Agricultural Ecology Group, Institute of Agricultural Sciences, ETH Zurich, Zurich, Switzerland.
Department of International Cooperation, Research Institute of Organic Agriculture, Frick, Switzerland.
BMC Plant Biol. 2023 May 15;23(1):253. doi: 10.1186/s12870-023-04204-z.
Legumes can fix atmospheric nitrogen (N) and facilitate N availability to their companion plants in crop mixtures. However, biological nitrogen fixation (BNF) of legumes in intercrops varies largely with the identity of the legume species. The aim of our study was to understand whether BNF and concentration of plant nutrients by common bean is influenced by the identity of the companion plant species in crop mixtures. In this greenhouse pot study, common beans were cultivated with another legume (chickpea) and a cereal (Sorghum). We compared BNF, crop biomass and nutrient assimilation of all plant species grown in monocultures with plants grown in crop mixtures.
We found beans to exhibit low levels of BNF, and to potentially compete with other species for available soil N in crop mixtures. The BNF of chickpeas however, was enhanced when grown in mixtures. Furthermore, biomass, phosphorous and potassium values of chickpea and Sorghum plants were higher in monocultures, compared to in mixtures with beans; suggesting competitive effects of beans on these plants. Concentration of calcium, magnesium and zinc in beans was higher when grown with chickpeas than with Sorghum.
It is generally assumed that legumes benefit their companion plant species. Our study highlights the contrary and shows that the specific benefits of cereal-legume mixtures are dependent on the growth rate of the species concerned. We further highlight that the potential of legume-legume mixtures is currently undervalued and may play a strong role in increasing N use efficiency of intercrop-based systems.
豆类可以固定大气中的氮(N),并促进其在作物混种中的伴生植物对 N 的利用。然而,豆类在间作中的生物固氮(BNF)很大程度上取决于豆类物种的特性。我们研究的目的是了解豆类的 BNF 和养分浓度是否受到作物混种中伴生植物种类的影响。在这项温室盆栽研究中,普通豆类与另一种豆类(鹰嘴豆)和一种谷物(高粱)一起种植。我们比较了所有在单作和混作中生长的植物的 BNF、作物生物量和养分吸收。
我们发现豆类的 BNF 水平较低,并且在作物混种中可能与其他物种争夺可用的土壤 N。然而,当与豆类一起生长时,鹰嘴豆的 BNF 会增加。此外,与混作相比,鹰嘴豆和高粱的生物量、磷和钾值在单作中更高;这表明豆类对这些植物具有竞争作用。与高粱相比,与鹰嘴豆一起生长的豆类的钙、镁和锌浓度更高。
人们普遍认为豆类对其伴生植物有益。我们的研究强调了相反的情况,并表明谷类-豆类混作的具体好处取决于相关物种的生长速度。我们进一步强调,豆类-豆类混作的潜力目前被低估了,它可能在提高间作系统的氮利用效率方面发挥重要作用。