genotypes for cultivation under water deficit (drought) conditions or may be used in a future breeding program to develop drought-tolerant varieties.
机译:干旱是一种急性非生物压力,其全球范围内限制小麦生产,特别是在干旱和半干旱区,由于降雨量不均匀,可能是由于气候变化的结果。在南亚,包括孟加拉国,印度和巴基斯坦,小麦一般在冬季降雨缺陷下种植,导致在此期间降低小麦产量。本研究旨在表征田间种植35个小麦基因型的干旱耐受性。植物在干旱下生长(在冠根起始(CRI)阶段后停止灌溉,并保护作物免受降雨量的影响)和浇水(对照)条件。第一次可见的职能变化,第一次可见AWN,日期的天数,黄色叶子的天数,天数延伸,日子为所有35个小麦基因型的生理成熟日都有显着差异(p≤0.01)赤字(干旱压力)。同样,植物高度,分蘖M-2,尖峰长度,穗穗峰-1,谷粒重量,粒重,谷物产量(GY)和所有35个基因型的秸秆产量显着降低。在测试的基因型中,九个基因型IE,'Bari GOM 26','酸奶','BAW 1169'和'BAW 1158'(GY10158'(GY 458')和“BAW 1151”,'BAW 1157','BAW 1159 ','Baw 1161','Baw 1165'和'BAW 1170'(GY 40%)基于候选,生长和产量属性的最小变化,同时考虑降低最低产量(< 40%在干旱胁迫下。基因型“Prodip”,'Shatabdi',Gourav,'sufi','kanchan','Barkat','Balaka','Akbari','Akbar','Protiva','Ananda','Bijoy','Bijoy','Bari Gom 25','Baw 1160','Baw 1162','Baw 1163','Baw 1164','Baw 1168'和'Baw 1172'被分类为中度敏感(<50%的GY减少),而基因型'Seri' ,'Pavon','Baw 1166','Baw 1167','Baw 1171'和'Baw 1173'被认为是高易受干旱(> 50%Gy减少)的影响。因此,在35种基因型中,可以建议九个以水缺损(干旱)条件培养的耐旱小麦基因型,或者可用于未来的育种计划以开发耐旱品种。

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