in

Climate-smart agriculture practices influence weed density and diversity in cereal-based agri-food systems of western Indo-Gangetic plains

  • 1.

    Kumar, V. et al. Can productivity and profitability be enhanced in intensively managed cereal systems while reducing the environmental footprint of production? Assessing sustainable intensification options in the breadbasket of India. Agric. Ecosyst. Environ. 252, 132–147 (2018).

    PubMed 
    PubMed Central 
    Article 

    Google Scholar 

  • 2.

    Ladha, J. K. et al. How extensive are yield declines in long-term rice-wheat experiments in Asia?. For. Crop. Res. 81, 159–180 (2003).

    Article 

    Google Scholar 

  • 3.

    Bhatt, R., Kukal, S. S., Busari, M. A., Arora, S. & Yadav, M. Sustainability issues on rice–wheat cropping system. Int. Soil Water Conserv. Res. 4, 64–74 (2016).

    Article 

    Google Scholar 

  • 4.

    Sidhu, H. S. et al. Sub-surface drip fertigation with conservation agriculture in a rice-wheat system: A breakthrough for addressing water and nitrogen use efficiency. Agric. Water Manag. 216, 273–283 (2019).

    Article 

    Google Scholar 

  • 5.

    Singh, M. et al. intercomparison of crop establishment methods for improving yield and profitability in the rice-wheat system of Eastern India. For. Crop. Res. 250, 107776 (2020).

    Article 

    Google Scholar 

  • 6.

    Jat, H. S. et al. Energy use efficiency of crop residue management for sustainable energy and agriculture conservation in NW India. Renew. Energy 155, 1372–1382 (2020).

    Article 

    Google Scholar 

  • 7.

    Lohan, S. K. et al. Burning issues of paddy residue management in north-west states of India. Renew. Sustain. Energy Rev. 81, 693–706 (2018).

    Article 

    Google Scholar 

  • 8.

    Buhler, D. D. Weed population responses to weed control practices. II. Residual effects on weed populations, control, and Glycine max yield. Weed Sci. 47, 423–426 (1999).

    CAS 
    Article 

    Google Scholar 

  • 9.

    Armengot, L. et al. Tillage as a driver of change in weed communities: A functional perspective. Agric. Ecosyst. Environ. 222, 276–285 (2016).

    Article 

    Google Scholar 

  • 10.

    Chhokar, R. S., Singh, S., Sharma, R. K. & Singh, M. Influence of straw management on Phalaris minor Retz control. Indian J. Weed Sci. 41, 150–156 (2009).

    Google Scholar 

  • 11.

    Chhokar, R. S. & Malik, R. K. Isoproturon-resistant Littleseed Canarygrass (Phalaris minor) and its response to alternate herbicides. Weed Technol. 16, 116–123 (2002).

    CAS 
    Article 

    Google Scholar 

  • 12.

    Oerke, E. C. Crop losses to pests. J. Agric. Sci. 144, 31–43 (2006).

    Article 

    Google Scholar 

  • 13.

    Hassan, G., Khan, I., Khan, H. & Munir, M. Effect of different herbicides on weed density and some agronomic traits of wheat. Pak. J. Weed Sci. Res. 11, 17–22 (2005).

    Google Scholar 

  • 14.

    Chhokar, R. S. Ã., Sharma, R. K., Jat, G. R., Pundir, A. K. & Gathala, M. K. Effect of tillage and herbicides on weeds and productivity of wheat under rice–wheat growing system. Crop Prot. 26, 1689–1696 (2007).

    CAS 
    Article 

    Google Scholar 

  • 15.

    Yadav, D. B., Yadav, A., Punia, S. S. & Chauhan, B. S. Management of herbicide-resistant Phalaris minor in wheat by sequential or tank-mix applications of pre- and post-emergence herbicides in north-western Indo-Gangetic Plains. Crop Prot. 89, 239–247 (2016).

    Article 

    Google Scholar 

  • 16.

    Harker, K. N. & O’Donovan, J. T. Recent weed control, weed management, and integrated weed management. Weed Technol. 27, 1–11 (2013).

    Article 

    Google Scholar 

  • 17.

    Scherner, A., Melander, B. & Kudsk, P. Vertical distribution and composition of weed seeds within the plough layer after eleven years of contrasting crop rotation and tillage schemes. Soil Tillage Res. 161, 135–142 (2016).

    Article 

    Google Scholar 

  • 18.

    Hillocks, R. J. Farming with fewer pesticides: EU pesticide review and resulting challenges for UK agriculture. Crop Prot. 31, 85–93 (2012).

    Article 

    Google Scholar 

  • 19.

    Nikolić, L., Šeremešić, S., Ljevnaić-Mašić, B., Latković, D. & Konstantinović, B. Weeds and their ecological indicator values in a long-term experiment. Appl. Ecol. Environ. Res. 18, 4775–4790 (2020).

    Article 

    Google Scholar 

  • 20.

    Blubaugh, C. K. & Kaplan, I. Tillage compromises weed seed predator activity across developmental stages. Biol. Control 81, 76–82 (2015).

    Article 

    Google Scholar 

  • 21.

    Nichols, V., Verhulst, N., Cox, R. & Govaerts, B. Weed dynamics and conservation agriculture principles: A review. For. Crop. Res. 183, 56–68 (2015).

    Article 

    Google Scholar 

  • 22.

    Sepat, S. et al. Effects of weed control strategy on weed dynamics, soybean productivity and profitability under conservation agriculture in India. For. Crop. Res. 210, 61–70 (2017).

    Article 

    Google Scholar 

  • 23.

    Sharma, P., Singh, M. K., Verma, K. & Prasad, S. K. Changes in the weed seed bank in long-term establishment methods trials under rice-wheat cropping system. Agronomy 10, 1–14 (2020).

    Google Scholar 

  • 24.

    Plaza-Bonilla, D. et al. Carbon management in dryland agricultural systems. A review. Agron. Sustain. Dev. 35, 1319–1334 (2015).

    Article 

    Google Scholar 

  • 25.

    Nandan, R. et al. Viable weed seed density and diversity in soil and crop productivity under conservation agriculture practices in rice-based cropping systems. Crop Prot. 136, 105210 (2020).

    CAS 
    Article 

    Google Scholar 

  • 26.

    Choudhary, M., Vivek Sharma, P. C., Yadav, A. K. & Jat, H. S. Influence of management practices on weed dynamics, crop productivity and profitability in Wheat under Rice-Wheat cropping system in reclaimed sodic soils. J. Soil Salin. Water Qual. 9, 78–83 (2017).

    Google Scholar 

  • 27.

    Menalled, F. D., Smith, R. G., Dauer, J. T. & Fox, T. B. Impact of agricultural management on carabid communities and weed seed predation. Agric. Ecosyst. Environ. 118, 49–54 (2007).

    Article 

    Google Scholar 

  • 28.

    Shahzad, M., Farooq, M. & Hussain, M. Weed spectrum in different wheat-based cropping systems under conservation and conventional tillage practices in Punjab, Pakistan. Soil Tillage Res. 163, 71–79 (2016).

    Article 

    Google Scholar 

  • 29.

    Kumar, V. et al. Weed management strategies to reduce herbicide use in zero-till Rice–Wheat cropping systems of the Indo-Gangetic Plains. Weed Technol. 27, 241–254 (2013).

    Article 

    Google Scholar 

  • 30.

    Weisberger, D., Nichols, V. & Liebman, M. Does diversifying crop rotations suppress weeds? A meta-analysis. PLoS One 14, 1–12 (2019).

    Google Scholar 

  • 31.

    Melander, B. et al. European perspectives on the adoption of nonchemical weed management in reduced-tillage systems for arable crops. Weed Technol. 27, 231–240 (2013).

    Article 

    Google Scholar 

  • 32.

    Nandan, R. et al. Comparative assessment of the relative proportion of weed morphology, diversity, and growth under new generation tillage and crop establishment techniques in rice-based cropping systems. Crop Prot. 111, 23–32 (2018).

    Article 

    Google Scholar 

  • 33.

    Westerman, P., Luijendijk, C. D., Wevers, J. D. A. & Van Der Werf, W. Weed seed predation in a phenologically late crop. Weed Res. 51, 157–164 (2011).

    Article 

    Google Scholar 

  • 34.

    Honek, A., Martinkova, Z. & Jarosik, V. Ground beetles (Carabidae) as seed predators. Eur. J. Entomol. 100, 531–544 (2003).

    Article 

    Google Scholar 

  • 35.

    Jat, H. S. et al. Temporal changes in soil microbial properties and nutrient dynamics under climate smart agriculture practices. Soil Tillage Res. 199, 104595 (2020).

    CAS 
    PubMed 
    PubMed Central 
    Article 

    Google Scholar 

  • 36.

    Liebman, M. & Davis, A. S. Integration of soil, crop and weed management in low-external-input farming systems. Weed Res. 20, 27–47 (2000).

    Article 

    Google Scholar 

  • 37.

    Lee, S. H., Yoo, S. H., Choi, J. Y. & Bae, S. Assessment of the impact of climate change on drought characteristics in the Hwanghae Plain, North Korea using time series SPI and SPEI: 1981–2100. Water (Switzerland) 9, 20 (2017).

    Google Scholar 

  • 38.

    Jat, H. S. et al. Re-designing irrigated intensive cereal systems through bundling precision agronomic innovations for transitioning towards agricultural sustainability in North-West India. Sci. Rep. 9, 1–14 (2019).

    ADS 
    CAS 
    Article 

    Google Scholar 

  • 39.

    Jat, H. S. et al. Climate Smart Agriculture practices improve soil organic carbon pools, biological properties and crop productivity in cereal-based systems of north-west India. CATENA 181, 104059 (2019).

    CAS 
    Article 

    Google Scholar 

  • 40.

    Hernández Plaza, E., Navarrete, L. & González-Andújar, J. L. Intensity of soil disturbance shapes response trait diversity of weed communities: The long-term effects of different tillage systems. Agric. Ecosyst. Environ. 207, 101–108 (2015).

    Article 

    Google Scholar 

  • 41.

    Trichard, A., Ricci, B., Ducourtieux, C. & Petit, S. The spatio-temporal distribution of weed seed predation differs between conservation agriculture and conventional tillage. Agric. Ecosyst. Environ. 188, 40–47 (2014).

    Article 

    Google Scholar 

  • 42.

    Franke, A. C. et al. Phalaris minor seedbank studies: Longevity, seedling emergence and seed production as affected by tillage regime. Weed Res. 47, 73–83 (2007).

    Article 

    Google Scholar 

  • 43.

    Usman, K. et al. Integrated weed management through tillage and herbicides for Wheat production in Rice-Wheat cropping system in northwestern Pakistan. J. Integr. Agric. 11, 946–953 (2012).

    CAS 
    Article 

    Google Scholar 

  • 44.

    Naresh, R. K. et al. Conservation agriculture improving soil quality for sustainable production systems under smallholder farming conditions in north west India: A review. Int. J. life Sci. Biotechnol. Pharm. Res. 2, 65 (2013).

    CAS 

    Google Scholar 

  • 45.

    Kumar, V. et al. Conservation agriculture (CA)-based practices reduced weed problem in wheat and caused shifts in weed seedbank community in rice-wheat cropping systems. In Weed Science for Sustainable Agriculture, Environment, and Biodiversity. (Eds. Rao A. N and Yaduraju N. T), Proceedings of 25th Asian Pacific Weed Science Society Conference 142 (2015).

  • 46.

    Malik, R. K., Kumar, V. & McDonald, A. Conservation agriculture-based resource-conserving practices and weed management in the rice-wheat cropping systems of the Indo-Gangetic Plains. Indian J. Weed Sci. 50, 218 (2018).

    Article 

    Google Scholar 

  • 47.

    Roth, C. M., Shroyer, J. P. & Paulsen, G. M. Allelopathy of sorghum on wheat under several tillage systems. Agron. J. 20, 855–860 (2000).

    Article 

    Google Scholar 

  • 48.

    Ayodele, O. P. & Aluko, O. A. Weed management strategies for conservation agriculture and environmental sustainability in Nigeria. IOSR J. Agric. Vet. Sci. Ver. I(10), 2319–2372 (2017).

    Google Scholar 

  • 49.

    Crutchfield, D. A., Wicks, G. A. & Burnside, O. C. Effect of winter wheat (Triticum aestivum) straw mulch level on weed control. Weed Sci. 34, 110–114 (1986).

    CAS 
    Article 

    Google Scholar 

  • 50.

    Khanh, T. D., Xuan, T. D. & Chung, I. M. Rice allelopathy and the possibility for weed management. Ann. Appl. Biol. 151, 325–339 (2007).

    CAS 
    Article 

    Google Scholar 

  • 51.

    Santín-Montanyá, M. I., Martín-Lammerding, D., Walter, I., Zambrana, E. & Tenorio, J. L. Effects of tillage, crop systems and fertilization on weed abundance and diversity in 4-year dry land winter wheat. Eur. J. Agron. 48, 43–49 (2013).

    Article 

    Google Scholar 

  • 52.

    Heggenstaller, A. H., Liebman, M. & Anex, R. P. Growth analysis of biomass production in sole-crop and double-crop corn systems. Crop Sci. 49, 2215–2224 (2009).

    Article 

    Google Scholar 

  • 53.

    Liebman, M. & Mohler, C. L. Weeds and the soil environment. In Ecological Management of Agricultural Weeds, (M. Liebman et al. eds.) 210–268 (2001). https://doi.org/10.1071/ea04026.

  • 54.

    Shrestha, A., Jeffrey, P. M. & Lanini, W. T. Subsurface drip irrigation as a weed management tool for conventional and conservation tillage Tomato (Lycopersicon esculentum Mill.) production in semi-arid agroecosystems. J. Sustain. Agric. 31, 37–41 (2007).

    Article 

    Google Scholar 

  • 55.

    Coolong, T. Using irrigation to manage weeds: A focus on drip irrigation. In Weed and Pest Control—Conventional and New Challenges (ed. Goyal, M. R.) 162–182 (Apple Academic Press, 2013).

    Google Scholar 

  • 56.

    Chhokar, R. S., Malik, R. K. & Balyan, R. S. Effect of moisture stress and seeding depth on germination of littleseed Canarygrass (Phalaris minor Retz.). Indian J. Weed Sci. 31, 78–79 (1999).

    Google Scholar 

  • 57.

    Singh, R., Gajri, P. R., Gill, K. S. & Khera, R. Puddling intensity and nitrogen use efficiency of rice (Oryza sativa) on a sandy loam soil of Punjab. Indian J. Agric. Sci. 65, 749–751 (1995).

    Google Scholar 

  • 58.

    Bajwa, A., Anjum, S. A. & Tanveer, M. Impact of fertilizer use on weed management in conservation agriculture—a review. Paki. J. Agric. Res. 69, 20 (2014).

    Google Scholar 

  • 59.

    Derksen, D. A., Anderson, R. L., Blackshaw, R. E. & Maxwell, B. Weed dynamics and management in the Northern Great Plains. Agron. J. 94, 174–185 (2002).

    Article 

    Google Scholar 

  • 60.

    Gathala, M. K. et al. Effect of tillage and crop establishment methods on physical properties of a medium-textured soil under a seven-year Rice-Wheat rotation. Soil Sci. Soc. Am 75, 1851–1863 (2011).

    CAS 
    Article 

    Google Scholar 

  • 61.

    Dong, H., Ma, Y., Wu, H., Jiang, W. & Ma, X. Germination of Solanum nigrum l (black nightshade) in response to different abiotic factors. Planta Daninha 2016, 1–12 (2020).

    Google Scholar 

  • 62.

    Farooq, M., Flower, K. C., Jabran, K., Wahid, A. & Siddique, K. H. M. Crop yield and weed management in rainfed conservation agriculture. Soil Tillage Res. 117, 172–183 (2011).

    Article 

    Google Scholar 

  • 63.

    Swanton, C. J., Clements, D. R. & Derksen, D. A. Weed succession under conservation tillage: A hierarchical framework for research and management. Weed Technol. 7, 286–297 (1993).

    Article 

    Google Scholar 

  • 64.

    Humphreys, E., Kukal, S. S., Christen, E. W. & Hira, G. S. Halting the groundwater decline in North-West India—which crop technologies will be Winners?. Adv. Agron. 109, 155–217 (2010).

    Article 

    Google Scholar 

  • 65.

    Gomez, K. A. & Gomez, A. Statistical Procedures for Agricultural Research. (1984).

  • 66.

    Microsoft Corporation. (2010). Microsoft Excel. https://office.microsoft.com/excel.


  • Source: Ecology - nature.com

    Finding common ground in Malden

    A large dataset of detection and submeter-accurate 3-D trajectories of juvenile Chinook salmon