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241.
油菜是我国重要的绿肥作物,除增加土壤肥力外,对后茬作物也有一定的化感作用。本文研究了不同浓度油菜浸提液(0.025、0.05和0.1 g·mL-1)对3种作物(燕麦、玉米和向日葵)种子萌发、幼苗生长及生理生化的影响。结果表明: 油菜浸提液对3种作物种子发芽率的影响不显著,但对燕麦有“低促高抑”的趋势,对向日葵有抑制的趋势。油菜浸提液高浓度处理对燕麦幼苗根和茎长、玉米幼苗茎长以及向日葵幼苗根长起抑制作用,低浓度处理对玉米幼苗根茎长起促进作用。燕麦和向日葵幼苗在浸提液浓度为0.05 g·mL-1时蛋白质含量最大,玉米在0.025 g·mL-1时蛋白质含量最大,显著高于对照。3个浓度下,向日葵脯氨酸含量均显著降低,玉米脯氨酸含量在浓度为0.05 g·mL-1时显著高于对照。玉米过氧化物酶(POD)活性在浸提液浓度为0.05 g·mL-1时最大,向日葵POD活性在浓度为0.025 g·mL-1时最大,与对照有显著差异,其余浓度处理与对照无显著差异。油菜浸提液浓度为0.025 g·mL-1时显著降低了燕麦超氧化物歧化酶(SOD)活性,3种作物幼苗过氧化氢酶(CAT)活性与对照均无显著差异。加入油菜浸提液后,向日葵幼苗丙二醛(MDA)含量在浓度为0.1 g·mL-1时显著增加,玉米幼苗MDA含量在不同浓度处理下均显著低于对照。综合分析,油菜浸提液对向日葵的化感抑制作用最强,其次为玉米、燕麦。 相似文献
242.
土壤养分分布具有高度空间异质性, 植物的根系觅养行为是其对土壤养分异质性的一种适应。不同植物为了适应养分异质性会产生不同的根系觅养行为, 通过调整自身的根系觅养范围、觅养精度和觅养速度来更好地吸收利用土壤中的养分。外来植物与本地植物的竞争是决定其成功入侵的重要因素, 土壤养分等环境因素会影响它们之间的竞争关系。近年来, 外来入侵植物的觅养行为逐渐受到人们的关注, 关于入侵植物根系觅养行为的研究成果陆续出现: (1)总体来看, 外来入侵植物具有较强的根系觅养能力, 但根系觅养范围与觅养精度之间的权衡关系还不确定; (2)营养异质性会影响入侵植物与本地植物之间的竞争, 反过来, 二者之间的竞争也会影响根系觅养行为对营养异质性的响应; (3)丛枝菌根真菌(arbuscular mycorrhizal fungi, AMF)能够提高入侵植物的根系觅养能力, 外来植物入侵能够改变入侵植物对AMF的偏好性, 形成AMF对入侵的正反馈作用, 而本地植物与AMF的相互作用也会影响入侵植物的竞争力。未来还应加强营养异质环境下种间竞争和AMF共生对入侵植物根系觅养行为的影响机制研究, 以及全球变化背景下入侵植物根系觅养行为的变化与机制方面的研究, 可以更深入地认识外来植物的觅养行为在其成功入侵中的作用, 并为利用营养调控来防控入侵植物提供理论依据。 相似文献
243.
[目的] 了解洞庭湖区入侵植物分布规律及其危害,对洞庭湖区入侵植物区系、种类组成、类型、生活型和原产地进行较为深入的研究。[方法] 通过实地调查、采集标本、查阅资料进行统计分析。[结果] 洞庭湖区外来入侵植物共有86种,隶属于24科64属,原产于美洲的有51种,占总数的58.6%,双子叶植物有21科53属73种,单子叶植物仅有5科12属13种,草本植物共84种,占97.6%,洞庭湖区入侵植物科的区系类型主要为世界广布;入侵植物属的区系类型以泛热带分布和世界广布为主。[结论] 洞庭湖区入侵植物种类较多、适应性强、繁殖速度快、繁殖能力强、传播途径多样、区系成分复杂且危害严重,应根据入侵现状对洞庭湖区外来入侵植物采取相应的的防治措施。 相似文献
244.
[目的] 了解福州市公园的外来入侵植物种类组成,分析其原产地及入侵等级等情况,能够为福州外来入侵植物的扩散、防控以及生物多样性保护提供参考依据。[方法] 对福州市4个区49个公园的外来入侵植物种类、原产地、生活型、入侵频度、危害程度(入侵等级)等进行调查和分析。[结果] 在调查的福州市所有公园内均有入侵植物分布,目前有入侵植物66种,隶属25科,其中菊科、豆科、苋科3个科为优势科,共计33种(占50.00%);从来源上看,大多数原产于美洲,其次是非洲、欧洲、亚洲;以草本植物为主,共有55种(占83.30%);从入侵频度看,入侵频度超过50%的入侵植物有7种,其中小蓬草的频度最高,为87.76%;从入侵等级来看,其中恶性(1级)入侵植物16种,严重(2级)入侵植物14种,局部(3级)入侵植物12种,一般(4级)入侵植物11种,有待观察类(5级)13种。[结论] 当前福州市公园内的外来植物入侵现象比较严重,应当加强该区域的入侵植物监测与预警,防止入侵植物扩散从而造成重大生态危害。 相似文献
245.
黄帚橐吾是青藏高原高寒草场中分布最广、危害极大的优势毒草,严重影响了该地区群落结构和草地畜牧业的发展。在介绍土著入侵种和替代防控概念及相关研究进展的基础上,针对黄帚橐吾目前缺乏高效经济生态防控措施的现状,结合国内外对入侵植物进行替代防控的经验与原则,提出了对黄帚橐吾进行替代防控的生态防控设想和黄帚橐吾替代植物选用的基本原则,初步划定了防控黄帚橐吾的替代植物范围。通过引种或者驯化乡土草种,在青藏高原培育禾本科、豆科植物或者建植禾豆混播人工草地,使其具备替代防控黄帚橐吾的潜力。 相似文献
246.
247.
Kris Budd Joe C. Gunn Tabitha Finch Katy Klymus Noah Sitati Lori S. Eggert 《Ecology and evolution》2020,10(12):5637-5650
The gut microbiome, or the community of microorganisms inhabiting the digestive tract, is often unique to its symbiont and, in many animal taxa, is highly influenced by host phylogeny and diet. In this study, we characterized the gut microbiome of the African savanna elephant (Loxodonta africana) and the African forest elephant (Loxodonta cyclotis), sister taxa separated by 2.6–5.6 million years of independent evolution. We examined the effect of host phylogeny on microbiome composition. Additionally, we examined the influence of habitat types (forest versus savanna) and diet types (crop‐raiding versus noncrop‐raiding) on the microbiome within L. africana. We found 58 bacterial orders, representing 16 phyla, across all African elephant samples. The most common phyla were Firmicutes, Proteobacteria, and Bacteroidetes. The microbiome of L. africana was dominated by Firmicutes, similar to other hindgut fermenters, while the microbiome of L. cyclotis was dominated by Proteobacteria, similar to more frugivorous species. Alpha diversity did not differ across species, habitat type, or diet, but beta diversity indicated that microbial communities differed significantly among species, diet types, and habitat types. Based on predicted KEGG metabolic pathways, we also found significant differences between species, but not habitat or diet, in amino acid metabolism, energy metabolism, and metabolism of terpenoids and polyketides. Understanding the digestive capabilities of these elephant species could aid in their captive management and ultimately their conservation. 相似文献
248.
Md. Nazim Uddin Takashi Asaeda Shahana H. Shampa Randall W. Robinson 《Ecology and evolution》2020,10(14):7463-7475
Invasive plants apply new selection pressures on neighbor plant species by different means including allelopathy. Recent evidence shows allelopathy functions as remarkably influential mediator for invaders to be successful in their invaded range. However, few studies have determined whether native and non‐native species co‐occurring with invaders have evolved tolerance to allelopathy. In this study, we conducted germination and growth experiments to evaluate whether co‐occurring native Juncus pallidus and non‐native Lolium rigidum species may evolve tolerance to the allelochemicals induced by Cyanara cardunculus in Australian agricultural fields. The test species were germinated and grown in pots filled with collected invaded and uninvaded rhizosphere soil of C. cardunculus with and without activated carbon (AC). Additionally, a separate experiment was done to differentiate the direct effects of AC on the test species. The soil properties showed invaded rhizosphere soils had higher total phenolic and lower pH compared with uninvaded soils. We found significant reduction of germination percentage and seedling growth in terms of above‐ and belowground biomass, and maximum plant height and root length of native in the invaded rhizosphere soil of C. cardunculus, but little effect on non‐native grass species. Even soil manipulated with AC showed no significant differences in the measured parameters of non‐native except aboveground biomass. Taken together, the results indicate allelochemicals induced by C. cardunculus exert more suppressive effects on native than non‐native linking the coevolved tolerance of those. 相似文献
249.
Roberto Arredondo-Valdés Francisco D. Hernández-Castillo Mario Rocandio-Rodríguez Julia C. Anguiano-Cabello Madai Rosas-Mejía Venancio Vanoye-Eligio Salvador Ordaz-Silva Imelda V. López-Sánchez Laura D. Carrazco-Peña Julio C. Chacón-Hernández 《Phyton》2021,90(3):895-906
The tomato (Solanum lycopersicum L.) is one of the world’s most important vegetable crops. Still, phytopathogenic bacteria affect the yield and quality of tomato cultivation, like Agrobacterium tumefeciens (At), Clavibacter
michiganensis subsp. michiganensis (Cmm), Pseudomonas syringae pv. tomato (Pst), Ralstonia solanacearum (Rs),
and Xanthomonas axonopodis (Xa). Synthetic chemical products are used mostly on disease plant control, but
overuse generates resistance to bacterial control. This study aimed to evaluate the in vitro antibacterial activity
of the ethanolic extract of Moringa oleifera Lam. leaves against At, Cmm, Pst, Rs, and Xa, as well as information
about this plant species’ chemical composition. Antibacterial activity against pathogens observed by microplate
technique, phytochemical screening, and FTIR analysis revealed different bio-active compounds on ethanolic
extracts with antibacterial activity. The growth inhibition rate ranged between 0.08% and 99.94%. The inhibitory
concentration, IC50, required to inhibit 50% of At, Cmm, Pst, Rs, and Xa bacterial growth, was 276.67, 350.48,
277.85, 351.49, and 283.22 mg/L, respectively. Inhibition of phytopathogen bacteria’s growth increased as the concentrations of the extract also increased. Moringa oleifera extract can be recommended as a potent bio-bactericide. 相似文献
250.
Lucy E. Ridding Adrian C. Newton Sally A. Keith Robin M. Walls Anita Diaz Richard F. Pywell James M. Bullock 《Ecography》2021,44(1):33-43
The extinction debt, delayed species extinctions following landscape degradation, is a widely discussed concept. But a consensus about the prevalence of extinctions debts is hindered by a multiplicity of methods and a lack of comparisons among habitats. We applied three contrasting species–area relationship methods to test for plant community extinction debts in three habitats which had different degradation histories over the last century: calcareous grassland, heathland and woodland. These methods differ in their data requirements, with the first two using information on past and current habitat area alongside current species richness, whilst the last method also requires data on past species richness. The most data‐intensive, and hence arguably most reliable method, identified extinction debts across all habitats for specialist species, whilst the other methods did not. All methods detected an extinction debt in calcareous grassland, which had undergone the most severe degradation. We conclude that some methods failed to detect an extinction debt, particularly in habitats that have undergone moderate degradation. Data on past species numbers are required for the most reliable method; as such data are rare, extinction debts may be under‐reported. 相似文献