作物学报
作物學報
작물학보
ACTA AGRONOMICA SINICA
2010年
1期
141-146
,共6页
武德传%周冀衡%樊在斗%李文璧%张一扬%杨程%徐发华%朱凯%段凤云%王德勋
武德傳%週冀衡%樊在鬥%李文璧%張一颺%楊程%徐髮華%硃凱%段鳳雲%王德勛
무덕전%주기형%번재두%리문벽%장일양%양정%서발화%주개%단봉운%왕덕훈
烤烟%多酚%空间变异%地统计学
烤煙%多酚%空間變異%地統計學
고연%다분%공간변이%지통계학
Flue-cured tobacco%Polyphenol content%Spatial variability%Geostatistics
利用GPS定位,在云南省主要烟区选取705个样点,2007年和2008年分别采集C3F等级烤烟样品,将各取样点两年的烤烟样品多酚含量平均值作为原始统计数据.对多酚含量的原始数据、对数转化和Box-Cox转化后的数据进行正态分布性检验.采用地统计学进行烤烟多酚含量的空间趋势和空间变异分析.结果表明,云南烤烟多酚含量经对数转化后服从正态分布.在进行普通Kriging插值时,趋势效应参数宜选择0阶,理论模型宜选择高斯模型(gaussian model).云南烤烟多酚含量具有中等的空间相关性(C_0/C_0+C=35.71%),没有空间趋势效应(0阶).大部分烟区烤烟多酚含量在3.50%~4.00%之间(为背景值);多酚含量大于4.00%的板块主要分布在滇西、滇中和滇东,大于4.50%的板块零星分布于4.00%~4.50%的板块中间,且多数板块多酚含量由中心向四周呈梯度状由高到低分布;多酚含量在5.50%~6.73%的板块位于南涧县、永平县北部、龙陵县西北部和武定县西部,且位于南涧县的板块面积最大.
利用GPS定位,在雲南省主要煙區選取705箇樣點,2007年和2008年分彆採集C3F等級烤煙樣品,將各取樣點兩年的烤煙樣品多酚含量平均值作為原始統計數據.對多酚含量的原始數據、對數轉化和Box-Cox轉化後的數據進行正態分佈性檢驗.採用地統計學進行烤煙多酚含量的空間趨勢和空間變異分析.結果錶明,雲南烤煙多酚含量經對數轉化後服從正態分佈.在進行普通Kriging插值時,趨勢效應參數宜選擇0階,理論模型宜選擇高斯模型(gaussian model).雲南烤煙多酚含量具有中等的空間相關性(C_0/C_0+C=35.71%),沒有空間趨勢效應(0階).大部分煙區烤煙多酚含量在3.50%~4.00%之間(為揹景值);多酚含量大于4.00%的闆塊主要分佈在滇西、滇中和滇東,大于4.50%的闆塊零星分佈于4.00%~4.50%的闆塊中間,且多數闆塊多酚含量由中心嚮四週呈梯度狀由高到低分佈;多酚含量在5.50%~6.73%的闆塊位于南澗縣、永平縣北部、龍陵縣西北部和武定縣西部,且位于南澗縣的闆塊麵積最大.
이용GPS정위,재운남성주요연구선취705개양점,2007년화2008년분별채집C3F등급고연양품,장각취양점량년적고연양품다분함량평균치작위원시통계수거.대다분함량적원시수거、대수전화화Box-Cox전화후적수거진행정태분포성검험.채용지통계학진행고연다분함량적공간추세화공간변이분석.결과표명,운남고연다분함량경대수전화후복종정태분포.재진행보통Kriging삽치시,추세효응삼수의선택0계,이론모형의선택고사모형(gaussian model).운남고연다분함량구유중등적공간상관성(C_0/C_0+C=35.71%),몰유공간추세효응(0계).대부분연구고연다분함량재3.50%~4.00%지간(위배경치);다분함량대우4.00%적판괴주요분포재전서、전중화전동,대우4.50%적판괴령성분포우4.00%~4.50%적판괴중간,차다수판괴다분함량유중심향사주정제도상유고도저분포;다분함량재5.50%~6.73%적판괴위우남간현、영평현북부、룡릉현서북부화무정현서부,차위우남간현적판괴면적최대.
Flue-cured tobacco in Yunnan plays an important role in formula of Chinese cigarette. Polyphenol is one of the main aroma precursors in tobacco leaf, so researchers highly focus on polyphenol compound. The objective of the study was to investigate spatial distribution of polyphenol content in flue-cured tobacco in Yunnan, and to provide references for layout of tobacco planting and using of tobacco leaf. The tobacco planting areas in Yunnan were selected as the experiment sites. 1 410 flue-cured tobacco samples of C3F grade in 2007 and 2008 were collected from 705 sites via Global Position System (GPS). Polyphenol contents of tobacco samples were determined, and the original data of tobacco polyphenol contents were taken from the samples mean in every site. The original data, data of logarithmic transformation and data of Box-Cox transformation were tested for normal distribution. Surface trend and spatial distribution of tobacco polyphenol content were analyzed by Geostatistics Analyst. The results showed that the data of logarithmic transformation showed normal distribution. The integrative comparisons of semi-variogram parameters of the ordinary kriging prediction with different trends and theoretical models indicated that 0-order trend effect and gaussian model were preferable. There was moderate spatial correlation (C_0/C_0+C=35.71%) and no surface trend (0-order)for tobacco polyphenol content in Yunnan. In most tobacco growing areas of Yunnan, the tobacco polyphenol content ranged from 3.50% to 4.00% (acted as background value). The growing areas that the polyphenoi content was over 4.00% were mainly located in the west, centre and east of Yunnan. The growing areas that polyphenol content was over 4.50% were sporadically distributed in the areas, with polyphenols contents of 4.00--4.50%. Polyphenol content showed gradient-like distribution with high-to-low trend from center to surroundings in the growing areas. The areas with polyphenol contents of 5.50-45.73% were located in Nanjian county, the northern Yongping county, the north-west of Longling county and the western Wuding county, and th earea in Nanjian county was the biggest one among them.