不同稻種資源抗旱性綜合評價

    Comprehensive Evaluation of Drought Resistance in Different Rice Germplasm Resources

    • 摘要:
      目的 淡水資源短缺嚴重威脅水稻生產發展,導致產量損失。綜合評價水稻核心種質抗旱性,明確不同稻種響應幹旱脅迫的形態、生理差異,有助於篩選和培育抗旱水稻品種。
      方法 以14份典型稻種資源為供試材料,在幹旱脅迫下評估其農藝性狀,並以常規水田栽培為對照。在分蘖期、灌漿期、成熟期測定15項農藝性狀,計算抗旱指數、抗旱係數;在孕穗期測定過氧化氫酶(CAT)活性、丙二醛(MDA)、可溶性糖及脯氨酸(Pro)含量等生理指標。通過方差分析探究不同水稻種質間的生理差異,通過相關性分析、主成分分析、隸屬函數分析和聚類分析綜合評價其抗旱性。
      結果 幹旱脅迫抑製水稻生長,產量性狀對幹旱脅迫表現最為敏感(抗旱指數0.20~0.27),株高、葉麵積、穗長、成穗率、實粒數、千粒重、結實率與抗旱係數呈極顯著正相關,分蘖數與抗旱係數呈顯著負相關。主成分分析提取出3個主成分,累計貢獻率達83.207%,綜合評價篩選出強抗旱型種質3份(‘Kao deng’‘Kao kao’‘西陸53號’,綜合抗旱值D≥0.790)、中抗旱型10份、旱敏感型1份(‘Azucena’)。強抗旱型水稻種質MDA含量與CAT活性均極顯著低於旱敏感型;可溶性糖含量隨抗旱性增強呈下降趨勢,不同抗旱種質間差異極顯著;Pro含量則無顯著差異。
      結論 株高、葉麵積、分蘖數、穗長可作為水稻抗旱性初步評價的簡易輔助指標。成穗率、結實率、千粒重的協同維持,是抗旱穩產的核心指標。篩選獲得強抗旱性種質3份,在幹旱脅迫下其主要依賴膜保護機製抵禦逆境,而非通過大量積累滲透調節物質實現抗旱。

       

      Abstract:
      Objective Freshwater shortages pose a serious threat to the development of rice production, leading to yield losses. This study aims to comprehensively evaluate the drought resistance of core rice germplasm, identify morphological and physiological differences in how different rice accessions respond to drought stress, helps provide a theoretical basis for the screening and breeding of drought-resistant rice varieties.
      Method Fourteen typical rice germplasm accessions were used as test materials. Their agronomic traits were assessed under drought stress, with conventional paddy field cultivation serving as the control. Fifteen agronomic traits were measured during the tillering stage, grain-filling stage, maturity stage, and a drought resistance index and coefficients were calculated. A comprehensive array of physiological indicators was measured at the boosting stage, encompassing CAT activity, MDA, soluble sugar, and proline (Pro) contents. The physiological differences among different rice germplasms were analyzed using variance analysis, and their drought resistance was comprehensively evaluated using correlation analysis, principal component analysis, membership function analysis, and cluster analysis.
      Result Drought stress inhibited rice growth, with yield traits being the most sensitive to drought (drought resistance index 0.20-0.27). Plant height, leaf area, panicle length, panicle formation rate, filled grain number, thousand-grain weight, and grain-setting rate showed extremely significant positive correlations with the drought resistance coefficient, while tillers number showed a significant negative correlation with the drought resistance coefficient. Principal component analysis identified three principal components with a cumulative contribution of 83.207%. Comprehensive evaluation screened out 3 highly drought-resistant accessions ('Kao deng', 'Kao kao', and 'Xilu 53', with a comprehensive drought resistance value of D ≥ 0.790), 10 moderately drought-resistant accessions, and 1 drought-sensitive accession ('Azucena'). The MDA content and CAT activity of highly drought-resistant rice accessions were both significantly lower than those of the drought-sensitive accession; soluble sugar content decreased in a gradient as drought resistance increased, with highly significant differences observed among the different drought resistance types; there were no significant differences in Pro content.
      Conclusion Plant height, leaf area, number of tillers, and panicle length can serve as simple auxiliary indicators for the preliminary evaluation of rice drought resistance. The synergistic maintenance of panicle formation rate, grain-setting rate, and thousand-grain weight are the core indicators of drought resistance and stable yields. Three highly drought-resistant germplasm accessions were identified; under drought stress, they primarily rely on membrane protection mechanisms to withstand adverse conditions, rather than achieving drought resistance through the massive accumulation of osmoregulatory substances.