1Dr Y. S. Parmar University of Horticulture and Forestry, Nauni-173230, India
2Uttar Banga Krishi Viswavidyalaya, Pundibari-736165, India
3Rani Lakshmi Bai Central Agricultural University, Jhansi-284003, India
*Corresponding author e-mail: bhardwajdr_uhf@rediffmail.com
Online published on 28 February, 2018.
The present study was conducted attwo different altitudes having eight common land use/agro-ecosystems to analyzethe difference in distribution patternand diversity of existing flora by laying down plots and quadrates. A plot of 0.1 ha was laid down in all the land use systems for measuring the density and diversity of trees and with in those plots, one sub plot of size 10 m × 10 m for shrubs and 1 m × 1 m for herb layer. The density and basal area of herbaceous flora was highest in agrihortisilviculture at lower elevation and silvopastoral at higher elevation. Herbage density and basal area showed a decreasing trend with increasing altitudinal range. The maximum shrub density reported under forestland uses both the altitudinal ranges. Irrespective of the land use system, shrub density enhanced with increasing altitudinal range. At higher altitudinal range, tree density (individuals ha−1) was highest under forest (550) land use followed by agrisilviculture (390), agrihortisilviculture (260), horticulture (230), silvopastoral(230)and agrihorticulture (16) systems, respectively. Shannon Weiner index (H’) (2.27) was observed highest for forestland use. Among agroforestry systems, agrihortisilviculture land use system showed best results with respect to density and grassland displayed least. Hence, the study recommends the introduction of more and more forest tree species in and around the orchards and other agriculturelandscapes of the region to enhance and safe guard the plant richness.
Agroforestry, Altitudinal variation, Floral density, Grassland ecosystem