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101.
为客观评估广西南宁周边地区克氏原螯虾养殖群体的遗传多样性,采集来自南宁的3个克氏原螯虾群体——埃及群体(AJ)、良庆群体(LQ)和上林群体(SL),以及湖北荆州(JZ)和江西湖口(HK)的群体各1个,采用形态学结合微卫星分子标记的方法分析其遗传多样性水平。形态分析结果显示,雌性群体的综合判别准确率为68.59%,雄性群体的综合判别准确率为73.60%;3个南宁群体(AJ,LQ,SL)与JZ群体聚为一类,3个南宁群体间具有较高的形态相似度。微卫星分析结果显示,AJ群体和LQ群体的遗传多样性最高,SL群体和HK群体次之;LQ群体与SL群体的遗传分化系数和遗传距离最小。结果表明广西南宁克氏原螯虾群体具有较高的遗传多样性,从国外引种或国内不同地理来源群体的杂交可能是提高克氏原螯虾群体遗传多样性的重要途径。 相似文献
102.
2001~2004年,对中国16个省(直辖市、自治区)部分地区的马铃薯线虫进行了采样调查,并分离鉴定出7个纽带亚科线虫,其中6个是马铃薯上的新记录种。笔者对其中4个种:松树拟盘旋线虫(Pararotylen-chus piniMamiya,1968)、假强壮螺旋线虫[Helicotylenchus pseudorobustus(Steiner,1914)Golden,1956]、双宫螺旋线虫[H.dihystera(Cobb,1890)Sher,1961]和明茨螺旋线虫(H.minziSher,1966)的形态进行了描述。 相似文献
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采用盆栽的方法,分析磁处理对豌豆根际土壤生物学性状的影响,旨在探究磁处理对豌豆根际土壤肥力及健康状况的影响。试验设置无处理(对照CK),添加铁粉(A)、磁化铁粉(B)、场强为0.2特斯拉(T)磁铁+铁粉(C)以及0.2 T磁铁(D)的处理,基于高通量测序技术分析磁处理对豌豆根际土壤生物学性状的影响。结果表明:C处理显著增加豌豆根际土壤中可培养细菌和真菌数量,同时微生物生物量C、N、P与CK相比分别增加了34.0%、46.0%、44.2%;β-葡萄糖苷酶、氨肽酶、磷酸酶酶活性分别增加了24.6%、23.7%、31.8%;另一方面,C处理中土壤细菌丰富度和多样性指数Ace、Chao1、Shannon指数显著高于CK;属(Genus)分类水平韦恩图分析中上,CK处理特有的属细菌主要有3个:Sneathiella、Desulfurispora、nannocystaceae;A处理特有的属细菌有7个;B处理特有的属细菌亦有7个;C处理特有的属细菌有11个;D处理特有的属细菌有8个。综上所述,C处理能够显著提高豌豆根际土壤中可培养微生物数量、微生物生物量(C、N、P)、酶活性和细菌多样性等多项指示土壤肥力和健康状况的生物学指标,表明磁场强度为0.2 T的磁铁+5 g磁化铁粉处理具有提高土壤肥力抵御土传病害的能力。 相似文献
105.
为提高斑茅种质资源利用效率,本研究对来自不同地区的76份斑茅种质资源的株高、茎径、节间长、叶长、叶宽、锤度6个表型性状进行遗传多样性分析。结果表明,来自不同地区的斑茅,6个表型性状平均变异系数在14.6%~53.4%之间,其中株高和节间长的变异系数相对较高,分别为53.4%和37.7%;锤度和叶长的变异系数相对较低,分别为19.1%和14.6%。株高、茎径、叶宽、叶长、节间长之间表现为极显著正相关,其中株高与节间长的相关系数最大,为0.818;锤度与株高、节间长呈负相关,相关系数分别为-0.232和-0.263。主成分分析表明,前2个主成分方差累计贡献率高达72.58%,其中第1主成分方差贡献率达到51.21%,第2主成分贡献率为21.37%。采用聚类分析方法,不同的种质资源被分为8大类群,第Ⅴ和Ⅵ类群的种质综合性状表现最好,这2个类群是优良的斑茅种质资源,可在甘蔗育种中加以挖掘利用。 相似文献
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108.
Community structure and carbon and nitrogen storage of sagebrush desert under grazing exclusion in Northwest China 总被引:1,自引:0,他引:1
Overgrazing is regarded as one of the key factors of vegetation and soil degradation in the arid and semi-arid regions of Northwest China.Grazing exclusion(GE)is one of the most common pathways used to restore degraded grasslands and to improve their ecosystem services.Nevertheless,there are still significant controversies concerning GE’s effects on grassland diversity as well as carbon(C)and nitrogen(N)storage.It remains poorly understood in the arid desert regions,whilst being essential for the sustainable use of grassland resources.To assess the effects of GE on community characteristics and C and N storage of desert plant community in the arid desert regions,we investigated the community structure and plant biomass,as well as C and N storage of plants and soil(0-100 cm depth)in short-term GE(three years)plots and adjacent long-term freely grazing(FG)plots in the areas of sagebrush desert in Northwest China,which are important both for spring-autumn seasonal pasture and for ecological conservation.Our findings indicated that GE was beneficial to the average height,coverage and aboveground biomass(including stems,leaves and inflorescences,and litter)of desert plant community,to the species richness and importance values of subshrubs and perennial herbs,and to the biomass C and N storage of aboveground parts(P<0.05).However,GE was not beneficial to the importance values of annual herbs,root/shoot ratio and total N concentration in the 0-5 and 5-10 cm soil layers(P<0.05).Additionally,the plant density,belowground biomass,and soil organic C concentration and C storage in the 0-100 cm soil layer could not be significantly changed by short-term GE(three years).The results suggest that,although GE was not beneficial for C sequestration in the sagebrush desert ecosystem,it is an effective strategy for improving productivity,diversity,and C and N storage of plants.As a result,GE can be used to rehabilitate degraded grasslands in the arid desert regions of Northwest China. 相似文献
109.
Farzaneh KHAJOEI NASAB 《干旱区科学》2020,12(6):1031-1045
Climate change may cause shifts in the natural range of species especially for those that are geographically restricted and/or endemic species. In this study, the spatial distribution of five endemic and threatened species belonging to the genus Onosma (including O. asperrima, O. bisotunensis, O. kotschyi, O. platyphylla, and O. straussii) was investigated under present and future climate change scenarios: RCP2.6 (RCP, representative concentration pathway; optimistic scenario) and RCP8.5 (pessimistic scenario) for the years 2050 and 2080 in Iran. Analysis was conducted using the maximum entropy (MaxEnt) model to provide a basis for the protection and conservation of these species. Seven environmental variables including aspect, depth of soil, silt content, slope, annual precipitation, minimum temperature of the coldest month, and annual temperature range were used as main predictors in this study. The model output for the potential habitat suitability of the studied species showed acceptable performance for all species (i.e., the area under the curve (AUC)>0.800). According to the models generated by MaxEnt, the potential current patterns of the species were consistent with the observed areas of distributions. The projected climate maps under optimistic and pessimistic scenarios (RCP2.6 and RCP8.5, respectively) of 2050 and 2080 resulted in reductions and expansions as well as positive range changes for all species in comparison to their current predicted distributions. Among all species, O. bisotunensis showed the most significant and highest increase under the pessimistic scenario of 2050 and 2080. Finally, the results of this study revealed that the studied plant species have shown an acute adaptability to environmental changes. The results can provide useful information to managers to apply appropriate strategies for the management and conservation of these valuable Iranian medicinal and threatened plant species in the future. 相似文献
110.