Influence of temporal heterogeneity in nitrogen supply on competitive interactions in a desert shrub community

Oecologia ◽  
2007 ◽  
Vol 152 (4) ◽  
pp. 721-727 ◽  
Author(s):  
J. J. James ◽  
J. H. Richards
Forests ◽  
2021 ◽  
Vol 12 (10) ◽  
pp. 1372
Author(s):  
Yan Jiang ◽  
Yun Tian ◽  
Tianshan Zha ◽  
Xin Jia ◽  
Charles P.-A. Bourque ◽  
...  

Understanding plant resource use efficiencies (RUEs) and their tradeoffs in a desert shrub community, particularly as it concerns the usage of water, light, and nitrogen, remains an ecological imperative. Plant RUEs have been widely used as indicators to understand plant acclimation processes to unfavorable environmental conditions. This study aimed to examine seasonal dynamics in RUEs in two widely distributed plant species in a typical desert shrub community (i.e., Artemisia ordosica and Leymus secalinus) based on in-situ measurements of leaf photosynthesis, specific leaf area (SLA), leaf nitrogen concentration (i.e., Nmass + Narea), and several site-related abiotic factors. Both species exhibited significant seasonal variation in RUEs, with a coefficient of variation (CV) > 30% and seasonal divergence among the various RUEs. Seasonal divergence was largely controlled by variation in stomatal conductance (Gs), which was in turn influenced by variation in soil water content (SWC) and water vapor pressure deficit (VPD). RUEs between species converged, being positively correlated, yielding: (i) r2 = 0.40 and p < 0.01 for WUE; (ii) r2 = 0.18 and p < 0.01 for LUE;and (iii) r2 = 0.25 and p < 0.01 for NUE. RUEs for A. ordosica were mostly larger than those for L. secalinus, but less reactive to drought. This suggests A. ordosica was more conservative in its usage of available resources and was, therefore, better able to adapt to arid conditions. Resource use strategies between species differed in response to drought. Desert shrubs are projected to eventually replace grasses, as drought severity and duration increase with sustained regional climate change.


1997 ◽  
Vol 101 (4) ◽  
pp. 764-769 ◽  
Author(s):  
Heike Stoermer ◽  
Bettina Seith ◽  
Ulrike Hanemann ◽  
Eckhard George ◽  
Heinz Rennenberg

2020 ◽  
Vol 85 ◽  
pp. 47-58
Author(s):  
Y Jiang ◽  
Y Liu

Various studies have observed that increased nutrient supply promotes the growth of bloom-forming cyanobacteria, but only a limited number of studies have investigated the influence of increased nutrient supply on bloom-forming cyanobacteria at the proteomic level. We investigated the cellular and proteomic responses of Microcystis aeruginosa to elevated nitrogen and phosphorus supply. Increased supply of both nutrients significantly promoted the growth of M. aeruginosa and the synthesis of chlorophyll a, protein, and microcystins. The release of microcystins and the synthesis of polysaccharides negatively correlated with the growth of M. aeruginosa under high nutrient levels. Overexpressed proteins related to photosynthesis, and amino acid synthesis, were responsible for the stimulatory effects of increased nutrient supply in M. aeruginosa. Increased nitrogen supply directly promoted cyanobacterial growth by inducing the overexpression of the cell division regulatory protein FtsZ. NtcA, that regulates gene transcription related to both nitrogen assimilation and microcystin synthesis, was overexpressed under the high nitrogen condition, which consequently induced overexpression of 2 microcystin synthetases (McyC and McyF) and promoted microcystin synthesis. Elevated nitrogen supply induced the overexpression of proteins involved in gas vesicle organization (GvpC and GvpW), which may increase the buoyancy of M. aeruginosa. Increased phosphorus level indirectly affected growth and the synthesis of cellular substances in M. aeruginosa through the mediation of differentially expressed proteins related to carbon and phosphorus metabolism. This study provides a comprehensive description of changes in the proteome of M. aeruginosa in response to an increased supply of 2 key nutrients.


Author(s):  
Truong Hieu Thao ◽  
Hoang Ho Dac Thai

Thảm thực vật vùng đất cát nôi đồng ngập nước theo mùa tại huyện Phong Điền tỉnh Thừa Thiên Huế dựa vào cấu trúc tổ thành được phân thành 4 quần xã đó là: Quần xã cỏ ẩm nằm ven các trằm; Quần xã cây bụi trên vùng cát trũng; Quần xã Tràm trên vùng ngập nước thường xuyên và định kỳ; Quần xã cây gỗ lớn trên đầm lầy than bùn.Mỗi một quần xã đặc trưng bởi một nhóm loài thực vật ưu thế khác nhau, cấu trúc khác nhau đặc thù cho dạng lập địa tạo nên sự đa dạng về thực vật vùng cát nói chung, và vùng đất cát nội đồng ngập nước nói riêng. Những kết quả đã đạt được là cơ sở dữ liệu về thực vật vùng cát, giúp cho công tác bảo tồn, phục hồi hệ sinh thái vùng cát sau này.Plants of submerged inner sandy area (coastal sandy and sandune areas) is divided 4 flora communities, they are Moist grasslands on the edge of the lake; Shrub community in low-lying inner sandy area; Melaleuca community on submerged inner sandy area and sandy seasonally inundated; Wood community on peat swamp, submerged inner sandy area. Site condition based causes flora communities with corresponding of species composition and ecological structures, make up the diversity of the submerged inner sandy flora system. These results contributed a database on the sandy plants for conservation, ecological based restoration in study sites.


1984 ◽  
Author(s):  
James P. Blaisdell ◽  
Ralph C. Holmgren
Keyword(s):  

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