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101.
102.
C. A. McCartney D. J. Somers G. Fedak R. M. DePauw J. Thomas S. L. Fox D. G. Humphreys O. Lukow M. E. Savard B. D. McCallum J. Gilbert W. Cao 《Molecular breeding : new strategies in plant improvement》2007,20(3):209-221
FHB resistance QTL alleles from Nyuubai, Sumai-3, and Wuhan-1 were evaluated for their effect on Fusarium head blight (FHB)
index, Fusarium damaged kernels (FDK), deoxynivalenol (DON) accumulation, plant height, anthesis date, and numerous grain
quality traits in three elite Canadian spring wheat backgrounds. The three FHB resistance parameters were negatively correlated
with plant height in the three populations. The Wuhan-1 4B resistance allele was the most effective resistance allele but
was associated with a 9.3 cm increase in plant height. The Wuhan-1 2D, Nyuubai 3BSc, Sumai-3 3BSc, Nyuubai 5AS, and Sumai-3
5AS alleles were also effective FHB resistance alleles in these populations. The Nyuubai and Sumai-3 3BS alleles were the
least effective of the FHB resistance alleles in the FHB nursery tests. The Sumai-3 5AS resistance allele was significantly
associated with reduced grain protein content, while the same trend was observed for the Nyuubai 5AS resistance allele but
was not significant. FHB resistance tended to increase with more FHB resistance alleles introgressed into the elite genetic
background, which suggested that marker-assisted selection (MAS) will prove useful for improving FHB resistance in Canadian
germplasm. 相似文献
103.
MARTIN D. VENTURAS EVAN D. MACKINNON ANNA L. JACOBSEN R. BRANDON PRATT 《Plant, cell & environment》2015,38(6):1060-1068
Xylem resistance to water stress‐induced cavitation is an important trait that is associated with drought tolerance of plants. The level of xylem cavitation experienced by a plant is often assessed as the percentage loss in conductivity (PLC) at different water potentials. Such measurements are constructed with samples that are excised underwater at native tensions. However, a recent study concluded that cutting conduits under significant tension induced cavitation, even when samples were held underwater during cutting. This resulted in artificially increased PLC because of what we have termed a ‘tension‐cutting artefact’. We tested the hypothesized tension‐cutting artefact on five species by measuring PLC at native tension compared with after xylem tensions had been relaxed. Our results did not support the tension‐cutting artefact hypothesis, as no differences were observed between native and relaxed samples in four of five species. In a fifth species (Laurus nobilis), differences between native and relaxed samples appear to be due to vessel refilling rather than a tension‐cutting effect. We avoided the tension‐cutting artefact by cutting samples to slightly longer than their measurement length and subsequent trimming of at least 0.5 cm of sample ends prior to measurement. 相似文献
104.
105.
Coding characters from different life stages for phylogenetic reconstruction: a case study on dragonfly adults and larvae,including a description of the larval head anatomy of Epiophlebia superstes (Odonata: Epiophlebiidae)
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Alexander Blanke Sebastian Büsse Ryuichiro Machida 《Zoological Journal of the Linnean Society》2015,174(4):718-732
The exclusive use of characters coding for specific life stages may bias tree reconstruction. If characters from several life stages are coded, the type of coding becomes important. Here, we simulate the influence on tree reconstruction of morphological characters of Odonata larvae incorporated into a data matrix based on the adult body under different coding schemes. For testing purposes, our analysis is focused on a well‐supported hypothesis: the relationships of the suborders Zygoptera, ‘Anisozygoptera’, and Anisoptera. We studied the cephalic morphology of Epiophlebia, a key taxon among Odonata, and compared it with representatives of Zygoptera and Anisoptera in order to complement the data matrix. Odonate larvae are characterized by a peculiar morphology, such as the specific head form, mouthpart configuration, ridge configuration, cephalic musculature, and leg and gill morphology. Four coding strategies were used to incorporate the larval data: artificial coding (AC), treating larvae as independent terminal taxa; non‐multistate coding (NMC), preferring the adult life stage; multistate coding (MC); and coding larval and adult characters separately (SC) within the same taxon. As expected, larvae are ‘monophyletic’ in the AC strategy, but with anisopteran and zygopteran larvae as sister groups. Excluding larvae in the NMC approach leads to strong support for both monophyletic Odonata and Epiprocta, whereas MC erodes phylogenetic signal completely. This is an obvious result of the larval morphology leading to many multistate characters. SC results in the strongest support for Odonata, and Epiprocta receives the same support as with NMC. Our results show the deleterious effects of larval morphology on tree reconstruction when multistate coding is applied. Coding larval characters separately is still the best approach in a phylogenetic framework. © 2015 The Linnean Society of London 相似文献
106.
The severity of wheat diseases increases when plants and pathogens are acclimatized to elevated carbon dioxide 总被引:1,自引:0,他引:1
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Zsolt Váry Ewen Mullins Jennifer C. McElwain Fiona M. Doohan 《Global Change Biology》2015,21(7):2661-2669
Wheat diseases present a constant and evolving threat to food security. We have little understanding as to how increased atmospheric carbon dioxide levels will affect wheat diseases and thus the security of grain supply. Atmospheric CO2 exceeded the 400 ppmv benchmark in 2013 and is predicted to double or even treble by the end of the century. This study investigated the impact of both pathogen and wheat acclimation to elevated CO2 on the development of Fusarium head blight (FHB) and Septoria tritici blotch (STB) disease of wheat. Here, plants and pathogens were cultivated under either 390 or 780 ppmv CO2 for a period (two wheat generations, multiple pathogen subcultures) prior to standard disease trials. Acclimation of pathogens and the wheat cultivar Remus to elevated CO2 increased the severity of both STB and FHB diseases, relative to ambient conditions. The effect of CO2 on disease development was greater for FHB than for STB. The highest FHB disease levels and associated yield losses were recorded for elevated CO2‐acclimated pathogen on elevated CO2‐acclimated wheat. When similar FHB experiments were conducted using the disease‐resistant cultivar CM82036, pathogen acclimation significantly enhanced disease levels and yield loss under elevated CO2 conditions, thereby indicating a reduction in the effectiveness of the defence pathways innate to this wheat cultivar. We conclude that acclimation to elevated CO2 over the coming decades will have a significant influence on the outcome of plant–pathogen interactions and the durability of disease resistance. 相似文献
107.
Tissue‐specific and pathogen‐inducible expression of a fusion protein containing a Fusarium‐specific antibody and a fungal chitinase protects wheat against Fusarium pathogens and mycotoxins
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Wei Cheng He‐Ping Li Jing‐Bo Zhang Hong‐Jie Du Qi‐Yong Wei Tao Huang Peng Yang Xian‐Wei Kong Yu‐Cai Liao 《Plant biotechnology journal》2015,13(5):664-674
Fusarium head blight (FHB) in wheat and other small grain cereals is a globally devastating disease caused by toxigenic Fusarium pathogens. Controlling FHB is a challenge because germplasm that is naturally resistant against these pathogens is inadequate. Current control measures rely on fungicides. Here, an antibody fusion comprised of the Fusarium spp.‐specific recombinant antibody gene CWP2 derived from chicken, and the endochitinase gene Ech42 from the biocontrol fungus Trichoderma atroviride was introduced into the elite wheat cultivar Zhengmai9023 by particle bombardment. Expression of this fusion gene was regulated by the lemma/palea‐specific promoter Lem2 derived from barley; its expression was confirmed as lemma/palea‐specific in transgenic wheat. Single‐floret inoculation of independent transgenic wheat lines of the T3 to T6 generations revealed significant resistance (type II) to fungal spreading, and natural infection assays in the field showed significant resistance (type I) to initial infection. Gas chromatography–mass spectrometry analysis revealed marked reduction of mycotoxins in the grains of the transgenic wheat lines. Progenies of crosses between the transgenic lines and the FHB‐susceptible cultivar Huamai13 also showed significantly enhanced FHB resistance. Quantitative real‐time PCR analysis revealed that the tissue‐specific expression of the antibody fusion was induced by salicylic acid drenching and induced to a greater extent by F. graminearum infection. Histochemical analysis showed substantial restriction of mycelial growth in the lemma tissues of the transgenic plants. Thus, the combined tissue‐specific and pathogen‐inducible expression of this Fusarium‐specific antibody fusion can effectively protect wheat against Fusarium pathogens and reduce mycotoxin content in grain. 相似文献
108.
1949-2008年黄土高原沟壑区农业生态经济系统耦合分析——以陕西长武县为例 总被引:3,自引:0,他引:3
在分析农业经济系统与农业生态系统相互胁迫、动态演进关系的基础上,采用改进的熵值法确定了位于黄土高原沟壑区的长武县农业生态经济系统评价指标权重,利用耦合度模型分析了1949-2008年长武县农业生态经济系统耦合规律.结果表明:1949-2008年,长武县农业生态经济系统的发展经历了"粗放式传统农业阶段-农业机械化进程阶段-前现代化农业协调发展阶段"3个历史时期,与国家宏观经济政策调控效应基本吻合,系统耦合在"协调发展"和"极限发展"间经历了两起两落的急剧变化过程.1955-1961年、1984-1992年,长武县农业生态经济系统处于极限化耦合态势;1962-1965年、1981-1983年,为纠正前阶段宏观政策后的快速过渡期;1949-1954年、1966-1980年为生态系统与经济系统的低水平协调发展阶段;1993年以后,农业生态经济系统经过螺旋式发展,进入高水平协调发展阶段.目前,长武县农业生态经济系统有突破协调发展水平,并向极限化发展的潜在危险.良好的农业政策和外部环境能够促进农业生态经济系统在协调发展的水平上稳定发展,反之,容易出现系统相悖发展的局面. 相似文献
109.
目的:探讨全髋关节置换术与股骨头置换术治疗对比。方法:回顾性的分析对2007年1月-2008年12月年我院接收的70例60岁以上的老年股骨颈骨折的进行股骨头置换和全髋关节置换两组不同手术方式的临床资料。结果:两组股骨颈骨折治疗的手术时间、住院时间及术后并发症及治疗效果无明显统计学差异,两组术后半年到一年半的Harris评分较术前评分有显著的统计学意义。结论:人工股骨头置换术和髋关节置换是治疗老年股骨颈骨折的有效方法,可根据患者的自身情况、疾病特点等选择不同术式。 相似文献
110.
Amanda Gatesman Ammer Karen E. Hayes Karen H. Martin Lingqing Zhang George A. Spirou Scott A. Weed 《Journal of visualized experiments : JoVE》2011,(53)
Loco-regional invasion of head and neck cancer is linked to metastatic risk and presents a difficult challenge in designing and implementing patient management strategies. Orthotopic mouse models of oral cancer have been developed to facilitate the study of factors that impact invasion and serve as model system for evaluating anti-tumor therapeutics. In these systems, visualization of disseminated tumor cells within oral cavity tissues has typically been conducted by either conventional histology or with in vivo bioluminescent methods. A primary drawback of these techniques is the inherent inability to accurately visualize and quantify early tumor cell invasion arising from the primary site in three dimensions. Here we describe a protocol that combines an established model for squamous cell carcinoma of the tongue (SCOT) with two-photon imaging to allow multi-vectorial visualization of lingual tumor spread. The OSC-19 head and neck tumor cell line was stably engineered to express the F-actin binding peptide LifeAct fused to the mCherry fluorescent protein (LifeAct-mCherry). Fox1nu/nu mice injected with these cells reliably form tumors that allow the tongue to be visualized by ex-vivo application of two-photon microscopy. This technique allows for the orthotopic visualization of the tumor mass and locally invading cells in excised tongues without disruption of the regional tumor microenvironment. In addition, this system allows for the quantification of tumor cell invasion by calculating distances that invaded cells move from the primary tumor site. Overall this procedure provides an enhanced model system for analyzing factors that contribute to SCOT invasion and therapeutic treatments tailored to prevent local invasion and distant metastatic spread. This method also has the potential to be ultimately combined with other imaging modalities in an in vivo setting. 相似文献