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Environment-controllable phenotypic wall for crop cultivation and storage

A phenotype and crop technology, applied in the field of environment-controllable phenotype walls, can solve the problems that it is inconvenient for researchers to observe the phenotypic characteristics of crops and obtain the phenotypic data of crops, and the inaccurate crop phenotype data

Pending Publication Date: 2022-05-13
GUIZHOU UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] For the phenotypic characteristics of crops, the traditional method is to observe or obtain them in the field or in the greenhouse, and the crop phenotypic data obtained by the traditional method are prone to be imprecise due to objective factors; at present, most of the crop cultivation devices in the prior art It only satisfies the function of regulating the growth environment factors of crops, which is not convenient for researchers to observe the phenotypic characteristics of crops and obtain phenotypic data of crops

Method used

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  • Environment-controllable phenotypic wall for crop cultivation and storage
  • Environment-controllable phenotypic wall for crop cultivation and storage
  • Environment-controllable phenotypic wall for crop cultivation and storage

Examples

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Embodiment

[0032] Embodiment: an environment controllable phenotype wall for crop cultivation and storage, such as Figure 1 to Figure 6 As shown, it includes a surface wall body, and the surface wall body includes a bottom plate 1, a top plate 2 and a back plate 3, the bottom plate 1 and the top plate 2 are vertically connected to the bottom and top of the back plate 3 respectively, and the bottom plate 1 and the top plate 2 are connected to the back plate 3 The connecting end of the board 3 is flush with the wall surface of the back board 3 , and the bottom board 1 , the top board 2 and the back board 3 enclose the accommodation space of the surface-shaped wall body. The wall surface of the backboard 3 is provided with multiple layers of horizontal plates 4 located between the bottom plate 1 and the top plate 2 at intervals. Independent crop cultivation space5. Each row of crop cultivation space 5 is longitudinally equipped with a plurality of vertical boards 6 , and each row of crop ...

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Abstract

The invention discloses an environment-controllable phenotypic wall for crop cultivation and storage, and relates to the technical field of crop cultivation equipment, and the environment-controllable phenotypic wall is characterized by comprising a bottom plate, a top plate, a back plate, a transverse plate crop cultivation space, a plurality of vertical plates and a plurality of cultivation cabins; the system further comprises a transparent cover plate, a plurality of cabin doors, a control processor, a wireless signal transmission device, a power supply device, an environment monitoring assembly, an environment regulation and control assembly, an image acquisition assembly and an illumination assembly. According to the invention, cultivation and storage of crops in different growth stages are facilitated, different stages of the crops are integrated in the phenotype, and researchers can conveniently observe phenotypes of the crops in different stages or acquire phenotype data of the crops; meanwhile, growth environment data of the crops can be monitored in real time in each cultivation cabin of the phenotypic wall, the growth environment of the crops can be automatically controlled and adjusted, and phenotypic data of the crops in different stages can be automatically collected, analyzed and obtained.

Description

technical field [0001] The invention relates to the technical field of crop cultivation equipment, more specifically, it relates to an environment-controllable phenotype wall for crop cultivation and storage. Background technique [0002] Crop phenotype is part or all of the identifiable physical, physiological and biochemical characteristics and traits produced by the interaction between genes and the environment, including the structure, composition and growth and development process of the crop, which not only reflects the expression regulation at the molecular level, but also It reflects complex traits such as plant physiology, biochemistry, morphological anatomy, and stress resistance. The development of functional genomics and gene technology in the field of crop breeding is the most convenient and effective means to increase grain production. Phenotype is the external expression of crop genes, which is the result of the interaction between the crop's own genes and th...

Claims

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Application Information

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IPC IPC(8): A01G9/16A01G9/24G06V20/00
CPCA01G9/16A01G9/246Y02A40/25
Inventor 李舟秦王菲潘洁
Owner GUIZHOU UNIV
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