湖北农业科学 ›› 2026, Vol. 65 ›› Issue (4): 148-154.doi: 10.14088/j.cnki.issn0439-8114.2026.04.023

• 园艺·特产 • 上一篇    下一篇

移栽期对邵武烟区烤烟云烟87叶片发育及组织结构的影响

尹乐1, 刘非1, 刘志远1, 田忠1, 沈忱1, 汪季涛1, 胥天鹏1, 吴元华2   

  1. 1.安徽中烟工业有限责任公司,合肥 230071;
    2.中国农业科学院烟草研究所,山东 青岛 266101
  • 收稿日期:2025-10-10 出版日期:2026-04-25 发布日期:2026-05-06
  • 通讯作者: 吴元华(1970-),女,副研究员,硕士,主要从事烟草栽培与智慧农业研究工作,(电话)13615325366(电子信箱)wuyuanhua@caas.cn。
  • 作者简介:尹 乐(1980-),男,安徽合肥人,农艺师,主要从事卷烟产品配方设计和原料研究工作,(电话)18263827231(电子信箱)29549694@qq.com。
  • 基金资助:
    安徽中烟工业有限责任公司技术开发项目(2023340000340029)

Effects of transplanting date on leaf development and tissue structure of flue-cured tobacco Yunyan 87 in Shaowu tobacco-growing region

YIN Le1, LIU Fei1, LIU Zhi-yuan1, TIAN Zhong1, SHEN Chen1, WANG Ji-tao1, XU Tian-peng1, WU Yuan-hua2   

  1. 1. China Tobacco Anhui Industrial Co., Ltd., Hefei 230071, China;
    2. Institute of Tobacco Research, Chinese Academy of Agricultural Sciences, Qingdao 266101, Shandong, China
  • Received:2025-10-10 Published:2026-04-25 Online:2026-05-06

摘要: 为探究移栽期对福建邵武烟区云烟87叶片发育的调控机制,明确关键气象因子的定量贡献,为该产区移栽期的优化提供理论支撑,试验于2024年设置4个移栽期处理(2月28日、3月8日、3月18日、3月28日),分析现蕾期中部叶片形态、解剖结构及细胞壁纤维素与木质素含量变化,并结合生育期温度、降水、太阳辐射等气象数据进行相关性分析和层次分解。结果表明,Y3处理(3月18日移栽)叶片形态与结构表现较优,叶片宽圆,栅栏细胞面积最大,组织比(P/S)与栅叶比(CTR)处于适宜水平,叶面积与最优处理(Y2)差异不显著,但显著高于过早或过晚移栽处理。过早移栽导致叶片开片度不足、叶片狭长;过晚移栽则导致海绵组织厚度明显增加,P/S与CTR明显降低。气象因子贡献率分析表明,气温是调控叶片厚度的关键因子,太阳辐射主要调控栅栏组织密度及组织比(P/S)变化,而降水量是综合贡献最大的主导因子,主要调控栅栏组织孔隙度与海绵组织厚度。 在邵武烟区生态条件下,3月中旬移栽可优化烟株生育期与光温水资源的匹配,有利于形成栅栏组织与海绵组织协调、细胞壁组分平衡的叶片结构,为减轻前期涝渍及抵御后期高温干旱胁迫奠定了结构基础,是实现优质烟叶生产的适宜移栽期。

关键词: 移栽期, 云烟87, 叶片解剖结构, 栅栏组织, 海绵组织, 气象因子, 栽培调控

Abstract: To investigate the regulatory mechanism of transplanting date on leaf development of Yunyan 87 tobacco in Shaowu tobacco-growing area of Fujian Province, and to clarify the quantitative contributions of key meteorological factors, thereby providing theoretical support for optimizing the transplanting date in this region, an experiment was conducted in 2024 with four transplanting date treatments (February 28, March 8, March 18, and March 28). The changes in middle-leaf morphology, anatomical structure, and cell wall cellulose and lignin contents at the squaring stage were analyzed. Correlation analysis and hierarchical decomposition were performed in combination with meteorological data, including temperature, precipitation, and solar radiation during the growth period. The results showed that the Y3 treatment (transplanted on March 18) exhibited superior leaf morphology and structure, characterized by a broad-rounded leaf shape, the largest palisade cell area, appropriate levels of palisade-to-spongy tissue ratio (P/S) and palisade-to-leaf ratio (CTR) and leaf area not significantly different from the optimal treatment (Y2) but significantly higher than that in the too-early or too-late transplanting treatments. Premature transplanting led to insufficient leaf expansion and narrow leaves; delayed transplanting resulted in an obvious increase in spongy tissue thickness and an obvious decrease in P/S and CTR. Contribution rate analysis of meteorological factors indicated that air temperature was the key factor regulating leaf thickness, solar radiation primarily regulated palisade tissue density and the P/S ratio, while precipitation was the dominant factor with the highest comprehensive contribution, mainly regulating palisade tissue porosity and spongy tissue thickness. Under the ecological conditions of the Shaowu tobacco-growing area, transplanting in mid-March optimized the synchronization of the tobacco growth period with light, temperature, and water resources, facilitating the formation of leaf structures with coordinated palisade and spongy tissues and balanced cell wall components. This laid a structural foundation for mitigating early-stage waterlogging stress and resisting late-stage high-temperature and drought stress, making it a suitable transplanting date for producing high-quality tobacco leaves.

Key words: transplanting period, Yunyan 87, leaf anatomical structure, palisade tissue, spongy mesophyll, meteorological factor, cultivation regulation

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