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    Effects of environment on the artificial breeding of Charybdis feriatus and the growth of juvenile crab
    ZOU Xiong, YANG Ming-qiu, PU Li-yun, LU Jian-xue, XIA Lian-jun, LIU Xin
    HUBEI AGRICULTURAL SCIENCES    2023, 62 (8): 140-143.   DOI: 10.14088/j.cnki.issn0439-8114.2023.08.022
    Abstract377)      PDF (3315KB)(110)       Save
    The impact of the current aquaculture environment on the artificial reproduction and juvenile crab growth of Charybdis feriatus was studied, and the breeding density test, bait test and shelter test were conducted. The results showed that, ①the weight of Charybdis feriatus juvenile crab in each stage increased first and then decreased with the increase of breeding density. In the second stage, the weight of D2 group juvenile crab was the largest, indicating that the breeding density of 150 per square meter could ensure the normal development of juvenile crab weight; ②The biological feed feeding group had the lowest body weight of Charybdis feriatus juvenile crab, while the mixed feed feeding group had the highest body weight of Charybdis feriatus juvenile crab. The biological feed feeding group had the lowest shell width and length, and the survival rate of Charybdis feriatus juvenile crab was inversely proportional to the incubation period of the juvenile crab; ③There was a significant difference in the body weight of Charybdis feriatus juvenile crab between different shading test groups. The S1 and S3 groups of Charybdis feriatus juvenile crab had higher body weight values. Under the condition of no shelter, the body weight value of the Charybdis feriatus was the lowest.
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    Analysis of plankton community composition and its dynamic change in rice-crayfish field
    SONG Guang-tong, WANG Fen, JIANG Ye-lin, CHEN Zhu, XU Xiao-na, MA Jia-hao, ZHOU Xiang, WANG Jia-jia, XU Bin, ZHU Shi-ming
    HUBEI AGRICULTURAL SCIENCES    2023, 62 (7): 101-106.   DOI: 10.14088/j.cnki.issn0439-8114.2023.07.018
    Abstract269)      PDF (1641KB)(196)       Save
    In order to study the plankton community composition and its annual dynamic change characteristics in the rice-crayfish field, monthly plankton samples were collected, and the structure, diversity, species and quantity of plankton community were detected and analyzed. The results showed that:①In the ditches, there were 125 species of phytoplankton in 7 phyla, significantly higher than that in field surface, and 57 species of zooplankton in 4 species were determined, which had no significant difference from the field surface; The species number of chlorophyta and protozoa were absolute dominant. ②The annual average values of diversity index, richness index and evenness index of phytoplankton in ditches which for crayfish lived were 1.944, 2.481 and 0.540, respectively; there was no significant difference in diversity index between the two fields. The diversity index, richness index and evenness index of zooplankton in ditches were 1.726, 1.865 and 0.654, respectively. The diversity index was the lowest in April and the highest in August. ③Oocystis sotilaria was dominant species from October to march and April of the following year, Tribonema vulgare Pasch was dominant species from May to September, and Scenedesmus quadricauda was dominant species from June to October. The dominant species were copepodite in December and February. The nauplii in March and April were the dominant species in the field surface, and in ditches,Tintinnopsis was dominant species in April, the dominant species were all Pelomyxa palustris Greeff. from May to August, and Moina affinis Birge. was all dominant species from September to November. ④The annual average density of phytoplankton was 1 403 858 ind/L, the annual average biomass was 0.155 37 mg/L, the density in March was the highest and in February was the minimum, the biomass in May was the highest and in October was the minimums, and the density and biomass of phytoplankton in the ditches were higher than those in the field surface. The annual density and biomass of zooplankton were 4 248 ind/L and 9.28 mg/L respectively in the field surface, the density was the highest in April and minimum in February, the biomass was the highest in December and minimum in February. The density and biomass of zooplankton in the field were higher than that in the ditch.
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