中国农业气象 ›› 2025, Vol. 46 ›› Issue (3): 372-383.doi: 10.3969/j.issn.1000-6362.2025.03.009

• 农业生物气象栏目 • 上一篇    下一篇

气象条件对云南烤烟主要化学成分的影响

孙秀芬,解明恩,谢新乔,代快   

  1. 1.云南省玉溪市气象局,玉溪 653100;2.中国气象局/农业农村部烤烟气象服务中心,昆明 650034;3.云南省气象服务中心,昆明 650034;4.云南中烟原料中心,昆明 650034;5.云南省烟草公司玉溪市公司,玉溪 653100
  • 收稿日期:2024-03-12 出版日期:2025-03-20 发布日期:2025-03-19
  • 作者简介:孙秀芬,E-mail:454382016@qq.com
  • 基金资助:
    中国气象局/农业农村部烤烟气象服务中心开放式研究基金项目(KYZX2024−03);国家自然科学基金项目(U1902209);云南省气象局基层台站气象科技创新与能力提升计划项目(STIAP202413)

Meteorological Conditions Effects on Three Chemical Compositions Contents of Flue-cured Tobacco Leaves in Yunnan Province

SUN Xiu-fen, XIE Ming-en, XIE Xin-qiao, DAI Kuai   

  1. 1.Yuxi Meteorological Bureau, Yuxi 653100, China; 2.Meteorological Service Center of Flue-cured Tobacco, China Meteorological Administration/Ministry of Agriculture and Rural Areas, Kunming 650034; 3.Yunnan Center of Meteorological Service, Kunming 650034; 4.Raw Material Center of China Tobacco Yunnan Industrial Co.,LTD, Kunming 650034; 5.Yunnan Tobacco Company Yuxi Branch, Yuxi 653100
  • Received:2024-03-12 Online:2025-03-20 Published:2025-03-19

摘要:

基于云南10个县(区)2017−2020年烟叶田间试验主要化学成分数据和气象资料,采用主成分和Pearson相关分析法,分析云南区域气象条件对烤烟烟叶烟碱(Nt)、总氮(Tn)和蛋白质(Pt)含量的影响,以期探明烤烟化学品质与气象条件的关系,为当地烟草生产、烤烟气象服务等提供参考。结果表明:田间试验获得烟叶3项化学成分变量和烤烟5个生育阶段13个气象变量的35个样本序列经主成分分析,不同生育阶段的前2个3个主成分对其原始变量变化总方差的累计解释度均>82%气象变量场中大田生长期和成熟期的空气湿度、降水量均与烤烟PtTn含量呈正相关(P<0.05;反映大田生长期和旺长成熟期热量条件的主成分以及旺长期最低温度,与烤烟Nt含量呈负相关P<0.05。气象变量场的部分气象因子对烟叶化学成分的积累有协同性影响;大田生长期、成熟期的空气湿度(含平均相对湿度RH、水汽压)和降水量(R)较大,有利于提高烟叶TnPt含量;大田生长期、旺长成熟期的平均气温(T)较高,尤其旺长期最低温度较高,不利于烟叶Nt的形成和积累。云南大多数烟区6−8月旺长成熟期T22.0℃R均值5.5mm·d1RH80%、日照时数均值5.0h·d1和气温日较差>8.0℃的气候条件,是烤烟烟叶NtTnPt含量相对较高的主要原因。研究成果可用于特色烟叶生产和评估/预测烟叶品质,为烟草业合理调配不同产地原料烟叶提供依据。

关键词: 烤烟化学品质, 气象条件, 烟碱, 总氮, 蛋白质, 主成分分析

Abstract:

 Yunnan province has a complex geographical environment, where altitude differences are larger from place to place and regional climate differences are significant. However, the province has the largest tobacco leaf production in China, and its flue-cured tobacco growing areas are spread over an altitude interval of 1000-2000m. In order to understand the internal relations between chemical quality of flue-cured tobacco and planting climate conditions, based on the field experiments and related climate data in 10 countiesdistrictsof Yunnan province from 2017 to 2020, the methods of principal component analysis and correlation analysis were used to analyze the effects of planting climates on the contents of nicotineNt for short, total nitrogenTnand protein Ptinside local tobacco leaves. The results showed that 35 samples with abovementioned three tobacco chemical composition indices (constituted a dependent variable field) and 13 climate factors for each of 5 growth stages (constituted five climatic variable fields) were obtained through the tobacco field trial at 10 sites from 2017 to 2020. The cumulative degree for the first two or three principal components of any of the variable fields to account for the total variance of the temporal and spatial variability of the corresponding original variables was more than 82%. In the climate variable fields, the third principal component (F3 for short) of fluecured tobacco field growth period from midApril to late Augustand the F3 of mature period from July to August, which reflected the air humidity and amount of precipitation, were significantly positively correlated with the first principal component (F1) of tobacco chemical components variables fieldP<0.05, which expressed the contents of Tn and Pt inside tobacco leaves. The second principal component (F2 for short) of field growth period for fluecured tobacco and the F2 of vigorous growth and mature period mainly from June to August, which reflected the advantages and defects of heat conditions, together with the F2 of vigorous growth period from late May to late June, which represented minimum temperature, were significantly negatively correlated with the F2 of tobacco composition variables field P<0.05, which expressed the Nt content of tobacco leaves. All of the above five principal components of the climate variable fields indicated that certain climatic factors had a synergistic effect on the accumulation of certain chemical components inside tobacco leaves. Above these results indicated that the relatively large air humidity and the amount of precipitation during tobacco field growth period and mature period were favorable for increasing the contents of Tn and Pt  inside Yunnan tobacco leaves. The relatively abundant heat in tobacco field growth period and during the vigorous growth and mature period, together with the higher minimum temperatures during the vigorous growth period, were detrimental to the formation and accumulation of Nt inside tobacco leaves. Bacause Yunnan is located in the low latitude plateau region and affected by southwest monsoon, the climatic conditions of most local tobacco planting areas for the whole vigorous growth and mature period of fluecured tobacco were as follows: the average temperature was not higher than 22.0, the mean daily amount of precipitation was more than 5.5mm·d1, the average relative humidity was bigger than 80%, the mean daily sunshine duration was lesser than 5.0h·d1 and the average diurnal temperature range was greater than 8.0. Such climatic conditions resulted in a weakening of transpiration and photosynthesis, an increase in the temperature effectiveness of tobacco, and a prolonged period of growth and development of fluecured tobacco, which were the main reasons for the relatively higher contents of the above three chemical compositions inside the tobacco leaves in Yunnan. The conclusion about the influences of climatic factors on the chemical quality of fluecured tobacco leaves was verified by the relevant data from several provinces which annually produce large quantities of tobacco leaves in China. In view of Yunnan's significant interannual climatic fluctuations, distinctive climate conditions and regional climate differences, the results of the analysis can be applied to the development of characteristic tobacco leaves based on different local climate conditions. They would also help to predict/assess the changes in the chemical quality of tobacco leaves on the basis of the climatic fluctuations, which was intended to provide a scientific basis for the tobacco industry to rationally deploy raw tobacco leaves from different producing areas.

Key words: Chemical quality of flue?cured tobacco, Meteorological conditions, Nicotine, Total nitrogen, Protein, Principal component analysis (PCA)