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Analysis of genetic diversity among the maize inbred lines (Zea mays L.) under heat stress condition

机译:高温胁迫下玉米自交系(Zea mays L.)遗传多样性的分析

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High temperature adversely affects the plant physiological processes: limits plant growth and reduction in grain yield. Heat stress is often encountered to spring sowing of maize in spring season. Twenty maize inbred lines were studied for days to 50 % anthesis and silking, anthesis–silking interval, leaf firing, tassel blast, SPAD reading and leaf senescence, plant and ear height, leaf area index, ear per plant, cob length and diameter, number of kernel/ear, number of kernel row/ear, number of kernel row, silk receptivity, shelling percentage, thousand kernel weight and grain yield in alpha lattice design at National Maize Research Program at Rampur, Chitwan,Nepal with the objective to identify superior heat stress tolerant lines. Analysis of variance showed significant difference for all the traits. Result of multivariable analysis revealed that twenty inbred lines formed four clusters. The resistance inbred lines and susceptible inbred lines formed different clusters. The members of cluster 4 were found to be tolerant to heat stress due to they had lowest value of tassel blast, leaf firing, and leaf area index with highest value of cob diameter and length, ear per plant, number of kernel row/ear, number of kernel/ear, number of kernel row, shelling percentage, silk receptivity and grain yield whereas as members of cluster 1were found most susceptible due to they had longer anthesis silking interval, with maximum tassel blast and leaf firing along with no grain yield under heat stress condition. From this study inbred lines RL-140, RML-76, RML-91 and RML-40 were found most tolerant to heat stress. These inbred lines belonging to superior cluster could be considered very useful in developing heat tolerant variety and other breeding activities.
机译:高温会对植物的生理过程产生不利影响:限制植物的生长并降低谷物产量。春季春季玉米播种经常遇到热应激。对20个玉米自交系进行了为期50天的花期和丝化,花期-生丝间隔,叶片焙烧,流穗爆裂,SPAD读数和叶片衰老,植物和穗高,叶面积指数,单株穗,穗轴长度和直径的研究,尼泊尔Chitwan Rampur的国家玉米研究计划中的α晶格设计中的籽粒/穗数,籽粒行/穗数,籽粒行数,丝接受度,脱壳率,千粒重和谷物产量优异的耐热应力线。方差分析显示所有特征的显着差异。多变量分析的结果表明,二十个自交系形成了四个簇。抗性自交系和易感自交系形成不同的簇。发现簇4的成员对热胁迫具有耐受性,因为它们具有最低的穗爆裂,叶片生火和叶片面积指数,其穗轴直径和长度,每株植物的穗数,籽粒行数/穗数最高,籽粒/穗数,籽粒行数,脱壳率,丝接受性和籽粒产量,而作为簇1的成员最易感,因为它们具有更长的花期绢丝间隔,最大穗流爆破和叶片烧成,而在热应激条件。通过这项研究,发现自交系RL-140,RML-76,RML-91和RML-40最耐高温。这些属于优良集群的近交系在开发耐热品种和其他育种活动中被认为是非常有用的。

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