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991.
Carbon accumulation and distribution in Pinus massoniana and Cunninghamia lanceolata mixed forest ecosystem in Daqingshan, Guangxi, China 总被引:1,自引:0,他引:1 下载免费PDF全文
Carbon accumulation and distribution were studied at three sampling plots in a 13-year-old mixed planatation of Pinus massoniana and Cunninghamia lanceolata in Daqingshan, Guangxi, China. The results showed that carbon content varied with tissues and tree species, but the total carbon content of Pinus massoniana was higher than that of Cunninghamia lanceolata. The average tissue carbon contents of Pinus massoniana were: wood (58.6%) > root (56.3%) > branch (51.2%) > bark (49.8%) > leaf (46.8%), while those of Cunninghamia lanceolata were: bark (52.2%) > leaf (51.8%) > wood (50.2%) > root (47.5%) > branch (46.7%). The carbon contents of the soil (at a depth of 60cm) ranged from 1.45% to 1.84% with an average of 1.70%. Carbon contents were higher in the surface soil (0–20cm) than in the deep layer (below 20cm). The average carbon contents were the highest for trees (51.1%), followed by litter (48.3%), shrubs (44.1%), and herbs (33.0%). The biomass of the trees in the three plots ranged from 85.35 t hm-2 to 101.35 t hm-2 with an average of 93.83 t hm-2, in which 75.7%–82.6% was Pinus massoniana. The biomass of the understory was 2.10–3.95 t hm-2 with an average of 2.72 t hm-2, while the standing stock of ground litter was 5.49–7.91 t hm-2 with an average of 6.75 t hm-2. The carbon storage in the mixed plantation reached the maximum in the soil layer (69.02%), followed by vegetation (29.03%), and standing litter (1.82%). The carbon storage in the tree layer occupied 23.90% of the total ecosystem and 97.7% of the vegetation layer. Pinus massoniana accounted for 65.39% of the total carbon storage in the tree layer. Tissue carbon storage was directly related to the corresponding amount of biomass. Trunks had the highest carbon storage, accounting for 53.23% of the trees in Pinus massoniana and 55.57% in Cunninghamia lanceolata, respectively. Roots accounted for about 19.22% of the total tree carbon. The annual net productivity of the mixed plantation was 11.46 t hm-2a-1, and that of sequestered carbon was 5.96 t hm-2a-1, which was equivalent to fixing CO2 of 21.88 t hm-2a-1. The plantation was found to be an important sink of atmospheric CO2. 相似文献
992.
Tao Tan Jun Wu Chenyang Si Shaoxing Dai Youyue Zhang Nianqin Sun E Zhang Honglian Shao Wei Si Pengpeng Yang Hong Wang Zhenzhen Chen Ran Zhu Yu Kang Reyna Hernandez-Benitez Llanos Martinez Martinez Estrella Nuñez Delicado W. Travis Berggren Juan Carlos Izpisua Belmonte 《Cell》2021,184(8):2020-2032.e14
993.
Biology Bulletin - CRISPR is an adaptive immune defense system found in bacteria and archaea that is resistant to heterologous invasive genetic material. Later studies showed that the CRISPR system... 相似文献
994.
995.
A new species of Parahadjelia occurs in the muscovy duck, Cairina moschata (Linnaeus, 1758), from the Area de Conservacion Guanacaste, Costa Rica. The new species differs from Parhadjelia neglecta Lent and Freitas, 1939, in the body size, in the spicules shape and ratio of spicules, and in having 2 pairs of sessile papillae near the tail tip of the male. The characters exhibited by P. neglecta and the new species validate its generic status distinct from Hadjelia. 相似文献
996.
valois (vls) was identified as a posterior group gene in the initial screens for Drosophila maternal-effect lethal mutations. Despite its early genetic identification, it has not been characterized at the molecular level until now. We show that vls encodes a divergent WD domain protein and that the three available EMS-induced point mutations cause premature stop codons in the vls ORF. We have generated a null allele that has a stronger phenotype than the EMS mutants. The vlsnull mutant shows that vls+ is required for high levels of Oskar protein to accumulate during oogenesis, for normal posterior localization of Oskar in later stages of oogenesis and for posterior localization of the Vasa protein during the entire process of pole plasm assembly. There is no evidence for vls being dependent on an upstream factor of the posterior pathway, suggesting that Valois protein (Vls) instead acts as a co-factor in the process. Based on the structure of Vls, the function of similar proteins in different systems and our phenotypic analysis, it seems likely that vls may promote posterior patterning by facilitating interactions between different molecules. 相似文献
997.
Alfredo Saldaña Christopher H. Lusk Wilfredo L. Gonzáles Ernesto Gianoli 《Evolutionary ecology》2007,21(5):651-662
Unlike other species of the genus Blechnum, the fern Blechnum chilense occurs in a wide range of habitats in Chilean temperate rainforest, from shaded forest understories to abandoned clearings
and large gaps. We asked if contrasting light environments can exert differential selection on ecophysiological traits of
B. chilense. We measured phenotypic selection on functional traits related to carbon gain: photosynthetic capacity (A
max), dark respiration rate (R
d), water use efficiency (WUE), leaf size and leaf thickness in populations growing in gaps and understorey environments. We
assessed survival until reproductive stage and fecundity (sporangia production) as fitness components. In order to determine
the potential evolutionary response of traits under selection, we estimated the genetic variation of these traits from clonally
propagated individuals in common garden experiments. In gaps, survival of B. chilense was positively correlated with WUE and negatively correlated with leaf size. In contrast, survival in shaded understories
was positively correlated with leaf size. We found positive directional fecundity selection on WUE in gaps population. In
understories, ferns of lower R
d and greater leaf size showed greater fecundity. Thus, whereas control of water loss was optimized in gaps, light capture
and net carbon balance were optimized in shaded understories. We found a significant genetic component of variation in WUE,
R
d and leaf size. This study shows the potential for evolutionary responses to heterogeneous light environments in functional
traits of B. chilense, a unique fern species able to occupy a broad successional niche in Chilean temperate rainforest. 相似文献
998.
Stephan Herget Philip V Toukach René Ranzinger William E Hull Yuriy A Knirel Claus-Wilhelm von der Lieth 《BMC structural biology》2008,8(1):35
Background
There are considerable differences between bacterial and mammalian glycans. In contrast to most eukaryotic carbohydrates, bacterial glycans are often composed of repeating units with diverse functions ranging from structural reinforcement to adhesion, colonization and camouflage. Since bacterial glycans are typically displayed at the cell surface, they can interact with the environment and, therefore, have significant biomedical importance. 相似文献999.
A marine fish cell line from the snout of red spotted grouper Epinephelus akaara, a protogynous hermaphrodite, was established, characterized, and subcultured with more than 60 passages. The grouper snout
cell line (GSC) cells multiplied well in Dulbecco’s modified Eagle’s medium (DMEM) medium supplemented with 10% fetal bovine
serum. The optimal growth temperature was 25°C, and morphologically the cells were fibroblastic. Chromosome analysis revealed
that the GSC cell line has a normal diploid karyotype with
. A virus titration study indicated that the cells were susceptible to turbot Scophthalmus Maximus rhabdovirus (SMRV) (108.5 TCID50 ml−1), while the viral titer of frog Rana grylio virus 9807 (RGV9807) reached 103.5 TCID50 ml−1. The infection was confirmed by cytopathic effect (CPE), immunofluorescence, and electron microscopy experiments, which detected
the viral particles in the cytoplasm of virus-infected cells, respectively. Further, significant fluorescent signals were
observed when the GSC cells were transfected with pEGFP vector DNA, indicating their potential utility for transgenic and
genetic manipulation studies. 相似文献
1000.
Joon Sang Lee 《Journal of Plant Biology》2010,53(1):19-23
Stomata usually open when leaves are transferred from darkness to light. However, reverse-phase stomatal opening in succulent
plants has been known. CAM plants such as cacti and Opuntia ficus–indica achieve their high water use efficiency by opening their stomata during the cool, desert nights and closing them during the
hot, dry days. Signal transduction pathway for stomatal opening by blue light photoreceptors including phototropins and the
carotenoid pigment zeaxanthin has been suggested. Blue light regulated signal transduction pathway on stomatal opening could
not be applied to CAM plants, but the most possible theory for a nocturnal response of stomata in CAM plants is photoperiodic
circadian rhythm. 相似文献