 
							 
						Analysis and Evaluation Indicator Selection of Chilling Tolerance of Different Cotton Genotypes
- 期刊名字:农业科学与技术:英文版
- 文件大小:
- 论文作者:
- 作者单位:
- 更新时间:2023-04-20
- 下载次数:次
[Objectivc] This study aimed to investigate the chilling tolerance of seedlings of different cotton genotypes and screen appropriate indicators for assess- ing chilling tolerance, to establish reliable mathematical evaluation model for chilling tolerance of cotton, thus providing theoretical basis for breeding and promoting new chilling-tolerant cotton germplasms and large-scale evaluation of chilling tolerance of cotton varieties. [Method] Fifteen cotton varieties (lines) were used as experimental materials. The photosynthetic gas exchange parameters, chlorophyll fluorescence ki- netic parameters, chlorophyll content, relative soluble sugar content, malonaldehyde content, relative proiine content, relative conductivity and other 12 physiological indi- cators of seedling leaves under low temperature treatment (5 ℃, 12 h) and recovery treatment (25 ℃. 24 h) were determined; based on the chilling tolerance coefficient (CTC) of various individual indicators, the comprehensive evaluation of chilling toler- ance was conducled by using principal component analysis, hierarchical cluster anal- ysis and stepwise regression analysis. [Result] The results showed that the 12 indi- vidual physiological indicators could be classified into 7 independent comprehensive components by principal component analysis; 15 cotton varieties (lines) were clus- tered into three categories by using membership function method and hierarchical cluster analysis; the mathematical model for evaluating chilling tolerance of cotton seedlings was established: D =0.275 -0.244Fo1 +0.206Fv/Fm1+0.326g,%-0.056SS + 0.225MDA+O.O38REC (FF=0.995), and the evaluation accuracy of the equation was higher than 94.25%,0. Six identification indicators closely related to chilling tolerance were screened, including Fo,, Fv/Fm1, Seedling leaves of cotton varieties (lines) gs2, SS, MDA, and REC. [Conclusion] with high chilling tolerance are less dam- aged under low temperature stress, and are able to maintain relatively high photo- synthetic electron transport capacity and high stomatal conductance after recovery treatment, which is contributed to gas exchange and recovery of photosynthetic ca- pacity. Determination of the six indicators under the same stress condition can be adopted for rapid identification and prediction of the chilling tolerance of other cotton varieties, which provides basis for the breeding, promotion, identification and screen- ing of chilling tolerant germplasms.
- 
			C4烯烃制丙烯催化剂 2023-04-20
- 
			煤基聚乙醇酸技术进展 2023-04-20
- 
			生物质能的应用工程 2023-04-20
- 
			我国甲醇工业现状 2023-04-20
- 
			JB/T 11699-2013 高处作业吊篮安装、拆卸、使用技术规程 2023-04-20
- 
			石油化工设备腐蚀与防护参考书十本免费下载,绝版珍藏 2023-04-20
- 
			四喷嘴水煤浆气化炉工业应用情况简介 2023-04-20
- 
			Lurgi和ICI低压甲醇合成工艺比较 2023-04-20
- 
			甲醇制芳烃研究进展 2023-04-20
- 
			精甲醇及MTO级甲醇精馏工艺技术进展 2023-04-20

