作物学报 ›› 2023, Vol. 49 ›› Issue (4): 926-937.doi: 10.3724/SP.J.1006.2023.24080
刘明1,2(), 范文静1,3, 赵鹏1, 靳容1, 张强强1, 朱晓亚1, 王静1, 李强1,2,*()
LIU Ming1,2(), FAN Wen-Jing1,3, ZHAO Peng1, JIN Rong1, ZHANG Qiang-Qiang1, ZHU Xiao-Ya1, WANG Jing1, LI Qiang1,2,*()
摘要:
为建立甘薯苗期耐低钾能力评价体系, 筛选耐低钾和低钾敏感型甘薯材料, 通过水培试验设置了低钾胁迫(0 mmol L-1 K2O)和正常钾处理(10 mmol L-1 K2O), 对来自国内外不同薯区的214份甘薯品种(系)材料进行培养, 收集生物量、钾积累量、钾含量、钾利用效率等11个性状表征值, 计算各指标耐低钾胁迫指数。利用综合隶属函数法, 进行主成分分析、回归分析和聚类分析, 综合评价各甘薯材料耐低钾能力。结果表明, 不同甘薯材料在2个钾水平下的生物量和钾吸收利用特征均有明显差异; 低钾胁迫下地上部干重(SB)、地上部干物质增加量(SBI)、根系干物质增加量(RBI)、总干物质增加量(PBI)、地上部钾积累量(KAS)、根钾积累量(KAR)、总钾积累量(KAP)、地上部钾含量(KCS)和根系钾含量(KCR)等9个指标与正常钾处理相比均降低29%以上, 而根冠比(RSR)和钾生理利用效率(KUE)分别提高29.63%和120.56%。低钾胁迫下, 不同甘薯材料的SB、SBI、PBI、KAS、KAP、KCS、KCR和KUE等8个指标的变异系数均高于正常钾处理。对11个指标的耐低钾胁迫指数进行主成分分析, 选择了3个主成分, 累计方差贡献率达82.86%; 11个指标的耐低钾敏感指数均与耐低钾综合评价值(Y)极显著相关。选择了SBI、RBI、PBI、KAS、KAR、KAP等6个指标作为筛选评价指标, 根据聚类热图分析将214份甘薯材料划分为耐低钾型、中间型和不耐低钾型; 方差分析表明, 耐低钾型品种与其他类型品种相比具有较高的耐低钾胁迫指数, Y值也排列前位, 验证了聚类结果的准确性。综合本研究结果, SBI、RBI、PBI、KAS、KAR、KAP等6个指标可作为甘薯苗期耐低钾能力筛选的首选指标; 筛选出甘薯苗期耐低钾能力最强的6个品种, 分别为济紫薯18号、广紫薯2号、龙薯710、泰中6号、胜利百号、龙薯9号。
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