农业工程学报
農業工程學報
농업공정학보
Transactions of the Chinese Society of Agricultural Engineering
2015年
21期
191-197
,共7页
李振海%王纪华%贺鹏%张勇峰%刘海英%常红%徐新刚
李振海%王紀華%賀鵬%張勇峰%劉海英%常紅%徐新剛
리진해%왕기화%하붕%장용봉%류해영%상홍%서신강
叶绿素%模型%作物%Dualex%SPAD%冬小麦%玉米
葉綠素%模型%作物%Dualex%SPAD%鼕小麥%玉米
협록소%모형%작물%Dualex%SPAD%동소맥%옥미
chlorophyll%models%crops%Dualex%SPAD%winter wheat%maize
作物叶绿素含量的实时、无损及快速的监测,对及时掌握作物的胁迫状况、营养水平及环境适应性,进而对农田管理进行科学指导具有重要的意义。该研究论证是否可以通过Dualex氮平衡指数测量仪构建通用的叶绿素含量估算模型,以期实现叶绿素含量的快速及无损监测和估算。结果表明:1)Dualex估测叶绿素质量分数(Chl-M)和单位面积的叶绿素质量(Chl-S)具有较好的精度(决定系数R2分别为0.77和0.88),与SPAD叶绿素仪的估算模型(R2分别为0.66和0.79)相比,模型精度更高;2)Dualex估测Chl-S的精度明显高于Dualex对Chl-M的估测精度,Dualex与Chl-M的关系需要考虑叶片厚度的影响,而Dualex与Chl-S的线性关系更加一致;3)构建的Chl-S通用模型的R2,均方根误差和标准均方根误差分别为0.88,4.80 mg/dm2和8.33%,模型的精度较高,并且通用模型的数据范围为12.2~105.6 mg/dm2,较大的数据范围适用于冬小麦和玉米各关键生育期Chl-S的估算。该研究为Dualex实现冬小麦和玉米叶绿素含量监测和估算提供校准模型,为及时了解作物养分状况及作物营养诊断提供了参考。
作物葉綠素含量的實時、無損及快速的鑑測,對及時掌握作物的脅迫狀況、營養水平及環境適應性,進而對農田管理進行科學指導具有重要的意義。該研究論證是否可以通過Dualex氮平衡指數測量儀構建通用的葉綠素含量估算模型,以期實現葉綠素含量的快速及無損鑑測和估算。結果錶明:1)Dualex估測葉綠素質量分數(Chl-M)和單位麵積的葉綠素質量(Chl-S)具有較好的精度(決定繫數R2分彆為0.77和0.88),與SPAD葉綠素儀的估算模型(R2分彆為0.66和0.79)相比,模型精度更高;2)Dualex估測Chl-S的精度明顯高于Dualex對Chl-M的估測精度,Dualex與Chl-M的關繫需要攷慮葉片厚度的影響,而Dualex與Chl-S的線性關繫更加一緻;3)構建的Chl-S通用模型的R2,均方根誤差和標準均方根誤差分彆為0.88,4.80 mg/dm2和8.33%,模型的精度較高,併且通用模型的數據範圍為12.2~105.6 mg/dm2,較大的數據範圍適用于鼕小麥和玉米各關鍵生育期Chl-S的估算。該研究為Dualex實現鼕小麥和玉米葉綠素含量鑑測和估算提供校準模型,為及時瞭解作物養分狀況及作物營養診斷提供瞭參攷。
작물협록소함량적실시、무손급쾌속적감측,대급시장악작물적협박상황、영양수평급배경괄응성,진이대농전관리진행과학지도구유중요적의의。해연구론증시부가이통과Dualex담평형지수측량의구건통용적협록소함량고산모형,이기실현협록소함량적쾌속급무손감측화고산。결과표명:1)Dualex고측협록소질량분수(Chl-M)화단위면적적협록소질량(Chl-S)구유교호적정도(결정계수R2분별위0.77화0.88),여SPAD협록소의적고산모형(R2분별위0.66화0.79)상비,모형정도경고;2)Dualex고측Chl-S적정도명현고우Dualex대Chl-M적고측정도,Dualex여Chl-M적관계수요고필협편후도적영향,이Dualex여Chl-S적선성관계경가일치;3)구건적Chl-S통용모형적R2,균방근오차화표준균방근오차분별위0.88,4.80 mg/dm2화8.33%,모형적정도교고,병차통용모형적수거범위위12.2~105.6 mg/dm2,교대적수거범위괄용우동소맥화옥미각관건생육기Chl-S적고산。해연구위Dualex실현동소맥화옥미협록소함량감측화고산제공교준모형,위급시료해작물양분상황급작물영양진단제공료삼고。
Real-time non-destructive and quick estimation of leaf chlorophyll content can provide important information about plant stress, nutritional state and relationships between plants and their environment, and therefore will be of great significance in agriculture field management. In this study, 2 hand-held chlorophyll absorbance meters, Dualex 4 and SPAD-502, for relative chlorophyll content, and standard chemical method by the spectrophotometric for absolute chlorophyll content in wheat and maize were used for analyzing the relationships between relative chlorophyll content and absolute chlorophyll content. The absolute chlorophyll content can be expressed in terms of chlorophyll mass per leaf mass (Chl-M, mg/g) and chlorophyll mass per leaf square (Chl-S, mg/dm2). The objective of this study was to establish chlorophyll content models, Chl-M model and Chl-S model, and evaluate whether these models could be as general models for estimating leaf chlorophyll content. Four field experiments were carried out, including 2 experiments with 3 winter wheat cultivars during the growing season from 2014 to 2015 and 2 experiments with 3 maize cultivars during the growing seasons in 2013 and 2015. Time-course measurements were taken on relative chlorophyll content and absolute chlorophyll content. Linear regression analyses between relative chlorophyll content (Dualex value or SPAD value) and absolute chlorophyll content (Chl-M or Chl-S) were conducted. Three statistical indicators including determination coefficient (R2), root mean square error (RMSE) and normalized root mean square error (nRMSE) were employed to evaluate the performance of each model. The results showed that the performances of Chl-M and Chl-S model using Dualex (R2 values of 0.77 and 0.88, respectively) were better than those using SPAD (R2 values of 0.66 and 0.79, respectively). Chl-S models using Dualex at each growing stage were superior to Chl-M models. The relationship between Chl-M and Dualex values at each growing stage should consider the influence of leaf thickness. A strong relationship between Chl-S and Dualex values was demonstrated, with theR2 value of each Chl-S model ranging from 0.87 to 0.97 and the nRMSE value lower than 10%. The general model of Chl-S demonstrated a high performance, with theR2, RMSE, and nRMSE of 0.88, 4.80 mg/dm2, and 8.33%, respectively. The range of Chl-S was from 12.2 to 105.6 mg/dm2, and could be applied at any growing stage for winter wheat and maize. Therefore, this study proposes a consensus equation for the transformation of Dualex into leaf chlorophyll content of winter wheat and maize, achieves the real-time and non-destructive estimation of chlorophyll content, and provides theoretical basis and technical support for the acquisition of crop nutritional state and the field decision-making.