scispace - formally typeset
Search or ask a question
Author

B. S. Beniwal

Bio: B. S. Beniwal is an academic researcher. The author has contributed to research in topics: Phosphorus. The author has an hindex of 1, co-authored 1 publications receiving 2 citations.
Topics: Phosphorus

Papers
More filters

Cited by
More filters
Journal Article
TL;DR: The interaction effect of different levels of nitrogen and biofertilizers on number of branches per plant was found to be non-significant during both years of experimentation and the fresh weight of plant was finding to be significant during both the years.
Abstract: A pot experiment was conducted in the screen-house of the Department of Horticulture, College of Agriculture, CCS Haryana Agricultural University, Hisar during 2011-12 and 2012-13 to investigate the effect of different levels of nitrogen (0, 10, 20 and 30 g/m2) and biofertilizers (Azotobacter andAzospirillum) on growth, yield and nutrient content of Chrysanthemum. The interaction effect of different levels of nitrogen and biofertilizers on number of branches per plant was found to be non-significant during both years of experimentation. The fresh weight of plant was found to be significant during both the years. In the year 2011-12, the maximum fresh weight of plant (102.36 g) was noticed with the application of Azospirillum along with nitrogen 20 g/m2, whereas, in second year, it was maximum (103.45 g) with the application of Azospirillum in combination of nitrogen 30 g/m2. The maximum dry weight of plant (10.52 and 10.50 g) was observed in the application of Azospirillum along with nitrogen 20 g/m2, which was at par with Azospirillum along with nitrogen 30 g/m2 (10.06 and 10.40 g). The maximum flower yield per plant (59.16 and 67.22 g) was recorded with Azospirillum application alongwith nitrogen 20 g/m2. However, in second year, it was at par with Azotobacter in combination of nitrogen 20 g/m2 (61.70 g). In the year 2011-12, the maximum nitrogen content (4.79%) was recorded in Azospirillum along with nitrogen 30 g/m2, whereas, in the next year, it was recorded maximum (4.65%) in Azotobacter along with nitrogen 30 g/m2, which was at par with Azospirillum along with nitrogen 30 g/m2 (4.55 %). Interaction effect of nitrogen and biofertilizers on phosphorus and potassium content were found to be non-significant during both the years of investigation.

13 citations

Journal ArticleDOI
TL;DR: The interaction effect between the biofertilizers and levels of phosphorous on number of suckers per plant was found to be non-significant during both the years of experimentation.
Abstract: A pot experiment was conducted in the screen-house of the Department of Horticulture, College of Agriculture, CCS Haryana Agricultural University, Hisar during 2011–12 and 2012–13 to investigate the potential effect of biofertilizers (PSB and mycorrhiza) and different levels of phosphorus (0, 10, 15 and 20 g/m2) on growth, yield and quality of chrysanthemum. The conjunctive effect of biofertilizers and different levels of phosphorus was found to be significant for both the years. The maximum plant height (31.77 and 33.33 cm), fresh weight of plant (100.90 and 96.77 g) and dry weight of plant (10.85 and 10.15 g) were recorded with PSB + phosphorus 15 g/m2 in the year 2011–12 and 2012–13, respectively. The minimum number of days taken for bud initiation (61.67 and 63.33 days) and number of days to first flowering (75.00 and 75.67 days) were also obtained with PSB + phosphorus 15 g/m2 in both the years, respectively. The maximum number of buds per plant (32.33 and 32.00), number of flowers per plant (29.00 and 29.33), the longest flower stalk (6.33 and 6.33 cm) were noticed with PSB + phosphorus 15 g/m2 in the year 2011–12 and 2012–13, respectively. The maximum number of days taken for bud initiation (79.00 and 80.33 days) was recorded with mycorrhiza application (alone) during both the years, respectively. The interaction effect between the biofertilizers and levels of phosphorous on number of suckers per plant was found to be non-significant during both the years of experimentation.

8 citations