Investigation of generative high temperature tolerances of some cotton (Gossypium hirsutum L.) varieties

Yusuf Güzel DEMİRAY, Remzi EKİNCİ, Adem BARDAK
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Abstract

The potential of cotton genotypes to form buds, flowers and bolls is not sufficient to achieve cotton seed yield targets. Despite global warming buds, flowers and bolls that mature in cotton plants must be successfully transformed into products. However, this is related to the generative tolerance of the genotype to high temperature. In study aims to scan the negative effects of high temperature stress on the generative development on cotton varieties registered in Turkey in the last 10 years. The experiment was established in the GAP International Agricultural Research and Training Center trial field in 2020, with 4 blocks according to the Augmented design. Six standards (Tamcot Spnhix, SJU86, AGC208, ST468, ST474, Carmen) and 88 cotton varieties registered in Turkey National Variety List were used as trial material. In this study, high temperature pollen vitality stress index (HTPVSI) and high temperature shedding stress index (HTSSI) properties were investigated. According to the results of the experiments we conducted, it was determined that the HTPVSI values ranged between 0.17-1.26, the HTPVSI averages of the standards were 1.17, and the HTPVSI averages of the genotypes were 0.99. It has been determined that HTSSI values vary between 0.30-1.71. It was determined that the mean HTSSI values of the standards were 0.89 and the genotypes were 1.00. It was determined that there was a wide variation among the genotypes screened for generatively high temperature stress. Using HTSSI and HTPVSI features is recommended as a selection criterion since it is an important trait for screening genotypes in terms of tolerance or sensitivity to generative high temperature stress in cotton plants. In our study, the results were not similar to each other in terms of HTPVSI and HTSSI traits, due to the low share of flower shedding after applying HTSP (High Temperature Shock Practice: 96 hours of uninterrupted exposure to high temperature during generative periods) in the shedding rate. When the examined HTSSI and HTPVSI traits were examined together, no cotton genotypes were found to be generatively tolerant. In terms of sensitivity of genotypes to high temperature, 18 cotton genotypes were found in the medium tolerant group and 25 cotton genotypes were found in the sensitive group.
部分棉花(Gossypium hirsutum L.)品种生殖耐热性研究
棉花基因型形成芽、花和铃的潜力不足以实现棉花种子产量目标。尽管全球变暖,但棉花上成熟的花蕾和棉铃必须成功转化为产品。然而,这与基因型对高温的生殖耐受性有关。本研究旨在扫描近10年来高温胁迫对土耳其注册棉花品种生殖发育的负面影响。试验于2020年在GAP国际农业研究培训中心试验田建立,按扩增设计分为4个区块。选用6个标准(Tamcot Spnhix、SJU86、AGC208、ST468、ST474、Carmen)和在土耳其国家品种名录中注册的88个棉花品种作为试验材料。本研究对高温花粉活力胁迫指数(HTPVSI)和高温脱落胁迫指数(HTSSI)特性进行了研究。根据我们的实验结果,确定HTPVSI值在0.17-1.26之间,标准HTPVSI平均值为1.17,基因型HTPVSI平均值为0.99。已经确定HTSSI值在0.30-1.71之间变化。经测定,标准品的HTSSI平均值为0.89,基因型为1.00。结果表明,对高温胁迫筛选的基因型存在较大差异。HTSSI和HTPVSI特征是筛选棉花耐高温胁迫基因型的重要性状,建议将其作为选择标准。在我们的研究中,HTPVSI和HTSSI性状的结果并不相似,这是由于施用HTSP(高温冲击实践:在生育期间不间断暴露在高温下96小时)后的脱花率很低。当HTSSI和HTPVSI性状同时检测时,没有发现棉花基因型具有生育耐受性。在基因型对高温的敏感性方面,中耐组发现18个棉花基因型,敏感组发现25个棉花基因型。
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