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Heritability and Genetic Advance among Chili Pepper Genotypes for Heat Tolerance and Morphophysiological Characteristics

机译:辣椒基因型中的遗传性和遗传进步,用于耐热性和混乱的性能

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High temperature tolerance is an important component of adaptation to arid and semiarid cropping environment in chili pepper. Two experiments were carried out to study the genetic variability among chili pepper for heat tolerance and morphophysiological traits and to estimate heritability and genetic advance expected from selection. There was a highly significant variation among the genotypes in response to high temperature (CMT), photosynthesis rate, plant height, disease incidence, fruit length, fruit weight, number of fruits, and yield per plant. At 5% selection intensity, high genetic advance as percent of the mean (>20%) was observed for CMT, photosynthesis rate, fruit length, fruit weight, number of fruits, and yield per plant. Similarly, high heritability (>60%) was also observed indicating the substantial effect of additive gene more than the environmental effect. Yield per plant showed strong to moderately positive correlations (r=0.23–0.56) at phenotypic level while at genotypic level correlation coefficient ranged from 0.16 to 0.72 for CMT, plant height, fruit length, and number of fruits. Cluster analysis revealed eight groups and Group VIII recorded the highest CMT and yield. Group IV recorded 13 genotypes while Groups II, VII, and VIII recorded one each. The results showed that the availability of genetic variance could be useful for exploitation through selection for further breeding purposes.
机译:高温耐受性是适应辣椒干旱和半干旱种植环境的重要组成部分。进行了两次实验,以研究辣椒的遗传变异性,用于耐热性和语气生理性状,并估算选择的遗传性和遗传提升。基因型之间存在高度显着的变异,响应于高温(CMT),光合速率,植物高度,疾病发病率,果子长度,果子重量,水果数量和产量。在5%选择强度下,对于CMT,光合速率,果实长度,果子重量,水果数量和产量,观察到平均值(> 20%)的高遗传前进。类似地,还观察到高遗传性(> 60%)表明添加剂基因比环境效应大的实质性效果。每种植物的产量在表型水平下表现出适度的正相关(R = 0.23-0.56),而在基因型水平相关系数范围内为CMT,植物高度,果子长度和水果数量的0.16至0.72。集群分析显示八组,七,七,录制了最高的CMT和产量。第IV组记录13个基因型,而II组,VII和VIII每组录制。结果表明,遗传方差的可用性可用于通过选择进行进一步育种目的。

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