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Effects of salinity on leaf characteristics and CO2/H2O exchange of Kandelia candel (L.) Druce seedlings
salinity mangrove cell structure
2015/3/6
Effects of salinities on leaf characteristics and CO2/H2O exchange of mangrove species Kandelia candel seedlings were studied in a pot experiment. The seedlings grown in salinity of 50‰ caused a stron...
Relationship of leaf ultrastructure of mangrove Kandelia candel (L.) Druce to salt tolerance
Kandelia candel Druce salt stress mesophyll cell ultrastructure
2015/2/6
The leaf ultrastructure of mangrove Kandelia candel (L.) Druce planted in pots under different salinity conditions was compared under a transmission electron microscope (TEM). The results showed that ...
Effects of Planting Depth on the Growth of Viviparous Seeds of Kandelia candel
Kandelia candel viviparous seeds planting depth rooting part
2009/3/6
We examined the rooting of viviparous seeds of Kandelia candel planted at different depths, as a part of the basic studies aiming at mass production of seedlings for efficient afforestation of mangrov...
Effects of Plant Hormone Treatment on the Growth of Viviparous Seed of Kandelia candel
Kandelia candel viviparous seed growth plant hormones promote
2009/3/4
In this study, we examined the effect of some plant hormones on the growth of viviparous seeds of Kandelia candel to clarify its growth mechanism. Root growth tended to be promoted by all plant hormon...
Effects of the Size of Viviparous Seeds of Kandelia candel on the Initial Growth after Planting
Kandelia candel size viviparous seed root premodia initial growth
2009/3/4
In this study of the conditions of viviparous seed usable for seedling production, we examined the effects of size of viviparous seeds of Kandelia candel and the formation of root premodia on the grow...
摘要通过对九龙江口秋茄红树林人工模拟凋落叶自然分解过程中落叶腐解与落叶腐解微生物变化的研究,结果表明:1.随落叶分解进程,落叶腐解微生物数量有了显著地变化;就细菌、放线菌和丝状真菌等三大类群微生物数量来看,整个过程以细菌占绝对优势,其数量在200×104一8800×104个/克干重,占三大类群微生物总数量的96—99%以上。这表明细菌是落叶分解起主要作用的微生物类群。2.微生物各生理类群中,以氨化...
摘要:
在台湾北部淡水河河口沼泽地带的秋茄(水笔仔),依其林冠高度略可分成高、矮两个亚种群(Subpopulation)。矮生秋茄长在地面较高的河边,高生秋茄则沿着一条潮溪,长在较低处。使用淀粉凝胶方法研究同功酶组合型式,判断这个地区的区域种群的遗传结构,发现生长在沼泽区内较干燥地带的秋茄和长在潮湿地带的秋茄遗传上的分化程度很低(Fst= 0.043)。这可能是因为区内的基因流传很顺畅,抵消了可能...