不同 pH 值下重金属铁(Fe)含量对印度尼西亚七个大豆品种发芽的影响

P. B. Timotiwu, Agustiansyah Agustiansyah, Dini Muslimah
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摘要

对酸性土壤的更多使用扩大了大豆的种植面积;然而,酸性土壤与重金属毒性有关,包括铁(Fe)。这项研究考察了大豆种子在含有重金属铁的培养基中的发芽情况,以及培养基的 pH 值对大豆种子活力的影响。这项研究在印度尼西亚楠榜大学的种子和植物育种实验室进行。实验设计为随机区组设计。第一个因素是 Grobogan、Anjasmoro、Derap 1、Detap 1、Dena 1、Deja 1 和 Dega 1 这七个当地大豆品种,第二个因素是重金属铁溶液 pH 值为 6-7 和 4.5,以及不含重金属铁(对照)。重金属铁培养基中的种子活力是通过胚根出苗率、发芽率、发芽速度、正常幼苗数、正常幼苗下胚轴长度、正常幼苗主根长度和正常幼苗干重来评估的。研究发现,在 pH 值为 6-7 和 4.5 的条件下,重金属铁会影响大豆种子的活力。观察数据表明,无论是在 pH 值为 6-7 还是在 pH 值为 4.5 的培养基中,含有重金属铁的培养基中种子活力的所有变量都与对照培养基不同。在 pH 值为 6-7 的重金属铁培养基中,种子活力与对照培养基没有显著差异,但在 pH 值为 4.5 的培养基中,差异显著。大豆品种的特性也会影响不同 pH 值的重金属铁对种子活力的影响。总的来说,Anjasmoro、Deja、Grobogan 和 Dega 是对重金属铁的存在一直表现出抗性或适应性的类型,而 Dena、Derap 和 Detap 则对重金属铁的存在易感。铁介质中的种子活力并不总是与种子的物理表现相关;因此,在酸性土壤中种植大豆之前,建议进行种子活力测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Iron (Fe) heavy metal content at different pH on the germination of seven soybean varieties in Indonesia
Greater use of acid soil has expanded the area under cultivation for soybeans; however, acid soil is associated with heavy mineral toxicity, including Iron (Fe). This investigation looked at how well soybean seeds germinated in media containing heavy metal Fe and how the pH of the media affected the viability of soybean seeds. This research was conducted at the Seed and Plant Breeding Laboratory at the University of Lampung, Indonesia. The experimental design was a randomized block design. The first factor was seven soybean local varieties – Grobogan, Anjasmoro, Derap 1, Detap 1, Dena 1, Deja 1, and Dega 1 – and the second factor was heavy metal Fe solution pH of 6–7 and 4.5 and without heavy metal Fe (control). Seed viability in heavy metal Fe medium was assessed using radicle emergence, germination capacity or percentage, germination speed, number of normal seedlings, normal seedling hypocotyl length, main root length of regular seedlings, and normal shoot dry weight. This research found that heavy metal Fe affected soybeans’ seeds’ viability in pH 6–7 and 4.5. The observed data showed that all seeds’ viability variables in media with heavy metal Fe, both in pH 6–7 and in pH 4.5, differ from the control media. The seed viability in media heavy metal Fe pH 6–7 was not significantly different from the control media, but in pH 4.5, the difference is significant. Soybean varieties’ characteristics also influence how heavy metal Fe in different pH affects seed viability. Overall, Anjasmoro, Deja, Grobogan, and Dega were the types that consistently demonstrated resistance or adaptation to heavy metal Fe existence, while Dena, Derap, and Detap are susceptible to heavy metal Fe existence. Seed viability in Iron medium is not always related to seed physical performance; therefore, before planting soybean in acid soil, it is recommended to conduct a seed viability test.
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