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51.
Trophic Dynamics and Niches of Salt Marsh Foraminifera   总被引:1,自引:0,他引:1  
Energetic considerations of the growth of three species of littoralbenthic foraminifera, Allogromia laticollaris, Rosalina leei,and Spiroloculina hyalina, have been made on laboratory-grownpopulations. Under optimum laboratory conditions A. laticollarishas the greatest intrinsic rate of increase (r = 2.533 org/day);S. hyalina (r = 1.472 org/day), and R. leei (r = 0.272 org/day)being less fecund. The respiration rates of the three specieswere similar (0.5–4.5 µ1/mg body wt/hr) within thetemperature range (15–35 C) tested. The species studiedare selective feeders. Only 4-5 of 28 species of algae testedwere consumed in significant quantities (40-150 x 108 g/foram/day).Although great numbers of bacteria were eaten, their biomasswas negligible when compared to the algae. The ecological growthefficiency (Ee) of the three species tested is highest in freshcultures (5-20%) and declines rapidly. Evidence suggests thatthe species studied are well adapted for the rapid changes inthe microbial community structure which take place throughoutthe summer, and that community stability and high rate of productivityare achieved through diversity.  相似文献   
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Elevated CO2 has been shown to stimulate plant productivity and change litter chemistry. These changes in substrate availability may then alter soil microbial processes and possibly lead to feedback effects on N availability. However, the strength of this feedback, and even its direction, remains unknown. Further, uncertainty remains whether sustained increases in net primary productivity will lead to increased long‐term C storage in soil. To examine how changes in litter chemistry and productivity under elevated CO2 influence microbial activity and soil C formation, we conducted a 230‐day microcosm incubation with five levels of litter addition rate that represented 0, 0.5, 1.0, 1.4 and 1.8 × litterfall rates observed in the field for aspen stand growing under control treatments at the Aspen FACE experiment in Rhinelander, WI, USA. Litter and soil samples were collected from the corresponding field control and elevated CO2 treatment after trees were exposed to elevated CO2 (560 ppm) for 7 years. We found that small decreases in litter [N] under elevated CO2 had minor effects on microbial biomass carbon, microbial biomass nitrogen and dissolved inorganic nitrogen. Increasing litter addition rates resulted in linear increase in total C and new C (C from added litter) that accumulated in whole soil as well as in the high density soil fraction (HDF), despite higher cumulative C loss by respiration. Total N retained in whole soil and in HDF also increased with litter addition rate as did accumulation of new C per unit of accumulated N. Based on our microcosm comparisons and regression models, we expected that enhanced C inputs rather than changes in litter chemistry would be the dominant factor controlling soil C levels and turnover at the current level of litter production rate (230 g C m−2 yr−1 under ambient CO2). However, our analysis also suggests that the effects of changes in biochemistry caused by elevated CO2 could become significant at a higher level of litter production rate, with a trend of decreasing total C in HDF, new C in whole soil, as well as total N in whole soil and HDF.  相似文献   
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This paper reports the isolation and characterization of 24 polymorphic microsatellite markers in an important tropical timber species, Koompassia malaccensis (Leguminosae). The primers were designed from a genomic library enriched for dinucleotide (CT) repeats and screened on 24 samples from a natural population. The number of alleles detected per locus ranged from two to 13 while the observed heterozygosity ranged from 0.042 to 1.000. Significant departure from Hardy–Weinberg equilibrium (P < 0.05) was detected in two loci. These microsatellite markers were tested across 13 timber species of the same family. The amplification success appeared to be associated with taxonomy classification at the genus but not subfamily levels.  相似文献   
56.
Cold hardiness in the black rice bug, Scotinophara lurida   总被引:1,自引:0,他引:1  
Abstract.  The mechanisms and strategies for winter survival of the black rice bug Scotinophara lurida are investigated along with the relationship between cold hardiness and diapause. The ability of S. lurida to survive subzero temperatures varies depending on developmental stage, temperature and exposure duration. Mean supercooling point (SCP) varies from –7.6 to –10.7 °C with developmental stage, but is not significantly different between stages examined. The SCP also varies with season, being lowest in January and increasing rapidly in February and remaining almost at the same level (–7.3 to 9.6 °C) until April The osmolality of haemolymph of field-collected S. lurida adults rises dramatically from 53.9 mOsm kg−1 in August to 75.3 mOsm kg−1 in December, and then declines linearly to 57.0 mOsm kg−1 in May. Field-collected S. lurida adults show a peak glucose content in October, glycerol content in November and trehalose content in December. Only trehalose content decreases after the application of the juvenile hormone analogue, fenoxycarb, suggesting that trehalose is a cryoprotectant during diapause. These various physiological and biochemical traits related to cold tolerance in S. lurida may be, at least in part, under the control of juvenile hormone through the reproductive diapause programme.  相似文献   
57.
太湖生态系统能量闭合特征及其影响因素   总被引:2,自引:0,他引:2  
王伟  申双和  刘寿东  张弥  肖薇  王咏薇  李旭辉 《生态学报》2017,37(18):5935-5950
地表能量不闭合不仅限制了涡度相关观测数据在陆面模型发展和验证等应用性研究中的价值,还给生态系统CO2源汇特征辨析带来不确定性。基于太湖避风港站2012年涡度相关通量、辐射、气象和水温梯度观测数据,分析了太湖能量闭合的多尺度(小时、日和月)时间变化特征,阐述了大气稳定度、摩擦风速和湖风对太湖能量闭合状况的影响。结果表明:太湖小时尺度的能量闭合度为0.59,且昼夜差异较小;日尺度的能量闭合度为0.73,在内陆水体观测结果中处于中等水平;月平均能量闭合度呈现冬季高、夏季低的季节变化特征;年平均时太湖仍有27%的能量不闭合。因摩擦风速减小,太湖能量闭合度在大气极不稳定条件下要比弱不稳定条件下结果低0.3;对于太湖这类大型浅水湖泊,其能量闭合度全天都受动力湍流交换强度制约,能量闭合度随摩擦风速增大而显著提高;虽然湖风发生使太湖小时尺度的能量闭合度降低了0.1,但其影响在日尺度上并不明显。  相似文献   
58.
【目的】为保证农业生产可持续性发展,研发和使用环境友好的生物农药受到全社会的高度重视。微生物代谢产物农药是我国目前应用最广的生物农药,也是未来发展绿色农药的一个重要方向。【方法】利用包含水稻白叶枯菌(Xanthomonas oryzae pv. oryzae, Xoo) PXO99A的NA培养基琼脂平板,从水稻根际土壤中筛选能抑制Xoo生长的链霉菌。通过高效液相色谱和质谱分析活性代谢产物的化学结构;采用剪叶法接种Xoo到水稻叶片后,再喷施杀粉蝶菌素溶液(0.1 g/L),2周后测定叶枯症状;采用响应面分析法优化高产杀粉蝶菌素的发酵培养基;采用PacBio SMRT测序平台+Illumina HiSeq X Ten平台开展全基因组测序。平均核苷酸一致性(average nucleotide identity,ANI)用于比较HSW2009与其他链霉菌在全基因组水平的亲缘关系。【结果】分离到一株对Xoo生长有强抑制活性的链霉菌HSW2009,其活性代谢产物为杀粉蝶菌素A1(piericidin A1,简称PIE);喷施PIE可以减轻Xoo在水稻叶片内的侵染;优化HSW2009高产PIE的发...  相似文献   
59.
菝葜属和肖菝葜属的核型变异和系统演化研究   总被引:1,自引:0,他引:1  
基于体细胞染色体核型及花序特征对菝葜科Smilacaceae菝葜属Smilax和肖菝葜属Heterosmilax进行了系统演化研究,报道了国产菝葜科17个分类群的核型。根据已研究的部分形态学特征和已有的核型和分子序列资料,对它们的系统进化进行了分析。结果显示:(1)整个类群的核型变异表现在二型化、多倍化、染色体的微变异以及染色体基数递减(从16-15-13),16为菝葜类群的基本染色体基数。(2)草本菝葜的核型对称性在东亚到北美种类中,表现出从对称到不对称的变化,而木本菝葜的各组间并未表现出这种趋势。(3)先出叶(prophy11)是宿存的芽鳞,因此在菝葜组sect.China和土茯苓组sect.Coilanthus中具花序的分枝(该分枝基部具先出叶)与圆锥菝葜组sect.Macranthae和穗菝葜组sect.Smilax中着生叶腋的花序分枝或者具关节的单伞形花序是同源的;结合ITS资料,推测花序原始类型是具伞形花序无总花梗呈穗状排列的种类。从祖先类型,花序的分化朝两个方向:一为菝葜属的菝葜组和土茯苓组以及肖菝葜属的全部种类为代表的生于叶腋的单伞形花序,另一为菝葜属的圆锥菝葜组sect.Macranthae的全部种类构成的圆锥.伞形花序。(4)肖菝葜属的核型和ITS数据都表明其为非单系类群,与草本菝葜和土茯苓组成员为姐妹群,首次发现花被2/3联合的过渡类型——筐条菝葜S.corbularia,建议将肖菝葜属降为亚属,置于菝葜属。(5)核型特点支持草本菝葜是东亚起源,扩展到北美,与土茯苓组种类有共同祖先.来自于x=16的木本菝葜,赞同恢复草本组sect.Nemexia。(6)在广布种菝葜S.china中首次发现二倍体居群,已知其存在3种倍性(2x、4x和6x),发现不同倍性居群的分布规律,推测在第三纪至更新世中期日本、台湾岛与大陆分离之前,菝葜的叙居群已广泛分布,而目前广泛分布的缸居群是岛屿与大陆分离后形靠的。(7)我国西南是菝葜科现代分布和分化中心。  相似文献   
60.
为了研究松鼠东北亚种(Sciurus vulgaris manchuricusThomas)不同种群的序列变异水平并进一步确定分类地位,我们分析了韩国5个地点和中国东北2个地点的松鼠标本的线粒体DNA控制区的全序列(1 058 bp)。39个韩国松鼠标本显示出21种单倍型,这些单倍型间的平均Tamura-Nei距离为1·0%; 24个中国松鼠标本显示21种单倍型,单倍型间的平均Tamura-Nei距离为1·4% (1 058 bp的全序列中发生变异的位点有119个,占11·2%)。韩国松鼠和中国松鼠间的平均距离为1·3%。并且韩国和中国松鼠的所有42个单倍型形成了一个单系分支,Fst值为0·04,表明在两个国家的松鼠间没有发生遗传分化。因此,序列分析的分子生物学的结果支持现行的分类,即来自韩国的朝鲜亚种(S·v·coreae)是中国北部地区松鼠东北亚种(S·v·manchuricus)的同物异名。这还需要进一步对北朝鲜和中国东北其它地区更多标本的分子和形态学分析来验证这一结论。  相似文献   
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