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Approximately 10 to 12% of GHG emissions come from the agricultural sector. Consumption of energy in agriculture is a source of GHG and it can be decreased by efficient utilization of energy inputs. Therefore, our present research calculated energy efficiencies (for technical, pure technical, and scale) and extent of GHG reduction after benchmarking an inefficient farm in off-season cucumber production in Punjab, Pakistan. Primary data were collected from 70 farmers with simple random sampling. Average technical efficiency (TE), pure technical efficiency (PTE), and scale efficiency (SE) were 0.77, 0.91, and 0.85, respectively, while increasing (IRS) and constant (CRS) return to scale were observed in 46 and 24 farms, respectively. The decrease in total input energy was 33,908.00 MJ ha⁻¹ (14.14%) if inefficient farmers use the energy inputs according to recommendations. A large share of energy savings comes from fertilizers (63.66%), followed by diesel (25.88%), plastic (5.78%), chemicals (2.69%), water (1.06%), labour (0.50%), and machinery (0.44%). Total GHG reduction was 1,004.68 kg CO₂ eq.ha⁻¹ (17.75%) after improvement in energy efficiency. Agricultural extension staff should visit the vegetable farms on a regular basis and give necessary information about efficient utilization of energy inputs. In addition, the government should promote renewable sources of energy due to their environmentally friendly behavior.
In climate change scenario, drought is one of the serious environmental stress that limits agricultural productivity throughout the world. Silicon (Si) and selenium (Se) are known to effect physiological and biochemical processes under environmental stress. Therefore, this study was carried out to investigate the effects of Si and Se in alleviating the adversities of drought stress on physiological and biochemical processes in bread wheat seedlings. Treatments comprised of control (CK) (no drought stress nor Si and Se added), only drought [40% water holding capacity (WHC)], drought + Si (40% WHC with 40 mM Si), drought + Se (40% WHC with 40 mM Se), and drought + Si + Se (40% WHC + 40 mM Si + 40 mM Si). Plant material consisted of one bread wheat cultivar, Faislabad-2008. Data were collected for root shoot traits, physiological traits, and antioxidant enzymatic activities of shoot. Data analyses revealed that deficit irrigation inhibited the morphological attributes (root and shoot dry weight, root, and shoot length), water relation parameters, chlorophyll contents, net photosynthetic rate, transpiration rate, stomatal conductance, and CO₂ concentration of wheat seedlings. On contrary, the foliage applied Si alone and in combination with Se under water deficit conditions stimulated plant growth and photosynthetic attributes, water relations, transpiration rate, and chlorophyll contents. In addition, an increase in antioxidants enzymatic activity was recorded under water deficit conditions, which was higher in wheat seedlings treated with combined application of Si and Se. Correlation analyses revealed strong association of antioxidant enzymatic activities with osmotic potential and turgor pressure. It is concluded from the study that foliage applied Si alone alleviates the negative impact of water deficit condition, while in combination with Se, both collectively found more effective in mitigating adverse effects of drought stress.
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