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A method for predicting the yield of cowpea

A cowpea production technology, applied in the field of forecasting cowpea production, can solve the problems of long period of cowpea production, and achieve the effects of small error, accurate prediction of cowpea production, and shortening the detection cycle

Active Publication Date: 2016-07-06
JIANGHAN UNIVERSITY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In order to solve the problem in the prior art that the identification cycle of cowpea yield is long, the embodiment of the present invention provides a method for predicting cowpea yield

Method used

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Examples

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Embodiment

[0020] The embodiment of the present invention provides a kind of method of forecasting cowpea yield, and this method comprises:

[0021] Provide the blade of the cowpea plant to be detected;

[0022] Obtain leaf temperature, actual photosynthetic efficiency Y(II), photochemical quenching coefficient qL, non-photochemical quenching coefficient NPQ, non-regulated energy dissipation quantum yield Y(NO), maximum photochemical quantum yield Fv / Fm, transpiration rate , leaf stomatal air conductance, chlorophyll a content and pod shedding rate.

[0023] Substitute into the formula D=6553.22+227.73X 1 +3734.57X 2 -3428.93X 3 -4128.39X 4 -8822.36X 5 -13995.19X 6 +6.86X 7 -29.92X 8 +56.68X 9 -11.50X 10 , calculate the output forecast value D. where X 1 is the temperature of the leaves, and temperature is one of the main factors affecting photosynthesis, and the temperature of the leaves is too high or too low to have a certain inhibitory effect on the photosynthesis of plan...

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PUM

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Abstract

The invention discloses a method for predicting cowpea yield and belongs to the field of biotechnology. The method includes: providing the leaves of the cowpea plant to be detected; obtaining the temperature of the leaves, the actual photosynthetic efficiency Y(II), the photochemical quenching coefficient qL, the non-photochemical quenching coefficient NPQ, the quantum of non-regulatory energy dissipation Yield Y(NO), maximum photochemical quantum yield Fv / Fm, transpiration rate, leaf stomatal air conductance, chlorophyll a content and pod shedding rate; Substitute into the formula D=6553.22+227.73X1+3734.57X2-3428.93X3-4128.39X4-8822.36 X5-13995.19X6+6.86X7-29.92X8+56.68X9-11.50X10, calculate the output forecast value D. The method for predicting the yield of cowpea provided by the invention has little error with the actual observed yield, can accurately predict the yield of cowpea, and can realize the prediction of the yield of cowpea at the budding stage of cowpea, shortening the detection period.

Description

technical field [0001] The invention relates to the field of biotechnology, in particular to a method for predicting cowpea yield. Background technique [0002] Cowpea is one of the important summer legume vegetables in my country. It is loved by producers and consumers because of its wide adaptability, good quality and stable economic benefits. [0003] The existing methods for identifying the yield of cowpea can analyze the factors affecting the yield through stepwise regression, and the independent variable parameters selected are mostly the organ weight of cowpea at the harvest period, such as the weight of a single pod at the harvest period, the single leaf weight at the harvest period, etc. Weight, etc., such an identification method needs to wait until the harvest period of cowpea, which makes the period of identifying cowpea output longer. Contents of the invention [0004] In order to solve the problem in the prior art that it takes a long period to identify the ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01N33/48G01N21/64G01N21/33G01N21/31
Inventor 胡志辉汪艳杰张凯周勇陈禅友
Owner JIANGHAN UNIVERSITY
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