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51.
自然保护区管理效果影响因素 总被引:11,自引:2,他引:11
自然保护区的管理效果是保护区管理工作能力的重要考核指标。由于管理基础、管理机制和管理行为的不同,对保护区的管理效果产生影响的因素也有差异。为了剖析保护区管理过程中各项管理要素对管理效果产生影响情况及其重要程度,从林业系统中选取154个国家级自然保护区进行问卷调查,从26项管理要素中得到14项能体现管理有效性的关键评价指标,在此基础上。利用X^2检验的方法,分析这些关键评价指标与保护区的管理效果之间的关系,为今后的管理工作提供参考依据。经过研究,自然保护区管理效果的3个指标(保护状况E1、保护区控制E2、对当地社区经济效益的影响E3)中,目前E1在各个保护区中的管理效果得分中最高,这说明维护保护区的保护状况仍是各个保护区最为重视的工作目标;而保护区管理有效性评价指标中各个因子对于管理效果有不同的影响结果。在这些管理评价指标中,宣传项目是唯一对保护区管理效果中的3个指标都有影响的因素,并对E1这一管理效果因素影响最大,而管理监督评价和旅游管理与收费则是分别对E2、E3的影响最大。通过分析,将会更加明确保护区的管理因素中各个指标的重要性,通过对采取合理的方式,最终可以提高保护区的管理效果。 相似文献
52.
草甸棕壤水稻田磷酸酶活性及对施肥措施的响应 总被引:8,自引:0,他引:8
1 引 言土壤有机磷是一种重要的土壤磷素资源 .我国大部分土壤中有机磷占土壤全磷的 2 0 %~ 50 % ,但在森林和草原植被下的土壤可占到 50 %~ 80 % [9].土壤磷酸酶活性直接影响到有机磷库的利用 ,即磷酸酶活性是衡量土壤肥力 ,尤其是土壤有效磷水平的一个重要参考指标[15 ].土壤磷酸酶(Phosphatases)是催化含磷有机酯和酐水解的一类酶的总称 ,其活性高低直接影响着土壤中有机磷的分解转化及其生物有效性 .其中 ,磷酸单酯酶 (酸性、中性、碱性磷酸酶 )活性一直是土壤磷酸酶研究的重点[18].由于土壤中有机磷化合物的复杂性 ,除了磷酸单… 相似文献
53.
Identification of quantitative trait loci for four morphologic traits under water stress in rice (Oryza sativa L.) 总被引:1,自引:0,他引:1
Bing Yue Weiya Xue Lijun Luo Yongzhong Xing 《遗传学报》2008,35(9):569-575
Late season drought coinciding with the rice booting to heading stage affects the development of plant height,panicle exsertion,and flag leaf size,and causes significant yield loss.In this study,a recombinant inbred line population derived from a cross between paddy and upland cultivars was used for data collection of the morphologic traits under well water and drought stress conditions.bought stress was applied at the stage of panicle initiation in the field in 2002 and at the booting stage in PVC pipes in 2003.The data from stress con ditions and their ratios(tait measured under stress condition/trait measured under well water condition)or differences(trait measured under stress condition minus trait measured under well water condition)were used for OTL analysis.Totally,17 and 36 QTLs for these traits were identified in 2002 and 2003,respectively,which explained a range of 2.58%-29.82%Of the phenotypic variation.Among them,six QTLs were commonly identified in the two years,suggesting that the drought stress in the two years was different.The genetic basis of these traits will provide useful information for improving rice late season drought resistance,and their application as indirect indices in rice late season drought resistance screening was also discussed. 相似文献
54.
沙田柚系列遗传关系的RAPD标记研究 总被引:9,自引:0,他引:9
采用 RAPD标记技术分析了沙田柚系列 1 2个样品的遗传关系。利用经筛选具多态性的 1 4个 1 0碱基随机引物对 1 2个样品进行 DNA随机扩增 ,获得清晰可重复的位点 99个 ,其中多态性位点 5 8个 ,占 5 8.89% ;在部分样品中检出了特异性 RAPD标记 1 9个 ,占 1 9.1 9% ;通过样品间遗传相似性系数比较与 UPGMA聚类分析 ,并根据历史事实可知 ,广西沙田柚、梅州金柚为沙田柚的无性繁殖系 ,软枝系沙田柚、沙田柚早熟单株为沙田柚的芽变后代 ,梅花早柚、菊花心沙田柚、冬瓜圈沙田柚、段氏柚、垫江沙田柚、古老钱沙田柚为沙田柚的实生变异品系。 相似文献
55.
南北样带温带区栎属树种种子化学组成与气候因子的关系 总被引:1,自引:0,他引:1
选取南北样带温带区8个核心分布区的7种优势栎属树种作为对象,通过检测种子的化学组成,包括淀粉、蛋白质、油脂、可溶性总糖、单宁和脯氨酸,分析其化学组成与气候因子之间的关系,结果发现:在气候因子中,温度是影响种子化学组成的主要因素,日照时数次之,而降水没有明显影响.在南北样带温带区,随纬度的增加,温度降低,年日照时数增加,生长积温减少,生长季缩短,淀粉含量积累下降,并趋向于水解为可溶性糖类;同时,从南到北,为适应低温的环境条件,栎属树种通过增加种子蛋白质、可溶性总糖和脯氨酸的含量,以提高种子的抗寒性.栎属树种种子的化学组成之间存在一定的相互关系,可溶性总糖、蛋白质和脯氨酸之间呈正相关关系,它们三者与淀粉均为负相关,种子化学组成之间的这种相互关系是植物对环境适应的生态策略. 相似文献
56.
Fu Lijun An Xinli Li Dong Zhou Lijian Tian Yun Zheng Tianling 《World journal of microbiology & biotechnology》2011,27(12):2949-2956
The bacterium BS02 which is closely related to the genus Vibrio sp. and capable of inhibiting the toxic dinoflagellate Alexandrium tamarense was isolated from a mangrove area in Zhangjiangkou, Fujian Province, China. The bacterium was not species-specific since
it displayed varying degrees of lysing activities against eight of the eighteen algae tested. There was a close interaction
between initial bacterial and A. tamarense cell densities, indicating that algal growth was prompted at low bacterial concentrations, while the number of the alga cells
was reduced at high concentrations. Alga-lysing characterization of Vibrio sp. BS02 suggested that the alga-lysing substance was extracellularly produced, less than 500 in molecular weight, as well
as non proteinaceous, stable under wide range of temperature and pH conditions, UV radiation, repeated freezing and thawing
and heavy metal treatments. These findings suggested that BS02 could play an important role in controlling harmful algal blooms. 相似文献
57.
Cell differentiation generally corresponds to the cell cycle, typically forming a non-dividing cell with a unique differentiated morphology, and Arabidopsis trichome is an excellent model system to study all aspects of cell differentiation. Although gibberellic acid is reported to be involved in trichome branching in Arabidopsis, the mechanism for such signaling is unclear. Here, we demonstrated that GLABROUS INFLORESCENCE STEMS (GIS) is required for the control of trichome branching through gibberellic acid signaling. The phenotypes of a loss-of-function gis mutant and an overexpressor showed that GIS acted as a repressor to control trichome branching. Our results also show that GIS is not required for cell endoreduplication, and our molecular and genetic study results have shown that GIS functions downstream of the key regulator of trichome branching, STICHEL (STI), to control trichome branching through the endoreduplication-independent pathway. Furthermore, our results also suggest that GIS controls trichome branching in Arabidopsis through two different pathways and acts either upstream or downstream of the negative regulator of gibbellic acid signaling SPINDLY (SPY). 相似文献
58.
Zinc finger protein5 is required for the control of trichome initiation by acting upstream of zinc finger protein8 in Arabidopsis 总被引:4,自引:0,他引:4
Arabidopsis (Arabidopsis thaliana) trichome development is a model system for studying cell development, cell differentiation, and the cell cycle. Our previous studies have shown that the GLABROUS INFLORESCENCE STEMS (GIS) family genes, GIS, GIS2, and ZINC FINGER PROTEIN8 (ZFP8), control shoot maturation and epidermal cell fate by integrating gibberellins (GAs) and cytokinin signaling in Arabidopsis. Here, we show that a new C2H2 zinc finger protein, ZFP5, plays an important role in controlling trichome cell development through GA signaling. Overexpression of ZFP5 results in the formation of ectopic trichomes on carpels and other inflorescence organs. zfp5 loss-of-function mutants exhibit a reduced number of trichomes on sepals, cauline leaves, paraclades, and main inflorescence stems in comparison with wild-type plants. More importantly, it is found that ZFP5 mediates the regulation of trichome initiation by GAs. These results are consistent with ZFP5 expression patterns and the regional influence of GA on trichome initiation. The molecular analyses suggest that ZFP5 functions upstream of GIS, GIS2, ZFP8, and the key trichome initiation regulators GLABROUS1 (GL1) and GL3. Using a steroid-inducible activation of ZFP5 and chromatin immunoprecipitation experiments, we further demonstrate that ZFP8 is the direct target of ZFP5 in controlling epidermal cell differentiation. 相似文献
59.
胰岛素抵抗(insulin resistance, IR)是多种代谢性疾病的共同病理基础,运动作为改善这一病理过程的重要辅助治疗手段,其干预方式、强度和持续时间等尚未明确。MG53(mitsugumin 53)是一种近年来备受关注的骨骼肌细胞膜修复蛋白,有研究表明其不仅是"效应分子",同时也是重要的信号分子——介导多条信号转导通路发挥广泛的生物学效应。本文通过综述MG53调控胰岛素抵抗发生发展的过程,以及MG53介导运动改善胰岛素抵抗的可能信号转导机制,为运动辅助治疗胰岛素抵抗提供新思路。 相似文献
60.
Qiangnu Zhang Lijun Qiao Juan Liao Quan Liu Pengyu Liu Liping Liu 《Journal of cellular and molecular medicine》2021,25(8):3772-3784
Due to the lack of a suitable gene signature, it is difficult to assess the hypoxic exposure of HCC tissues. The clinical value of assessing hypoxia in HCC is short of tissue-level evidence. We tried to establish a robust and HCC-suitable hypoxia signature using microarray analysis and a robust rank aggregation algorithm. Based on the hypoxia signature, we obtained a hypoxia-associated HCC subtypes system using unsupervised hierarchical clustering and a hypoxia score system was provided using gene set variation analysis. A novel signature containing 21 stable hypoxia-related genes was constructed to effectively indicate the exposure of hypoxia in HCC tissues. The signature was validated by qRT-PCR and compared with other published hypoxia signatures in multiple large-size HCC cohorts. The subtype of HCC derived from this signature had different prognosis and other clinical characteristics. The hypoxia score obtained from the signature could be used to indicate clinical characteristics and predict prognoses of HCC patients. Moreover, we reveal a landscape of immune microenvironments in patients with different hypoxia score. In conclusion, we identified a novel HCC-suitable 21-gene hypoxia signature that could be used to estimate the hypoxia exposure in HCC tissues and indicated prognosis and a series of important clinical features in HCCs. It may enable the development of personalized counselling or treatment strategies for HCC patients with different levels of hypoxia exposure. 相似文献