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May 13, 2026Diversity0 citationsOpen Access

Silvopastoral Systems Enhance Herbaceous Plant Richness and Abundance in the Low Hilly Area of Western Henan Province, China

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LKLixuan KouFCFan ChengXLXueping Luo

Key Points

  • This research aims to investigate the effects of silvopastoral systems on herbaceous diversity and biomass over time.
  • Establishment of a silvopastoral experiment in 2011 in Western Henan, China.
  • Comparison of four tree species plots intercropped with alfalfa against a control plot.
  • Investigation of species density, richness, and aboveground biomass in July 2024.
  • Silvopastoral systems displayed higher herbaceous density, richness, and biomass than pure forests.
  • Species composition varied significantly between silvopastoral systems and control.
  • Soil nutrient properties correlated with biomass and species richness across plots.

Abstract

Although silvopastoral systems are widely recognized to improve ecosystem services, empirical evidence regarding their long-term effects on herbaceous diversity during succession remains scarce. In 2011, we established a silvopastoral experiment in the low hilly area of western Henan Province, China. Four pure forest plots—poplar (Populus simonii, PS), oriental thuja (Platycladus orientalis, PO), Chinese cork oak (Quercus variabilis, QV) and black locust (Robinia pseudoacacia, RP)—were planted on natural wasteland, with perennial alfalfa (Medicago sativa, MS) intercropped to form silvopastoral systems (PS-MS, PO-MS, QV-MS, RP-MS), with a natural wasteland plot serving as the control (CK). In July 2024, we investigated the species density, richness, and aboveground biomass of herbaceous communities across all plots. Species composition differed significantly between MS and CK, PS-MS and PS, and PO-MS and PO. Silvopastoral systems and MS generally exhibited higher density, richness, and biomass than pure forests and CK. Furthermore, MS and silvopastoral systems showed uniform density and biomass across slope positions, whereas CK and pure forests had higher values downslope, along with shifts in relative biomass. Except for MS and PS-MS, all plots had higher species richness downslope. Soil nutrient properties were closely correlated with the biomass, richness, density, and functional groups. These findings indicate that silvopastoral systems can significantly increase herbaceous density, richness, and biomass and alter species composition, with the effects varying by the dominant tree species.

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Cite This Study

Kou et al. (2026) studied this question.

synapsesocial.com/papers/6a03cb781c527af8f1ecf1dahttps://doi.org/10.3390/d18050283
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