坦桑尼亚塞伦盖蒂地区农业生态系统中入侵杂草臭草的土壤种子库与制图

G. Bulenga, K. P. Sibuga, E. Mtengeti
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摘要

在塞伦盖蒂地区的一些地区,番茄色霉的传播激发了人们对土壤种子库预测和绘制其分布图的兴趣。从每个农业生态系统中选取30个集群,即休耕地、放牧地和耕地,进行土壤种子库评估。每个集群随机划分为5个20平方米的地块。使用直径为10 cm、长度为5 cm的圆柱体从0-5 cm、5-10 cm和10-15 cm深度采集土壤。使用手持式GPS (Map76 cx)沿横断面获取坐标。每个土壤样品在六偏磷酸钠(50 g/L)和碳酸氢钠(25 g/L)的溶液中浸泡至少30分钟,然后倒在一组三种不同尺寸的筛子上以去除碎片。将结果换算为每平方米杂草种子数,采用R软件3.5.1进行统计分析。采用Quantum GIS(1.8.0)软件绘制杂草分布图。各农业生态系统土壤种子库在0 ~ 5 cm土层至10 ~ 15 cm土层显著降低(p <0.05)。不同土地类型的杂草种子密度差异显著,但休耕地最高,其次为耕地(p <0.05)。耕地表层暹罗杂草种子密度(1254粒/m2)是底层暹罗杂草种子密度(597粒/m2)的两倍多。暹罗杂草被发现有能力在各种各样的土壤中茁壮成长,因此增加了其入侵的成功。塞伦盖蒂地区及周边地区的臭草分布图,根据其蔓延和侵害程度,提供了对臭草侵袭性的深入了解。今后应进一步研究休耕年限与臭草土壤种子库的关系、土壤理化性质及其对臭草分布的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Soil seed bank and mapping Chromolaena odorata an invasive weed in agro-ecosystems of Serengeti district, Tanzania
The spread of Chromolaena odorata in some parts of Serengeti district has stimulated interest in the prediction of their soil seed bank and mapping its distribution. Thirty clusters from each agro-ecosystem namely fallow land, grazing land, and cultivated land were sampled for soil seed bank assessment. Each cluster was randomly demarcated into five 20 m2 plots. Soils were collected from 0-5 cm, 5-10 cm, and 10-15 cm depths using a 10 cm diameter and 5 cm length cylinder. Coordinates were taken using a hand held GPS (Map76 cx) along transects. Each soil sample was soaked for a minimum of 30 minutes in a solution of sodium hexametaphosphate (50 g/L) and sodium bicarbonate (25 g/L) and poured over a set of three different sieve sizes to remove debris. The results were converted to number of weed seeds per square meter, and statistically analysed using R software version 3.5.1. Quantum GIS (1.8.0) was used to map the distribution of the weed. The soil seed bank in all agro-ecosystems decreased significantly (p <0.05) from 0-5 cm to 10-15 cm soil depths. Mean weed seed densities varied depending on land use but significantly highest in fallow land followed by cultivated land (p <0.05). In cultivated land the top soil had more than twice Siam weed seed densities (1254 seeds/m2) than in the bottom soil layers (597 seeds/m2). The Siam weed was found to have ability to thrive in a wide variety of soils, hence increase its invasion success. Distribution maps of C. odorata in Serengeti district and surrounding areas provide insight on the aggressiveness of the weed according to its spread and infestation levels. Future research work should be carried out to study fallow age in relation to soil seed bank of Chromolaena odorata and physio-chemical properties of the soil and their influence on distribution of the weed.
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