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11.
Phylogenetic utility of the nuclear gene arginine decarboxylase: an example from Brassicaceae 总被引:10,自引:2,他引:8
Arginine decarboxylase (ADC) is an important enzyme in the production of
putrescine and polyamines in plants. It is encoded by a single or low-copy
nuclear gene that lacks introns in sequences studied to date. The rate of
Adc amino acid sequence evolution is similar to that of ndhF for the
angiosperm family studied. Highly conserved regions provide several target
sites for PCR priming and sequencing and aid in nucleotide and amino acid
sequence alignment across a range of taxonomic levels, while a variable
region provides an increased number of potentially informative characters
relative to ndhF for the taxa surveyed. The utility of the Adc gene in
plant molecular systematic studies is demonstrated by analysis of its
partial nucleotide sequences obtained from 13 representatives of
Brassicaceae and 3 outgroup taxa, 2 from the mustard oil clade (order
Capparales) and 1 from the related order Malvales. Two copies of the Adc
gene, Adc1 and Adc2, are found in all members of the Brassicaceae studied
to data except the basal genus Aethionema. The resulting Adc gene tree
provides robust phylogenetic data regarding relationships within the
complex mustard family, as well as independent support for proposed tribal
realignments based on other molecular data sets such as those from
chloroplast DNA.
相似文献
12.
在温室条件下研究了水分亏缺对银合欢根瘤的水分关系、固氮酶活性(乙炔还原活性)、呼吸活性以及蔗糖代谢有关酶活性的影响。随着土壤含水量的下降,根瘤水势也相继下降。土壤干旱不但显著地抑制了根瘤乙炔还原的活性,而且对根瘤的呼吸活性、ATP的产生以及催化蔗糖降解的碱性转化酶和蔗糖合成酶的活性也具强烈的抑制作用。然而,根瘤可溶性总糖含量则不受土壤干旱的影响。用呼吸抑制剂DNP处理根瘤后,其固氮酶活性、呼吸活性及ATPI含量都受到极显著的抑制。这都表明,水分胁迫对根瘤呼吸活性及ATP产生的抑制可解释干旱条件下固氮酶活性的下降。 相似文献
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NATHAN K. WONG JOSH DORROUGH JEFF R. HIRTH JOHN W. MORGAN ERIS O'BRIEN 《Austral ecology》2007,32(6):617-625
Abstract Native vegetation has been destroyed or dramatically modified throughout agricultural regions of southern Australia. Extensive restoration of native perennial vegetation is likely to be crucial in these areas for the persistence of native plant and animal species, to ameliorate dryland salinity and soil degradation, and to maintain long‐term agricultural production. The long‐term resilience of these systems will be dependent on the ability of key functional taxa, such as perennial shrubs, to recruit and persist. In this study, we examine the factors limiting establishment of two perennial shrubs in formerly cropped land, the rare Maireana rohrlachii and the common Maireana decalvans. Field and laboratory observations suggest that establishment of both species is not limited by life‐history traits following cultivation. Both species established and persisted under varying levels of plant competition. Similarities existed between species in their initial germination rates. Weak differences were found between species in the growth and survival rates under different levels of competition. The main difference between the two species was in the decline of germinability of fruits with increasing fruit age. From the data, it is difficult to determine what factors limit the establishment of perennial shrubs in these landscapes. The main hypothesis that can be advanced is that establishment of shrub species appears to be limited by propagule availability and this is likely to be a function of past and present grazing management rather than cultivation per se. Further investigation of these land‐use practices may give greater insight into the factors affecting the establishment of this life form across these landscapes. 相似文献
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<正>翼手目为哺乳动物中的第二大目,中国的翼手目多样性也在不断更新,Smith和解焱(2009)统计中国翼手目118种,蒋志刚等(2015)则认为中国翼手目有7科34属134种。广东省翼手目有6科24属55种(邹发生和叶冠锋,2016),此后也仍陆续有新纪录,如长指鼠耳蝠(Myotis longipes)(张琴等,2017)、卡氏伏翼(Hypsugo cadornae)(Xie et al., 2021);我们前期对澳门翼手目的调查,发现5科8属10种(黄继展等,2013)。 相似文献
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栅藻对水环境中镍的累积效应与机理分析 总被引:1,自引:0,他引:1
对不同Scenedesmus品种的藻细胞从含镍水溶液 (10mg/L)中累积金属镍的能力进行了分析 ,结果表明 :藻细胞对镍的生物累积量表现出明显的品种差异性。ScenedesmusquadricaudaFACHB 4 4和ScenedesmusquadricaudaFACHB 5 0 6表现出很强的累积能力 (累积量达到 5~ 6mgNi /g干重 ) ,而Scenedesmussp .FACHB 4 16和Scenedesmussp .FACHB 4 89在相同条件对金属镍累积量要少得多 (1~ 1.5mgNi /g干重 )。这种差异可能与不同品种藻细胞间的形态结构和生理特性是相关的。对S .quadricaudaFACHB 4 4重金属抗性和累积能力进一步的分析表明 ,S .quadricaudaFACHB 4 4用于含镍重金属废水处理是非常有效的 ,在高浓度 (10 0mg/L)的镍溶液中 ,藻细胞的最大累积量能达到 (2 6 .7mgNi/g干重 )。对该藻细胞镍累积动力学分析发现 :藻细胞对镍的生物累积包括一个快速的被动吸附过程 (5min ,结合 70 %的镍 )和一个缓慢的耗能累积过程 (2~ 3h时间内的累积量占总量的 2 0 %~ 30 % )。与其他藻类相比 ,S .quadricaudaFACHB 4 4对水溶液中镍的耗能累积量明显高于其他藻类。透射电子显微镜(TEM)和X射线能谱 (EDX)分析结果均表明 ,藻细胞耗能累积的镍主要集中在原生质体中 ,尤以淀粉粒和染色质中为多。 相似文献
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Nonparametric spline regression with prior information 总被引:1,自引:0,他引:1