Seed burial depth and soil water content affect seedling emergence and growth of Ulmus pumila var. sabulosa in the Horqin Sandy Land

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Abstract

We investigated the effects of seed burial depth and soil water content on seedling emergence and growth of Ulmus pumila var. sabulosa (sandy elm), an important native tree species distributed over the European-Asian steppe. Experimental sand burial depths in the soil were 0.5, 1.0, 1.5, 2.0 and 2.5 cm, and soil water contents were 4%, 8%, 12% and 16% of field capacity. All two-way ANOVA (five sand burial depths and four soil water contents) results showed that seed burial depths, soil water content and their interactions significantly affected all the studied plant variables. Most of the times, seedling emergence conditions were greater at the lower sand burial depths (less than 1.0 cm) than at the higher (more than 1.0 cm) seed burial depths, and at the lower water content (less than 12%) than at the higher soil water content. However, high seed burial depths (more than 1.5 cm) or low soil water content (less than 12%) reduced seedling growth or change in the root/shoot biomass ratios. In conclusion, the most suitable range of sand burial was from 0.5 to 1.0 cm soil depth and soil water content was about 12%, respectively, for the processes of seedling emergence and growth. These findings indicate that seeds of the sandy elm should be kept at rather shallow soil depths, and water should be added up to 12% of soil capacity when conducting elm planting and management. Our findings could help to create a more appropriate sandy elm cultivation and understand sparse elm woodland recruitment failures in arid and semi-arid regions.

Figures

  • Table 1. Two-way ANOVAs for the effects of soil water content and depth of seed burial on seedling emergence percentage and the rate of seedling emergence of Ulmus pumila var. sabolusa.
  • Figure 1. Seedling emergence and rate of seedling e ergence for seeds of Ulmus pumila var. sabulosa buried by sand to various depths and exposed to vario ater contents. (A) Seedling em rg nce exposed to different soil water ontents; (B) Seedling emergence buri d by different sand burial depths; (C) Rate of emergence exposed to different soil water content; (D) Rate of emergence buried by different sand burial depths. Each histogram is the mean ˘ 1 S.E. of n = 5. Within each soil water content or burial depth, different letters among themindicate significantly differences at p < 0.05.
  • Figure 2. Germinated seeds which didnot gro into seedlings (%) on Ulmus pumila var. sabolusa buried by sand to various depths and soil water cont ) ermination but not grown into seedling rate exposed to different soil water content; (B) er i but not grown into seedling rate buried by different sand burial depths. Each histogram is the ean ˘ 1 S.E. of n = 5. Within each soil water content or burial depth, different letters among them indicate significantly differences at p < 0.05.
  • Table 3. Two-way ANOVAs for the effects of soil water content and depth of sand burial on seedling height and root/shoot ratio of Ulmus pumila var. sabulosa.
  • Figure 3. Seedling height and root/shoot ratio of Ulmus pumila var. sabolusa after burying seeds insand at various depths and exposing them to different soil water contents. (A) Seedling height exposed to different soil water content; (B) Seedling height buried by different sand burial depths;.(C) Root/shoot ratio exposed to different soil water content; (D) Root/shoot ratio buried by different sand burial depths. Each histogram is the mean ˘ 1 S.E. of n = 5. Within each soil water content or burial depth, different letters among themindicate significantly differences at p < 0.05.

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APA

Tang, J., Busso, C. A., Jiang, D., Wang, Y., Wu, D., Musa, A., … Miao, C. (2016). Seed burial depth and soil water content affect seedling emergence and growth of Ulmus pumila var. sabulosa in the Horqin Sandy Land. Sustainability (Switzerland), 8(1). https://doi.org/10.3390/su8010068

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