See coplanting in All languages combined, or Wiktionary
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"ref": "2019, “Agronomic Management for Cadmium Stress Mitigation”, in Mirza Hasanuzzaman, Majeti Narasimha Vara Prasad, and Kamrun Nahar, editor, Cadmium Tolerance in Plants: Agronomic, Molecular, Signaling, and Omic Approaches, Academic Press, →ISBN, page 95:",
"text": "The selection of a crop for planting patterns also affects the metal uptake by plants. Liu et al. (2012) studied the effect of crops (maize [Zea mays], tomato, cabbage, and pakchoi), and different planting patterns such as monoculture crops companion-planted with a legume, and crop companion planted with another crop on heavy-metal uptake by plants under field conditions. A higher Cd concentration was found in tomato and pakchoi than in cabbage and maize. Companion planting with Japanese clover increased the Cd concentration in crops compared to the monoculture. The increase in Cd uptake by plants with coplanting was believed to be due to the increase in bioavailable Cd concentration in the soil aroused by the release of low molecular weight organic acids from roots of the second crop as suggested by Liu et al. (2012). Tang et al. (2012) further confirmed that cocropping with phytoextraction plants and food crops may reduce Cd concentrations in food crops, thus, might be an option to reduce Cd concentrations in grains (Rizwan et al., 2016a). Conversely, proper cropping pattern might possibly enhance Cd phytoremediation by crops. From the perspective of phytoextraction, however, a major mechanism for enhancing phytoextraction by intercropping is that an intercropped hyperaccumulator can mobilize selected metals for a coplanted high-biomass nonhyperaccumulator (Gove et al., 2002).",
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"ref": "2022, “Legume-based inter-cropping to achieve the crop, soil, and environmental health security”, in Ram Swaroop Meena and Sandeep Kumar, editors, Advances in Legumes for Sustainable Intensification, Academic Press, →ISBN, page 311:",
"text": "Perennial forage legumes yield poorly in the first planting year[;] therefore[,] companion planting of annual forage legumes with perennial legumes during their crop establishment period is generally suggested. […] Sugarcane consumes a huge amount of nutrients from soil reservoirs, but its coplanting with legumes may increase soil fertility and productivity and enhances RUE [resource use efficiency].",
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"text": "The selection of a crop for planting patterns also affects the metal uptake by plants. Liu et al. (2012) studied the effect of crops (maize [Zea mays], tomato, cabbage, and pakchoi), and different planting patterns such as monoculture crops companion-planted with a legume, and crop companion planted with another crop on heavy-metal uptake by plants under field conditions. A higher Cd concentration was found in tomato and pakchoi than in cabbage and maize. Companion planting with Japanese clover increased the Cd concentration in crops compared to the monoculture. The increase in Cd uptake by plants with coplanting was believed to be due to the increase in bioavailable Cd concentration in the soil aroused by the release of low molecular weight organic acids from roots of the second crop as suggested by Liu et al. (2012). Tang et al. (2012) further confirmed that cocropping with phytoextraction plants and food crops may reduce Cd concentrations in food crops, thus, might be an option to reduce Cd concentrations in grains (Rizwan et al., 2016a). Conversely, proper cropping pattern might possibly enhance Cd phytoremediation by crops. From the perspective of phytoextraction, however, a major mechanism for enhancing phytoextraction by intercropping is that an intercropped hyperaccumulator can mobilize selected metals for a coplanted high-biomass nonhyperaccumulator (Gove et al., 2002).",
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"text": "Perennial forage legumes yield poorly in the first planting year[;] therefore[,] companion planting of annual forage legumes with perennial legumes during their crop establishment period is generally suggested. […] Sugarcane consumes a huge amount of nutrients from soil reservoirs, but its coplanting with legumes may increase soil fertility and productivity and enhances RUE [resource use efficiency].",
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Download raw JSONL data for coplanting meaning in English (4.4kB)
This page is a part of the kaikki.org machine-readable English dictionary. This dictionary is based on structured data extracted on 2026-08-07 from the enwiktionary dump dated 2026-08-05 using wiktextract (d9fa233 and 9e92f4b). The data shown on this site has been post-processed and various details (e.g., extra categories) removed, some information disambiguated, and additional data merged from other sources. See the raw data download page for the unprocessed wiktextract data.
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