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Soil microorganisms alleviate the allelopathic effect of Eucalyptus grandis × E. urophylla leachates on Brassica chinensis 被引量:6
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作者 Fenglai Lu Lilang Zheng +3 位作者 Yueyuan Chen Dianpeng Li Rensen Zeng Huashou Li 《Journal of Forestry Research》 SCIE CAS CSCD 2017年第6期1198-1202,共5页
Soil microbes may be critical players in determining the allelopathic potential of some plants. Low levels of plant community biodiversity in Eucalyptus plantations have been attributed to the allelopathic potential o... Soil microbes may be critical players in determining the allelopathic potential of some plants. Low levels of plant community biodiversity in Eucalyptus plantations have been attributed to the allelopathic potential of these tree species. The role of soil microbes in the allelopathic effect of leaf leachates of the hybrid tree Eucalyptus grandis x E. urophylla, was tested in Petri dish assays with Brassica chinensis as a receiver plant. Soils were collected from either a local garden (soil A) or a Eucalyptus plantation (soil B) and half of each soil was sterilized to remove microbes. These soils were then treated with E. grandis x E. urophylla leachates for 0-72 h. Seed germination of B. chinensis was significantly inhibited in soils treated with leaf leachates relative to untreated soils. The inhibitory effect of the leaf leachates was more pronounced in sterilized soils. Total phenolic content was obvious lower in nonsterile leachate-treated soils than in sterile soils. Biomass of B. chinensis was negatively correlated with the total phenolic content in soils. Our findings suggest that soil microbes can alleviate the allelopathic potential of Eucalyptus and thereby its negative impact on plant growth. 展开更多
关键词 ALLeLOPATHY eucalyptus grandis x e. urophylla Leaf leachate Soil microbes
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Comparative microsporogenesis and flower development in Eucalyptus urophylla×E.grandis 被引量:2
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作者 Jun Yang Jun Lan +2 位作者 Pengqiang Yao Zhen Huang Xiangyang Kang 《Journal of Forestry Research》 SCIE CAS CSCD 2016年第2期257-263,共7页
Microsporogenesis and flower development in Eucalyptus urophylla × E. grandis were examined using chromosome tableting to provide a method to predict the meiotic stages in this species. Although microsporogenesis... Microsporogenesis and flower development in Eucalyptus urophylla × E. grandis were examined using chromosome tableting to provide a method to predict the meiotic stages in this species. Although microsporogenesis was normal, cytokinesis during meiosis of pollen mother cells occurred simultaneously, with strong asynchronism observed in the two different lengths of stamens in a flower bud. In a single flower, the developmental period of microsporogenesis in anthers on the longer stamens was always ahead of those on the shorter stamens. Flower development was also asynchronous at different locations on a branch. Flower buds on the upper side of the branch were larger in diameter than those on the lower side. In addition, a correlation was observed between microsporogenesis development and flower bud diameter growth. The pachy- tene stage was first observed when the diameter of the flower buds increased to 3.0 mm, and the majority of the meiotic stages were observed when bud diameters ranged from 3.5 to 5.0 mm. This study showed that the developmental stages of microsporogenesis in Eucalyptus urophylla × E. grandis could be distinguished readily, which may be applicable to future breeding studies. 展开更多
关键词 eucalyptus urophylla × e. grandis MICROSPOROGeNeSIS Flower development
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尾巨桉DH_(32-26)组培快繁技术 被引量:4
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作者 卢开成 《安徽农业科学》 CAS 2016年第14期133-135,共3页
[目的]探索尾巨桉DH_(32-26)组培快繁技术,为其规模化生产提供参考。[方法]采用组织培养手段,以尾巨桉DH_(32-26)半木质化萌发茎段为材料,对外植体诱导及无菌组织培养体系进行研究。[结果]最佳外植体诱导培养基为改良MS+6-BA 1.0 mg/L+N... [目的]探索尾巨桉DH_(32-26)组培快繁技术,为其规模化生产提供参考。[方法]采用组织培养手段,以尾巨桉DH_(32-26)半木质化萌发茎段为材料,对外植体诱导及无菌组织培养体系进行研究。[结果]最佳外植体诱导培养基为改良MS+6-BA 1.0 mg/L+NAA 0.5mg/L,发芽率为92.3%;最佳增殖培养基为改良MS+6-BA 0.4 mg/L+NAA 0.2 mg/L,增殖个数为3.7;最佳生根培养基为改良1/2MS+IBA 0.2 mg/L+ABT 0.3 mg/L,生根率可达98.3%。[结论]该研究获得了尾巨桉初代诱导、增殖和生根适宜培养基和培养条件,初步达到工厂化生产要求。 展开更多
关键词 尾巨桉 DH32 -26 外植体 组织培养 eucalyptus grandis &215 e.urophylla DH32 -26
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