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1.
湖北野生天麻的遗传分化及栽培天麻种质评价   总被引:8,自引:0,他引:8  
采用7条ISSR引物对天麻(Gastrodiaelata)8个自然居群和6个人工栽培居群共483个样本的居群遗传多样性进行了初步检测,共检测出清晰、重复性好的DNA带77条,其中64条为多态性带,总多态位点百分比PPB=83.12%。遗传多样性分析结果表明:天麻自然居群的遗传多样性参数分别为:多态位点百分比PPB=59.09%,有效等位基因数Ae=1.29,Nei’s遗传多样度H=0.176,Shannon’s多态信息指数I=0.270,明显高于人工栽培居群(PPB=35.71%,Ae=1.16,H=0.100,I=0.155),揭示出栽培居群存在明显的遗传基础狭窄和遗传均质性问题。UPGMA聚类分析表明,自然居群与栽培居群存在明显的分化而分别聚为两大类群。自然居群间基因分化系数GST=0.2558,与AMOVA分析所揭示的居群间遗传变异量占总变异的27.25%的结果相近,说明天麻自然居群间亦存在一定程度的遗传分化;居群间基因流(Nm)为1.4547,相对较弱,可能对自然居群的遗传分化有一定影响。自然居群聚类结果显示出一定程度的地理区域聚类趋势,但Mantel检验表明自然居群间遗传距离与地理距离并不存在显著相关(r=0.1669,P=0.2110),揭示出天麻自然居群的分化现状可能是其生活史特性、地理隔离与人为破坏综合作用的结果。栽培居群的遗传均质化趋势,揭示了引种驯化的瓶颈效应和长期无性繁育所导致的遗传多样性丧失,也反映出栽培天麻种质的遗传基础狭窄。而栽培居群与自然居群间存在着明显的遗传分化,反映天麻栽培居群与自然居群间可能存在基因流的阻断。  相似文献   

2.
采用微卫星分子标记对中华水韭(Isoetessinensis)安徽休宁、浙江建德和东方水韭(I.orientalis)浙江松阳三个孑遗居群的迁地保护居群开展了遗传多样性检测与遗传结构分析。7对多态性微卫星引物在36个迁地保护亚居群的720个样本中共检测到59个等位基因,每位点平均等位基因数(A)为8·43。迁地保护亚居群均维持很高的遗传多样性,多态信息含量(PIC)平均为0·707。迁地保护亚居群间遗传分化较低,遗传分化系数GST仅为0·070,居群间具有较大基因流(Nm=3·59)。单因素方差分析发现水韭孢子或孢子体在沿主要水流方向上的长距离传播能力要强于弱水流方向上的短距离传播能力,水流动态对水韭植物的基因流有重要影响。这与UPGMA聚类分析中迁地保护亚居群按邻近位置或水流相通程度优先聚类的结果相一致,水流所带动的强大基因流导致了不同孑遗居群来源的迁地保护亚居群间的遗传混杂。建议在开展水韭植物的迁地保护或回归自然重建时,对具有地方适应分化或者显著性进化的水韭植物居群应相互隔离而不宜配置在一起,以避免远交衰退的遗传风险。  相似文献   

3.
珍稀濒危植物安徽羽叶报春遗传多样性的RAPD分析   总被引:3,自引:0,他引:3  
利用RAPD分子标记对安徽特有濒危物种安徽羽叶报春(Primula merrilliana)6个自然居群的134个个体的遗传多样性进行了研究。从100个随机引物中筛选出12个RAPD引物,扩增共得到158条带,其中129个多态性位点(PPL)。POPGENE分析显示安徽羽叶报春具有较丰富的遗传变异(PPL=81.65%,He=0.2515,Ho=0.3849)。Nei′s基因多样性指数计算的居群间遗传分化系数(GST=0.5511)与Shannon信息指数(54.48%)基本一致。生境的片段化和基因流障碍可能是导致居群间遗传分化显著的主要原因。针对安徽羽叶报春的居群遗传变异提出了相应的保护措施:保护好自然生境和现有的居群及个体;加强居群间的基因流动;在迁地保护过程中,在尽可能多的居群中采样,以提高栽培居群的遗传多样性。  相似文献   

4.
缙云山特有植物缙云黄芩的遗传多样性研究   总被引:6,自引:3,他引:3  
采用聚丙烯酰胺凝胶垂直平板电泳检测了重庆缙云山特有植物缙云黄芩7个居群70个个体的过氧化物酶、细胞色素氧化酶、超氧化物歧化酶、淀粉酶和酯酶5种等位酶,获得20个基因位点的资料,由此分析了其遗传分化水平。结果表明:缙云黄芩遗传多样性水平较高,多态位点比率P为45.7%,平均每个多态位点的等位基因数目A为1.46,平均预期杂合度He为0.205,平均观察杂合度Ho为0.352。缙云黄芩居群间遗传分化水平较高,Gst=0.401,居群间遗传一致度和遗传距离的平均值分别为0.741和0.300。缙云黄芩遗传多样性的40.1%来源于居群之间的基因差异,59.9%属于居群内的遗传分化,因而对缙云黄芩遗传多样性的保护,应保护其较多的居群。  相似文献   

5.
简曙光  吴梅  刘念   《广西植物》2005,25(6):566-569,561
采用等位酶技术,分析了葫芦苏铁5个居群的遗传多样性。分析6个酶系统,共获得了13个基因位点, 结果表明:葫芦苏铁具有较高水平的遗传变异性,多态位点百分率(P)为56.9%,等位基因平均数A=1.62,等 位基因多样性指数Ho=0.105,He=0.164,居群杂合体过量的位点为50%。居群遗传结构分析表明,大部分 遗传变异(93.6%)存在于居群内(FST=0.064),居群间分化程度甚微。根据葫芦苏铁的居群遗传结构式样并 结合相关研究,提出了就地保护所有居群,迁地保护从东一、王下和水田三个大居群取样的保护策略。  相似文献   

6.
小慈姑的遗传多样性和居群分化   总被引:2,自引:0,他引:2  
小慈姑是中国南部狭域分布的易危水生植物。采用聚丙烯酰胺凝胶电泳和等位酶分析方法,研究了该种江西东乡、湖南茶陵、广西桂林和福建武夷山4个地点的8个自然居群的遗传分化及其与地理位置的相关性。9个酶系统18个等位酶位点的检测结果表明,小慈姑有较高水平的遗传多样性:多态位点百分率P=16.67%—38.89%,平均每位点等位基因数A=1.278—1.833,平均预期杂合度He=0.0941—0.1928,平均观察杂合度Ho=0.1461—0.2127。居群之间有较高的遗传一致度I=0.7161—0.9965。根据Nei s遗传距离所作出的聚类分析显示,同地居群之间有较紧密的遗传关系,居群间的遗传分化与空间距离呈正相关。  相似文献   

7.
广东高州7个普通野生稻居群遗传结构的SSR分析   总被引:3,自引:0,他引:3  
利用32对SSR引物对来自全部7个自然居群的217份广东高州普通野生稻(简称"高野")材料进行遗传结构、多样性和遗传聚类分析。结果表明,高野各居群因遗传结构存在差异而相对独立,但各居群之间由于存在基因渗透又具有一定的相似性。高野总体多样性指数(Ht)为0.65,居群内的多样性(HS=0.431)略大于居群间的多样性(DS=0.392),二者差异并不显著。居群间的遗传分化系数(GST)为0.611,说明高野群体的遗传差异是由居群内和居群间的遗传分化共同作用的结果。其中A、B、E居群间,D、F、G居群间遗传相似性较高,C居群与其它居群之间存在较大差异。根据7个居群的遗传结构,结合其地理分布状况,认为遗传多样性最大的B和E居群以及遗传分化最小的C居群应作为重点对象进行保护。  相似文献   

8.
陕西实生板栗居群遗传多样性研究   总被引:11,自引:2,他引:9  
利用超薄平板聚丙烯酰胺等电聚焦技术对陕西板栗4个实生居群,8个酶系统的20个位点进行了遗传多样性及遗传结构分析,结果表明:4个居群中以宝鸡居群遗传多样性最高,其P为80.0%,Ho,He分别为0.478和0.343,4个居群的居群遗传分化度Gst为6.2%,平均总遗传多样性为0.3372,总遗传多样性的93.8%属于居群内的遗传变异,聚类分析结果表明,以秦岭为界可以分为秦岭以南与秦岭以北2个略有差异的板栗自然亚分布区。  相似文献   

9.
孑遗植物银杏群体遗传多样性的ISSR分析   总被引:83,自引:4,他引:79  
采用ISSR分子标记技术,对江苏泰兴、美国纽约的栽培银杏(Ginkgo biloba)群体和中国3个可能为野生的银杏自然群体(浙江西天目山、贵州务川、湖北大洪山区)的遗传多样性水平和群体遗传结构进行了研究。用13个引物对5个群体共66个样品进行扩增,共得到88个清晰的扩增位点,其中多态性位点62个,多态位点百分率(PPB)为70.45%。POPGENE分析结果表明:与其他裸子植物相比,银杏具有丰富的遗传变异(He=0.2408;Ho=0.3599)。贵州务川群体的遗传多样性水平最高(PPB=56.82%,He=0.2089,Ho=0.3087),江苏泰兴栽培群体(PPB=34.09%,,Ho=0.1269,Ho=0.1858)和美国纽约的栽培群体(PPB=23.86%,,He=0.0884,Ho=0.1312)的遗传多样性水平较低。Nei′s遗传多样性分析和AMOVA分析表明,3个可能的自然群体间出现了一定程度的遗传分化(Gst=0.1476,Φst=14.26%)。群体间一定程度的遗传分化可能是人为选择压力和基因流障碍引起的。根据Nei′s遗传距离矩阵分别构建了群体间和个体间的遗传关系树状图。由UPGMA聚类分析可知,贵州务川群体与浙江西天目山群体优先聚类;美国纽约群体与湖北大洪山群体具有较近的亲缘关系,它们可能为同一野生群体的后裔。通过对银杏群体遗传结构的分析并结合群落学调查研究,结果表明:贵州务川银杏群体很可能为野生自然群体。基于银杏群体遗传学和生态学的研究结果,建议在自然银杏群体最适生境和遗传多样性最高的贵州务川建立银杏保护区。由于银杏群体间出现了一定程度的分化,建议3个自然群体间可进行植株和幼苗相互移栽,以提高群体间的基因交流,以最大限度地保护银杏的遗传多样性。  相似文献   

10.
对我国西南特有的菊科单种属植物栌菊木10个居群、149个个体、11个酶系统及16个酶位点的水平淀粉凝胶电泳分析表明,栌菊木的遗传多样性水平在特有种中较高,在居群水平上,平均每个位点的等位基因数A=1.1—1.4,多态位点百分数P=6.3%—43.8%,实际杂合度Ho=0.063~0.250,期望杂合度He=0.043~0.194;物种水平上A=1.6,P=37.5%,Ho=0.143,He=0.141。居群间遗传一致度I=0.902—1.000,杂合性基因多样度比率FST为0.2395。栌菊木居群间分化程度较大,云南南盘江流域碧云寺居群遗传多样性较低,明显低于金沙江流域的居群。栌菊木可能是来自冈瓦纳古陆祖先的后裔,可能是古地中海退却以后在金沙江干热河谷分化出来的特有属,并且可能由于湿度等生态因子的限制,其分布区未能进一步扩大,仅在南盘江流域形成零散分布。等位酶分析结果还表明栌菊木遗传多样性总体水平较高,建议对遗传多样性较高的金沙江流域的居群加以保护。  相似文献   

11.
正Dear Editor,In December 2019, a novel human coronavirus caused an epidemic of severe pneumonia(Coronavirus Disease 2019,COVID-19) in Wuhan, Hubei, China(Wu et al. 2020; Zhu et al. 2020). So far, this virus has spread to all areas of China and even to other countries. The epidemic has caused 67,102 confirmed infections with 1526 fatal cases  相似文献   

12.
Curcumin is the yellow pigment of turmeric that interacts irreversibly forming an adduct with thioredoxin reductase (TrxR), an enzyme responsible for redox control of cell and defence against oxidative stress. Docking at both the active sites of TrxR was performed to compare the potency of three naturally occurring curcuminoids, namely curcumin, demethoxy curcumin and bis-demethoxy curcumin. Results show that active sites of TrxR occur at the junction of E and F chains. Volume and area of both cavities is predicted. It has been concluded by distance mapping of the most active conformations that Se atom of catalytic residue SeCYS498, is at a distance of 3.56 from C13 of demethoxy curcumin at the E chain active site, whereas C13 carbon atom forms adduct with Se atom of SeCys 498. We report that at least one methoxy group in curcuminoids is necessary for interation with catalytic residues of thioredoxin. Pharmacophore of both active sites of the TrxR receptor for curcumin and demethoxy curcumin molecules has been drawn and proposed for design and synthesis of most probable potent antiproliferative synthetic drugs.  相似文献   

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14.
The young pistils in the melanthioid tribes, Hewardieae, Petrosavieae and Tricyrteae, are uniformly tricarpellate and syncarpous. They lack raphide idioblasts. All are multiovulate, with bitegmic ovules. The Petrosavieae are marked by the presence of septal glands and incomplete syncarpy. Tepals and stamens adhere to the ovary in the Hewardieae and the Petrosavieae but not in the Tricyrteae. Two vascular bundles occur in the stamens of the Hewartlieae and Tricyrtis latifolia. Ventral bundles in the upper part of the ovary of the Hewardieae are continuous with compound septal bundles and placental bundles in the lower part. Putative ventral bundles occur in the alternate position in the Tricyrteae and putative placental bundles in the opposite. position in the Petrosavieae. The dichtomously branched stigma in each carpel of the Tricyrteae is supplied by a bifurcated dorsal bundle.  相似文献   

15.
16.
Highlights
1. The N-terminal tail of histone H3 is specifically cleaved during EV71 infection.
2. Viral protease 3C is identified as a protease responsible for proteolytically processing the N-terminal H3 tail.
3. Our finding reveals a new epigenetic regulatory mechanism for Enterovirus 71 in virus-host interactions.  相似文献   

17.
Rasmussen’s encephalitis (RE) is a rare pediatric neurological disorder, and the exact etiology is not clear. Viral infection may be involved in the pathogenesis of RE, but conflicting results have reported. In this study, we evaluated the expression of both Epstein-Barr virus (EBV) and human herpes virus (HHV) 6 antigens in brain sections from 30 patients with RE and 16 control individuals by immunohistochemistry. In the RE group, EBV and HHV6 antigens were detected in 56.7% (17/30) and 50% (15/30) of individuals, respectively. In contrast, no detectable EBV and HHV6 antigen expression was found in brain tissues of the control group. The co-expression of EBV and HHV6 was detected in 20.0% (6/30) of individuals. In particular, a 4-year-old boy had a typical clinical course, including a medical history of viral encephalitis, intractable epilepsy, and hemispheric atrophy. The co-expression of EBV and HHV6 was detected in neurons and astrocytes in the brain tissue, accompanied by a high frequency of CD8+ T cells. Our results suggest that EBV and HHV6 infection and the activation of CD8+ T cells are involved in the pathogenesis of RE.  相似文献   

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19.
Shen  Jia-Yuan  Li  Man  Xie  Lyu  Mao  Jia-Rong  Zhou  Hong-Ning  Wang  Pei-Gang  Jiang  Jin-Yong  An  Jing 《中国病毒学》2021,36(1):145-148
正Dear Editor,Chikungunya virus (CHIKV), an arbovirus in the family of Togaviridae, genus Alphavirus, is transmitted by the A.aegyptii or A. albopictus mosquito, and causes disease in humans characterized by fever, rash, and arthralgia (Silva and Dermody 2017; Suhrbier 2019). It was first reported in 1953 in Tanzania, and caused only a few outbreaks and sporadic cases in Africa and Asia in last century. However, in the epidemic in 2004, CHIKV acquired mutations that conferred enhanced transmission by the A. albopictus mosquito(Schuffenecker et al. 2006). Since then, it has successively caused outbreaks in Africa, the Indian Ocean, South East Asia, the South America, and Europe (Zeller et al. 2016).  相似文献   

20.
In conclusion, the novel visual RT-LAMP assay is a simple, rapid, and sensitive approach for detection of SARS-CoV-2, and it is ready for application in primary care and community hospitals or health care centers, and even patients' own houses in response to the current SARS-CoV-2 epidemic because the assay does not require sophisticated equipment and skilled personnel. Furthermore, it is also ready to be used in fields for screening samples from wild animals and environments to facilitate the identification of potential intermediate hosts that mediate the cross-species transmission of SARS-CoV-2 from bats to humans.  相似文献   

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