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Analysis and Evaluation Indicator Selection of Chilling Tolerance of Different Cotton Genotypes

机译:不同基因型棉花耐寒性分析与评价指标选择

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[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.
机译:[目的]研究不同基因型棉苗的耐寒性,筛选合适的耐寒性指标,建立可靠的棉耐寒性数学评价模型,为育种和推广新的耐寒性提供理论依据。棉花抗性和棉花品种耐寒性的大规模评价。 [方法]以十五个棉花品种(品系)为试验材料。低温处理(5℃,12 h)幼苗叶片的光合气体交换参数,叶绿素荧光动力学参数,叶绿素含量,相对可溶性糖含量,丙二醛含量,相对脯氨酸含量,相对电导率等12种生理指标。 )和恢复处理(25℃。24 h);基于各个指标的耐寒性系数(CTC),通过主成分分析,层次聚类分析和逐步回归分析,对耐寒性进行了综合评价。 [结果]结果表明,通过主成分分析可以将12种个体生理指标分为7个独立的综合成分。通过隶属函数法和层次聚类分析,将15个棉花品种(品系)分为三类。建立评价棉花幼苗耐寒性的数学模型:D = 0.275 -0.244Fo1 + 0.206Fv / Fm1 + 0.326g,%-0.056SS + 0.225MDA + O.O38REC(FF = 0.995),评价精度为该方程高于94.25%,0。筛选了与耐寒性密切相关的六个鉴定指标,包括Fo,Fv / Fm1,棉花品种(品系)gs2,SS,MDA和REC的幼苗叶片。 [结论]耐寒性强,在低温胁迫下损伤较小,在回收处理后能够保持较高的光合电子传输能力和较高的气孔导度,这有助于气体交换和光合Ca-的回收。仁慈。可以采用在相同胁迫条件下确定六种指标,快速鉴定和预测其他棉花品种的耐冷性,为耐寒种质的选育,推广,鉴定和筛选提供基础。

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