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201.
采用网格调查法,分析了长潭自然保护区次生针阔混交群落优势种群的结构特征,结果表明:(1)6600 m2的次生针阔混交群落共计6081 株活立木,隶属于135种乔木树种,其中以杉木、马尾松、木荷 、千年桐、山乌桕、毛竹、黄樟 、黧蒴、青皮竹、枫香 、罗浮柿、石栎等12种为优势树种。(2)径级结构分析发现,木荷、枫香、千年桐、黄樟、藜蒴、罗浮柿和石栎等径级分布呈“L”增长型种群,杉木和马尾松因受人为种植和采伐影响Ⅰ、Ⅱ、Ⅲ级数量丰富,Ⅳ级数量迅速减少,而毛竹和青皮竹则受人为挖取竹笋的影响,Ⅰ级数量较Ⅱ、Ⅲ级低。(3)除山乌桕Ⅳ级为随机分布,其他11种优势种均为群集分布,群集程度随径级增加,变化趋势不明显,反映了人为干扰成为影响长潭自然保护区次生针阔混交群落优势种群结构特征的重要影响因子。 相似文献
202.
为了探讨纯林柴松(Pinus tabulaeformis f. shekannesis)种群不同坡位幼苗的大小结构及其更新特点,通过对陕西富县大麦秸沟地区柴松群落的调查,采用样方法研究黄土高原子午岭天然柴松纯林内天然更新的变化规律。结果表明,柴松纯林幼苗的天然更新特点与坡位有极大关系。从幼苗数量来看,上坡位与中坡位相差不大,却远大于下坡位。对于幼苗的高度3个坡位差异不显著,且都与平均高度无明显差异。从幼苗的密度来看,上坡位与中坡位差异不大,且和平均密度差异不显著,而下坡位的幼苗密度远低于上中坡位,且远小于平均密度。因此,建议在柴松纯林保护和恢复过程中,一定要注意对不同的坡位采用不同的抚育措施。 相似文献
203.
Gerald Haberkorn 《Asia Pacific viewpoint》1997,38(3):219-236
While in recent years much has been written, and even more spoken, about the interrelationships between population and development, and particularly the importance of acknowledging population parameters in development planning and policy formulation, reality in most Pacific island countries and territories falls short of this rhetoric. Long-term development plans and strategic development frameworks are still compiled without due consideration of demographic circumstances, and economic and public sector reform proceeds in many countries seemingly oblivious of contemporary population dynamics. It is not always lack of basic and timely data that accounts for this malaise, as is evident from a myriad of demographic indicators reported by a variety of government agencies and regional and international organisations. However, these often manage to portray quite different demographic scenarios using identical data sources. This paper examines the institutional and methodological context within which Pacific island population data are collected and demographic information is produced. It concludes by discussing ways in which demography and demographers can contribute towards more realistic planning and policymaking in the Pacific. 相似文献
204.
QTLs for black-point resistance in wheat and the identification of potential markers for use in breeding programmes 总被引:3,自引:0,他引:3
A. Lehmensiek A. W. Campbell M. W. Sutherland P. M. Williamson M. Michalowitz G. E. Daggard 《Plant Breeding》2004,123(5):410-416
Quantitative trait loci (QTLs) for black‐point resistance have been mapped in two doubled haploid‐derived wheat populations, each thought to contain unrelated sources of resistance. In the ‘Sunco’בTasman’‐derived population, QTLs were located on chromosomes 1D, 2B, 3D, 4A, 5A and 7A with each QTL explaining between 4 and 15% of the observed phenotypic variance. QTLs were contributed by both parents. In the ‘Cascades’בAUS1408’‐derived population, QTLs from ‘Cascades’ were identified on chromosomes 2A, 2D and 7A with each QTL explaining between 12 and 18% of the phenotypic variance. Several markers were identified which are promising candidates for use in marker‐assisted selection programmes. If one, two or three of these markers would have been used to select for black‐point resistance in the ‘Sunco’בTasman’ population, then with one marker 34 of 39 resistant lines, with two markers 23 of 32 and with three markers 17 of 32 would have been selected. At the same time, 67 false positives obtained by selecting with one marker are reduced to 24 by selection with two markers and to 11 by selection with three markers. Similarly, if one, two or three markers are used to select for black‐point resistance in the ‘Cascades’בAUS1408’ populations, then with one marker 25 of 31 resistant lines, with two markers 26 of 31 and with three markers 10 of 31 are selected. At the same time, 14 false positives are obtained with one marker are reduced to six by selection with two markers and no false positives are selected using three markers. 相似文献
205.
Earlier studies showed that the ratio of the weight of the wheat ear to stem at anthesis (ear:stem ratio) may give a better indication of potential yield than harvest index because it is determined early in the life cycle and is not affected by post anthesis stress. These studies concluded that selection for high ear:stem ratio at anthesis may lead to further improvement in grain yield of wheat. The present work was undertaken in the field to identify lines varying in ear:stem ratio in breeding populations and to study its implications for yield improvement.At anthesis stem length, ear length, tiller number, dry weight of stem and ear and ear:stem ratio were measured in 14 crosses on F2 single plants and F2 derived lines grown in the F3, F4, and F5 at three locations in Western Australia over four seasons. In addition, biomass, grain yield and yield components were measured on selected crosses at two locations on F2 derived lines grown in the F4 and F5. There was a considerable range of ear:stem ratio between and within the crosses studied. Although ear:stem ratio was strongly correlated with stem length, there was substantial variation within stem length classes. Ear:stem ratio had a high mean broad sense heritability (82%), whereas HI, grain yield and above ground biomass had lower heritabilities, 68, 55 and 35% respectively. Ear:stem ratio was strongly correlated between generations and sites indicating stability of this character. Ear:stem ratio had a significant positive correlation with grain yield, HI, grains per ear and per m2. The correlation of grain yield with HI was equal or slightly higher than that of grain yield with ear:stem ratio.Ear:stem ratio offers promise as a predictor of HI and yield potential where post-anthesis moisture stress can influence HI. Ear:stem ratio measurement is unlikely to be adopted for selection purposes in routine breeding programs, as it is laborious and time consuming. However, ear:stem ratio could be used to identify superior parental genotypes and early generation selections from special crosses in terms of its ability to partition assimilate. 相似文献
206.
Zafeiro Vaxevanidou Santiago C. González-Martínez Luis Gil 《Biological conservation》2006,129(4):451-460
Marginal populations are usually located at the edge of the species’ range, constituting small isolates that grow in suboptimal environments. In widely distributed conifers, such as pines, marginal populations have often been considered recent or rare colonizing events without ecological relevance. The Canary Island pine provides an excellent case to study the significance of critically endangered marginal populations (from 20 to a few hundred trees) in an endemic conifer that is also extensively used in commercial plantations. Our chloroplast microsatellite (cpSSR) survey showed contrasting values of haplotypic genetic diversity in marginal populations of Canary Island pine, from very low at Garabato (northern La Gomera) and Anaga (Tenerife), located within broad-leaved tree formations, to very high in Gran Canaria marginal populations (Arguineguin and Galdar). Competition with broad-leaved vegetation, after rare long-distance colonization events, might explain present-day low levels of variation in Garabato and Anaga. Gran Canaria and southern La Gomera relict populations, which contain high haplotypic diversity, are probably remnants of larger populations severely reduced by adverse climatic conditions and human activities, the latter starting shortly after the European colonization of the islands in the XV century. Given the extremely low population numbers and a general lack of natural regeneration, the risk of extinction in the near future is high in marginal populations of Canary Island pine. Conservation activities are urgently required and should focus on the highly diverse Gran Canaria and southern La Gomera pine marginal populations. Here, the establishment of in situ genetic reserves (Arguineguin and Imada), and multifunctional ex situ collections (Arguineguin and Galdar), such as seed orchards, is highly recommended. In addition, common garden experiments to test the performance of potentially drought-tolerant genotypes from Arguineguin (southernmost Gran Canaria’s relict) and potential risks due to inbreeding and/or outbreeding depression should be established. 相似文献
207.
Cultural methods such as crop fertilization can affect susceptibility of plants to insect pests by altering plant tissue nutrient levels. Research shows that the ability of a crop plant to resist or tolerate insect pests and diseases is tied to optimal physical, chemical and mainly biological properties of soils. Soils with high organic matter and active soil biology generally exhibit good soil fertility. Crops grown in such soils generally exhibit lower abundance of several insect herbivores, reductions that may be attributed to a lower nitrogen content in organically farmed crops. On the other hand, farming practices, such as excessive use of inorganic fertilizers, can cause nutrient imbalances and lower pest resistance. More studies comparing pest populations on plants treated with synthetic versus organic fertilizers are needed. Understanding the underlying effects of why organic fertilization appears to improve plant health may lead us to new and better integrated pest management and integrated soil fertility management designs. 相似文献
208.
O. Ozbek E. Millet Y. Anikster O. Arslan M. Feldman 《Genetic Resources and Crop Evolution》2007,54(7):1587-1598
The aim of the present study was to assess the genetic variation in several Israeli and Turkish populations of wild emmer
wheat, Triticum turgidum ssp. dicoccoides, the progenitor of most domesticated wheat. Single spikes were collected in 2002 from 60 plants that grew in six different
habitats in Ammiad, northeastern Israel (8–12 plants from each habitat), and in 1998 from 56 plants that grew in seven different
habitats in Diyarbakir, southeastern Turkey (8 plants from each habitat). Seeds were planted in a nursery and DNA was extracted
from every plant and analyzed by the fluorescent-based amplified fragment length polymorphism (AFLP) method. Seven primer
combinations produced 788 discernible loci of which 48.6% were polymorphic in Israel and 40.5% in Turkey. The genetic diversity
estimates P (frequency of polymorphic loci) and He (gene diversity) were higher in Ammiad than in Diyarbakir (means of P = 0.34 and He = 0.13 in Ammiad vs. P = 0.20 and He = 0.08 in Diyarbakir). Ammiad populations contained more unique alleles than Diyarbakir populations. The relative genetic
diversity estimates (θ) values were 0.188 in Ammiad and 0.407 in Diyarbakir, suggesting better differentiation of the populations in Turkey. Genetic
distance was larger between Israeli and Turkish populations than between populations of each country. The data indicate that
the Israeli and Turkish populations are considerably diverged and that the Israeli populations are more polymorphic than the
Turkish ones, having a larger within-populations genetic variation than among-populations one. The significance of the results
in relation to the differentiation pattern of wild emmer in the Near East is discussed. 相似文献
209.
Earthworm influence on carbon dioxide and nitrous oxide fluxes from an unfertilized corn agroecosystem 总被引:1,自引:0,他引:1
Alicia B. Speratti Joann K. Whalen Philippe Rochette 《Biology and Fertility of Soils》2007,44(2):405-409
Earthworms modify the soil environment through their feeding, casting, and burrowing activities, which may lead to more decomposition
and respiration in aerobic microsites and more denitrification in anaerobic microsites. The objective of this study was to
determine whether earthworms increase CO2 and N2O fluxes from an unfertilized corn agroecosystem. Earthworm populations within field enclosures (2.9 m2) were reduced by repeatedly applying carbaryl insecticide, then single and mixed populations of Lumbricus terrestris L. and Aporrectodea caliginosa (Savigny) were added. Gas samples were collected once a week for 14 weeks, from June to September 2005. Carbaryl applications
reduced, but did not eliminate earthworms from enclosures. The CO2 and N2O fluxes were affected by the sampling date, with peak gas fluxes after rainfall events. Mean CO2 and N2O fluxes during the study period tended to be greater from enclosures with added earthworms than the control (no earthworms
added), but were not significantly affected by earthworm treatments due to the low survival rate of introduced earthworms.
Better control of earthworm populations in the field is required to fully assess the impact of earthworms on CO2 and N2O fluxes from temperate agroecosystems. 相似文献
210.
Denitrification losses show an irregular pattern through the year, often being caused by climatic conditions and management
practices. The objectives of the present work were to quantify denitrification losses and to determine the influence of tillage
system on the factors that control denitrification in fertilized soils. The modal profile of the soil was an Vertic Argiudoll,
clay loam texture, located in Buenos Aires province, Argentina. The treatments were: (a) fertilized, (b) incorporated fertilization
and (c) without fertilization for both no tillage and conventional tillage systems. Chambers were placed in the field to measure
denitrification. In this clayish soil the estimated mean values of accumulated denitrification during the crop cycle (90 days)
were 0.190kgNha–1 for conventional tillage and 0.350kgNha–1 for no tillage. In treatments with no tillage, losses by denitrification were approximately twice those of conventional tillage.
These differences were also evidenced by the number of microorganisms, which were significantly higher (P<>;5%) for no tillage on all dates, except for at flowering. The increase at flowering coincided with the period of highest
rainfall and consequently the highest water contents in the soil. The highest denitrification losses, except for sowing, were
measured when soil moisture content was more than 30% (v/v). Denitrification increased in conjunction with an increase in
the availability of carbon that is consumed by the heterotrophic microorganisms (including the denitrifiers).
Received: 30 July 1996 相似文献