首页 | 本学科首页   官方微博 | 高级检索  
     检索      

有机颗粒肥施入量对穴盘辣椒幼苗生长的影响
引用本文:程云霞,陈健,刘迁杰,时振宇,贾凯,魏少伟,俞安炜,崔拥民,吴慧.有机颗粒肥施入量对穴盘辣椒幼苗生长的影响[J].新疆农业科学,2020,57(1):104-111.
作者姓名:程云霞  陈健  刘迁杰  时振宇  贾凯  魏少伟  俞安炜  崔拥民  吴慧
作者单位:1. 新疆农业大学林学与园艺学院,乌鲁木齐 830052; 2. 和田地区农业技术推广中心,新疆和田 848000; 3. 石河子大学农学院园艺系,新疆石河子 832000; 4. 新疆沙田农业综合开发有限公司,新疆和田 848000
基金项目:新疆维吾尔自治区区域协同创新专项(科技援疆计划)(2017E0231);新疆农业大学大学生创新创业项目(201810758015);新疆维吾尔自治区园艺学重点学科(2016107583)
摘    要:【目的】筛选出适合穴盘辣椒生长的有机颗粒肥施入量,为育苗过程中减少营养液使用及培育健壮辣椒幼苗提供参考。【方法】瑞霸5号为材料,以有机颗粒肥为变量,在椰槺∶蛭石=3∶1(体积比)复合基质中分别加入不同体积比的有机颗粒肥,并以浇灌日本园试通用配方营养液为对照,测定幼苗生长指标、同化物积累及生理指标,分析有机颗粒肥施入量对辣椒幼苗生长的影响。【结果】各处理对辣椒幼苗的生长都有影响,其中,T4幼苗生长最好,出苗率最高为100%,根系活力为0.65 g/(g·h),G值为10.91 mg/d,壮苗指数为0.30,可溶性蛋白含量为22.71 mg/g,可溶性糖含量为6.81 mg/g,叶绿素含量为1.247 mg/g;T7幼苗生长的相较对照而言最差,出苗率为82.18%,根系活力为0.37 g/(g·h),G值7.49 mg/d,壮苗指数为0.18,可溶性蛋白含量为10.08 mg/g,可溶性糖含量为3.52 mg/g,叶绿素含量为0.900 mg/g。【结论】在辣椒穴盘育苗过程中复合基质中加入适量的有机颗粒肥,有助于辣椒幼苗的生长,其中采用复合基质T4 (椰糠∶蛭石∶有机颗粒肥=3∶1∶2,即复合基质中含有300 kg/m3有机颗粒肥)育苗,辣椒幼苗长势最好,可在生产中推广应用。

关 键 词:辣椒  育苗基质  有机颗粒肥  幼苗  生长  
收稿时间:2019-09-18

Effect of Amount of Organic Granular Fertilizer Application on Growth of Plug Pepper Seedling
CHENG Yunxia,CHEN Jian,LIU Qianjie,SHI Zhenyu,JIA kai,WEI Shaowei,YU Anwei,CUI Yongmin,WU Hui.Effect of Amount of Organic Granular Fertilizer Application on Growth of Plug Pepper Seedling[J].Xinjiang Agricultural Sciences,2020,57(1):104-111.
Authors:CHENG Yunxia  CHEN Jian  LIU Qianjie  SHI Zhenyu  JIA kai  WEI Shaowei  YU Anwei  CUI Yongmin  WU Hui
Institution:1. College of Forestry and Horticulture, Xinjiang Agricultural University, Urumqi 830052, China; 2.Agricultural Science & Technology Extension Center of Hetian Prefecture, Hetian Xinjiang 848000, China; 3. Department of Horticulture, Agricultural College, Shihezi University, Shihezi Xinjiang 832000, China; 4. Xinjiang Shatian Agricultural Comprehensive Development Co., Ltd., Hetian Xinjiang 848000, China
Abstract:【Objective】 To screen out the amount of organic granular fertilizer suitable for the growth of pepper in the tray in the hope of providing reference for the cultivation of robust pepper seedlings raising in the process of reducing nutrient solution.【Methods】In this experiment, Ruiba No.5 was used as the test material, and organic granular fertilizer was used as the variable. In the coconut coir∶ vermiculite=3∶1 (volume ratio) composite matrix, different volume ratios of organic granular fertilizer were added respectively, and watering was carried out. The Japanese garden test general formula nutrient solution was used as the control. The effects of organic fertilizer application on the growth of pepper seedlings were studied by measuring the growth index, assimilates accumulation and physiological indexes of seedlings.【Results】 The results showed that each treatment had an effect on the growth of pepper seedlings. Among them, T4 treatment seedlings had the best growth, the highest emergence rate was 100%, the root activity was 0.65 g/(g·h), and the G value was 10.91 mg/d. The seedling index was 0.30, the soluble protein content was 22.71 mg/g, the soluble sugar content was 6.81 mg/g, and the chlorophyll content was 1.247 mg/g. The growth of T7 treatment seedlings was the worst compared with the control, and the emergence rate was 82.18%. The vigor was 0.37 g/(g·h), the G value was 7.49 mg/d, the seedling index was 0.18, the soluble protein content was 10.08 mg/g, the soluble sugar content was 3.52 mg/g, and the chlorophyll content was 0.900 mg/g.【Conclusion】 In the process of pepper seedling raising, the appropriate amount of organic granular fertilizer was added to the composite substrate to help the growth of pepper seedlings. The composite substrate T4 treatment was used. (coconut coir∶vermiculite∶organic granular fertilizer = 3∶1∶2, namely, the rice composite substrate contained 300 kg of organic granular fertilizer pcbm), and the pepper seedlings grew the best, which might be widely used in production.
Keywords:pepper  seedling substrate  organic granular fertilizer  seedling  growth  
本文献已被 CNKI 等数据库收录!
点击此处可从《新疆农业科学》浏览原始摘要信息
点击此处可从《新疆农业科学》下载免费的PDF全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号