Long-Term Conservation Agriculture Influences Weed Diversity, Water Productivity, Grain Yield, and Energy Budgeting of Wheat in North-Western Indo-Gangetic Plains

被引:1
作者
Sharma, Tarun [1 ]
Das, Tapas Kumar [1 ]
Maity, Pragati Pramanik [2 ]
Biswas, Sunanda [3 ]
Sudhishri, Susama [4 ]
Govindasamy, Prabhu [1 ]
Raj, Rishi [1 ]
Sen, Suman [1 ]
Singh, Teekam [1 ]
Paul, Amrit Kumar [5 ]
Roy, Arkaprava [1 ]
Babu, Subhash [1 ]
Rathi, Neelmani [1 ]
机构
[1] Indian Agr Res Inst, ICAR, Div Agron, New Delhi 110012, India
[2] Indian Agr Res Inst, ICAR, Div Agr Phys, New Delhi 110012, India
[3] Indian Agr Res Inst, ICAR, Div Soil Sci & Agr Chem, New Delhi 110012, India
[4] Indian Agr Res Inst, ICAR, Water Technol Ctr, New Delhi 110012, India
[5] Indian Agr Res Inst, ICAR, New Delhi 110012, India
关键词
profitability; Shannon-Weiner diversity index; Sorensen similarity index; weeds; zero tillage; residue retention; energy-use efficiency; CROPPING SYSTEM; TRITICUM-AESTIVUM; CLIMATE-CHANGE; SOIL-MOISTURE; USE-EFFICIENCY; ZERO-TILLAGE; NO-TILLAGE; RICE; MANAGEMENT; MITIGATION;
D O I
10.3390/su15097290
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Wheat is grown in an area totalling 31.1 million hectares in India. The North-western Indo-Gangetic Plains (IGP) constitutes the major share of area and production of wheat in India and is known as the wheat belt of India. However, sustaining wheat production under declining/lower resource-use efficiency in the existing rice-wheat cropping system has led to considerations about diversifying this system with a pigeon pea-wheat system (PWS) in the IGP of India. However, little or no information is available on the impact of CA-based PWS on weed dynamics, productivity, profitability, and resource-use efficiencies. Therefore, we studied these aspects in wheat under a long-term (similar to 12 years) conservation agriculture (CA)-based PWS. Treatments were conventional till flatbed (CT), ZT permanent narrow beds (PNBR & PNB), broad beds (PBBR & PBB), and flat beds (PFBR & PFB) with and without residue (R) retention and different N levels (75% and 100% of the recommended N). The results showed that the Shannon-Weiner index and the Simpson dominance index were higher under the CA system in 2021-2022 than in 2010-2011 and 2015-2016, indicating a change in weed diversity over the period. Furthermore, the Sorensen similarity index showed that there was not much difference in weed diversity for 2010-2011. However, in 2015-2016 and 2021-2022 respectively, only 89% (0.89) and 62% (0.62) of weed species were common to both CT and CA systems, indicating a shift in weed species in the long-term CA system in 2021-2022. Residue retention and N dose decreased weed density at 30 days after sowing (DAS). All the CA-based (PFBR100N, PBBR100N, PNBR100N, PFBR75N, PBBR75N, and PNBR75N) treatments reduced the weed density and dry weight compared to CT at 30 DAS. Wheat grain yield and net returns increased by 11.6-14.9% and 19.4-23.8% over CT in CA treatments, of which PFBR100N and PBBR100N were superior. The PBBR100N and PBBR75N systems had water productivity significantly higher than CT. Residue retention in ZT permanent beds reduced energy productivity in CA than CT and no residue treatments. In the 12th year, CA with 75% N (PFBR75N, PBBR75N, PNBR75N) resulted in a higher partial factor productivity of N and total NPK applied. Contrast analysis showed that 75% N was comparable with 100% N on crop, water, and energy productivities and 75% N was superior to 100% N on partial factor productivity of N and total NPK. Thus, the permanent broad bed with residue and 100% N in the initial years and 75% N in later years can be adopted in the north-western IGP for better weed suppression, higher yield, profitability, and resource-use efficiency.
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页数:19
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共 64 条
  • [1] [Anonymous], 1948, Kong Dan Vidensk Selsk Biol Skr
  • [2] Aquino M.P., 1998, ADOPTION BED PLANTIN
  • [3] Impacts of conservation agriculture and herbicides on weeds, nematodes, herbicide residue and productivity in direct-seeded rice
    Baghel, J. K.
    Das, T. K.
    Pankaj
    Mukherjee, I
    Nath, C. P.
    Bhattacharyya, Ranjan
    Ghosh, Sourav
    Raj, Rishi
    [J]. SOIL & TILLAGE RESEARCH, 2020, 201 (201)
  • [4] Aggregate-associated N and global warming potential of conservation agriculture-based cropping of maize-wheat system in the north-western Indo-Gangetic Plains
    Bhattacharyya, Ranjan
    Bhatia, Arti
    Das, T. K.
    Lata, Sneh
    Kumar, A.
    Tomer, Ritu
    Singh, G.
    Kumar, S.
    Biswas, A. K.
    [J]. SOIL & TILLAGE RESEARCH, 2018, 182 : 66 - 77
  • [5] Saving of water and labor in a rice-wheat system with no-tillage and direct seeding technologies
    Bhushan, Lav
    Ladha, Jagdish K.
    Gupta, Raj K.
    Singh, S.
    Tirol-Padre, A.
    Saharawat, Ys.
    Gathala, M.
    Pathak, H.
    [J]. AGRONOMY JOURNAL, 2007, 99 (05) : 1288 - 1296
  • [6] PERENNIAL WEED POPULATIONS AFTER 14 YEARS OF VARIABLE TILLAGE AND CROPPING PRACTICES
    BUHLER, DD
    STOLTENBERG, DE
    BECKER, RL
    GUNSOLUS, JL
    [J]. WEED SCIENCE, 1994, 42 (02) : 205 - 209
  • [7] Energy conservation and greenhouse gas mitigation under different production systems in rice cultivation
    Chaudhary, V. P.
    Singh, K. K.
    Pratibha, G.
    Bhattacharyya, Ranjan
    Shamim, M.
    Srinivas, I.
    Patel, Anurag
    [J]. ENERGY, 2017, 130 : 307 - 317
  • [8] Effect of seeding systems and dinitroaniline herbicides on emergence and control of rigid ryegrass (Lolium rigidum) in wheat
    Chauhan, Bhagirath S.
    Gill, Gurjeet S.
    Preston, Christopher
    [J]. WEED TECHNOLOGY, 2007, 21 (01) : 53 - 58
  • [9] Ecology and management of weeds under conservation agriculture: A review
    Chauhan, Bhagirath Singh
    Singh, Ravi Gopal
    Mahajan, Gulshan
    [J]. CROP PROTECTION, 2012, 38 : 57 - 65
  • [10] Effect of tillage and herbicides on weeds and productivity of wheat under rice-wheat growing system
    Chhokar, R. S.
    Sharma, R. K.
    Jat, G. R.
    Pundir, A. K.
    Gathala, M. K.
    [J]. CROP PROTECTION, 2007, 26 (11) : 1689 - 1696