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11.
草甘膦是一种具有内吸传导、杀草谱广、毒性低等特性的新型化学除草剂,对根除茶园常见杂草有特效。用草甘膦防除茶园杂草的最佳浓度因杂草种类不同而异,以一、二年生杂草为主的茶园用0.10%的浓度为宜,以多年生杂草为主的茶园用0.15%的浓度较好。用液量以杂草充分湿润为度。全年喷药一次或二次即可,若喷一次,宜在五月下旬进行;若秋季草害较重,则在八月下旬复喷一次。使用该方法除草,全年只需耗药费4.80元~6.40/亩,除草效果优于全年人工除草三次者,节省除草工7~9个/亩,增产5~7%,对保持茶园生态平衡,提高茶叶品质均有益。 相似文献
12.
《蒙古秘史》中的野生食用植物研究 总被引:7,自引:1,他引:6
哈斯巴根 《干旱区资源与环境》1996,10(1):87-96
经考证,在《蒙古秘史》中的植物古蒙古名称中,有山荆子、稠李、地榆、鹅绒委陵菜、葱、山韭、山丹和野韭等8种野生食用植物。植物区系及地理分布的研究表明,这些植物在十二世纪蒙古人所采集的地点,即现在的蒙古国肯特山脉地区仍有广泛分布。从民族植物学的研究看,它们在蒙古族民间被用于代粮、野菜、茶用、药用和调味品,比过去的利用有了很大的发展,已成为独特的植物利用文化。本文不仅对蒙古学研究能够提供可靠的依据,而且对寻找新的食用植物种类及其开发利用研究也提供了一些基本资料。 相似文献
13.
I. Vloutoglou B. D. L. Fitt J. A. Lucas 《European journal of plant pathology / European Foundation for Plant Pathology》1995,101(6):639-653
Conidia ofAlternaria linicola produced on infected linseed crops were mainly dispersed by wind. The numbers of conidia in the air above linseed crops collected by a Burkard spore sampler were greatest between 1200 h and 1300 h, when the relative humidity was lowest. Although numbers of conidia collected decreased with increasing height within and above the crop canopy, air-borneA. linicola conidia were present up to 80 cm above the crop canopy. Conidia ofA. linicola were transported by wind up to at least 40 m downwind from an artificial line inoculum source, but their numbers decreased with increasing distance from the source. In 1991, 1992, and 1993, the dispersal ofA. linicola conidia above linseed crops followed a seasonal periodicity which was influenced by weather conditions and cultural practices. The greatest numbers of conidia were collected during July, August and early September and coincided with periods favourable for sporulation and with an increase in the incidence of the disease in the senescent crop. Air-borneA. linicola conidia produced on point or line inoculum sources (naturally infected linseed stem debris) were responsible for the spread of the disease in linseed crops. In 1992 and 1993, the disease was first detected downwind from the sources, but by the end of the growing seasons, it had spread in all directions and up to 20 m and 60 m from the sources, respectively. Disease gradients were initially steep near the inoculum sources but they became flatter with time due to the secondary spread of the disease. 相似文献
14.
Attack of tea plant (Camellia sinensis (L.) O. Kuntze) leaves by the tea mosquito bugHelopeltis theivora (Hemiptera: Miridae) was positively correlated to temperature and rainfall, and partially to humidity, as determined in 12
varieties during the period 2000–2002. The insect attack was severe during the months of May–September, which had high temperature
and rainfall, and led to severe loss of biomass due to curling and drying up of the leaves. The biochemical response of these
12 varieties of tea to attack by the insect was determined with special reference to oxidative enzymes and flavonoid flavor
components. Insect attack led to an increase in the activities of the oxidative enzymes peroxidase, ascorbate peroxidase and
polyphenol oxidase. Activities of phenyl alanine ammonia lyase generally decreased as a result of insect attack, which was
significant in the United Planters Association of South India (UPASI) varieties. A significant decrease in polyphenols was
also obtained in UPASI varieties. HPLC analysis of catechins revealed a decrease in some of the catechins in the infected
leaves. Analysis of theaflavins from infusion of healthy andHelopeltis-infested tea leaves revealed no changes.
http://www.phytoparasitica.org posting Dec. 19, 2004. 相似文献
15.
Oded Cohen Ozgur Batuman Yoni Moskowits Alexander Rozov Elisha Gootwine Munir Mawassi Moshe Bar-Joseph 《Phytoparasitica》2005,33(2):141-148
Mechanical inoculations with contaminating tools and propagation of infected budwood were considered the main causes for the
omnipresence of multiple viroid species among citrus and other Middle Eastern and Mediterranean fruit trees and grapevines.
However, neither means could explain viroid infections of wild trees — scattered on terrains inaccessible to humans — nor
the finding of similar viroids among graft-incompatible plants. Northern hybridization of RNA extracts made of scrapings from
the surfaces of goat (Capra hircus) horns that were rubbed against etrog (Citrus medica) stems infected with a citrus viroids complex, revealed accumulation of considerable amounts ofCitrus exocortis viroids (CEVd) andHop stunt viroids (HSVd). Experimental transmission of both CEVd and HSVd was obtained by rubbing healthy citrus plants with goat horns that
had been rubbed 24 h earlier on infected etrog stems. These results implicate goats as possible vectors of viroids. Transmissionvia goats could have facilitated the long-range spread of viroids among cultivated and wild plants andvice versa and also among graft-incompatible plants. 相似文献
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19.
P. Galeffi G. Giunta S. Guida C. Cantale 《European journal of plant pathology / European Foundation for Plant Pathology》2002,108(5):479-483
Citrus tristeza virus (CTV) is one of the most destructive citrus virus diseases in the world. The construction of an engineered antibody, EMBL accession number AJ278109, able to specifically recognize its antigen, i.e. the coat protein of CTV, directly on infected plant material without any purification or manipulation of the entire woody plant. The potential uses of this engineered antibody are discussed. 相似文献
20.
Can wild relatives of sorghum provide new sources of resistance or tolerance against Striga species?
Summary The genus Striga contains some of the most noxious parasitic plants, which have a devastating impact on cereal production in Africa; of most importance are Striga hermonthica and Striga asiatica . Complete resistance to infection by Striga species does not exist in cultivated cereals. Of great interest is the possibility that wild relatives of cereals may provide a genetic basis for resistance or tolerance to infection and may be of enormous value for the development of resistant crops. A wild relative of cultivated sorghum, Sorghum arundinaceum , demonstrated tolerance to infection by S. asiatica , with little impact of S. asiatica on host growth or grain production compared with the detrimental impact of the parasite on cultivated sorghum. Infection by S.hermonthica , however, had a significant influence on host performance for both wild and cultivated sorghum. Differences in host:parasite responses may be explained by the timing of parasite attachment and differences in host specificity for these two Striga species. 相似文献