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A method for alleviating water spinach's low-light adversity

A water spinach and low-light technology, which is applied in the cultivation field of monitoring technology and alleviating low-light stress, can solve the problems of plant hunger, the rate of plant absorption of carbon dioxide, and the inability to meet the needs of plant photosynthesis, so as to increase production, solve the problem of production and The effect of quality reduction and easy operation

Active Publication Date: 2020-08-14
徐州市芭田生态有限公司 +1
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  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At present, the supplement of carbon nutrition in the field mainly depends on the absorption of atmospheric carbon dioxide by plants. However, the rate of plant absorption of carbon dioxide decreases under low light stress, which is far from meeting the needs of plant photosynthesis, leading to carbon starvation of plants.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment

[0024] The material selected in this embodiment is water spinach and Batian organic carbon fertilizer (100-0-60: 100 grams of nitrogen per liter of liquid fertilizer, 0 grams of phosphorus pentoxide, 60 grams of potassium oxide, amino acid=110g / L) , common compound fertilizer (15-15-15: the nutrient content mass fraction of nitrogen, phosphorus and potassium in the liquid fertilizer is 15%, 15%, 15%). 5 seeds were broadcast live in plastic pots with 1 kg of soil, and when two cotyledons grew out, three seedlings were selected for each pot, and when the three leaves were in one heart, 1 gram of compound fertilizer (15 -15-15), wait until the 10th day after the first fertilization to start monitoring the light intensity. The test treatment is shown in Table 1. When the light intensity of the day was less than 7500Lux, spray organic carbon fertilizer (get 1 milliliter of organic carbon fertilizer and dilute to 500 milliliters of water for spraying), common compound fertilizer (ta...

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Abstract

The invention provides a method for relieving weak light stress of water spinach. The illumination intensity of a growing environment of the water spinach is monitored in the fast growing period of the water spinach, and weak light stress is relieved by spraying organic carbon fertilizer when the average illumination intensity is smaller than 7500 Lux. The method for relieving weak light stress of the water spinach comprises the step of organic carbon fertilizer spraying, wherein illumination intensity determination is performed in the fast growing period of the water spinach, the organic carbon fertilizer is sprayed to the water spinach which is subjected to weak light stress, and each liter of the liquid fertilizer contains 90-110 g of nitrogen, 0 g of phosphorus pentoxide, 50-70 g of potassium oxide and 80 g or above of amino acid. According to the method, operation is easy and convenient, the performance is sensitive, whether the water spinach is subjected to weak light stress or not can be accurately monitored and judged, then fast and efficient relieving measures can be taken, and the problems of yield decreasing and quality reducing of the water spinach under weak light stress can be effectively solved.

Description

technical field [0001] The invention relates to a monitoring technology for water spinach low-light stress and a cultivation technology for alleviating low-light stress, in particular to a method for alleviating water spinach low-light stress. Background technique [0002] Weak light adversity refers to insufficient light intensity, which refers to the light environment where the light intensity in the environment is significantly lower than the light saturation point for a long time or for a short time, but not lower than the minimum light intensity that limits its survival. Light intensity is an important natural factor affecting the growth of vegetables. Continuous rain in a certain period of crop growth will cause insufficient light intensity in a certain period, which will reduce the yield, plant height, leaf number, net photosynthetic rate, and chlorophyll content of vegetables. Vacuoles accumulate in large numbers, eventually resulting in reduced production. [0003]...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A01C21/00A01G22/15A01G7/06
CPCA01C21/005A01G7/06A01G22/00
Inventor 刘梦丹李梦洁华建青王宗抗张志宏吴小丽刘法安邓宝元杨勇
Owner 徐州市芭田生态有限公司
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