Acta Veterinaria et Zootechnica Sinica ›› 2025, Vol. 56 ›› Issue (2): 737-754.doi: 10.11843/j.issn.0366-6964.2025.02.024
• Animal Nutrition and Feeds • Previous Articles Next Articles
LU Jian1(), MA Meng1, GUO Jun1, WANG Xingguo1, DOU Taocun1, HU Yuping1, WANG Qiang1, LI Yongfeng1, SHAO Dan1, TONG Haibing1, GUO Jie2,*(
), QU Liang1,*(
)
Received:
2024-04-01
Online:
2025-02-23
Published:
2025-02-26
Contact:
GUO Jie, QU Liang
E-mail:lujian1617@163.com;23382063@qq.com;liangquyz@126.com
CLC Number:
LU Jian, MA Meng, GUO Jun, WANG Xingguo, DOU Taocun, HU Yuping, WANG Qiang, LI Yongfeng, SHAO Dan, TONG Haibing, GUO Jie, QU Liang. Studies on Key Genes and Signaling Pathways of Regulation of Energy Restriction during Rearing and Conversion to Ad libitum on the Reproductive Organ Development of Hens at the Initiation of Laying Period[J]. Acta Veterinaria et Zootechnica Sinica, 2025, 56(2): 737-754.
Table 1
Ingredients and nutrient levels of the experimental diet %"
项目 Item | 6~12周龄 6 to 12 weeks of age | 13~17周龄 13 to 17 weeks of age | 18~20周龄 18 to 20 weeks of age | |||||
代谢能水平/(MJ·kg-1) ME level | 代谢能水平/(MJ·kg-1) ME level | |||||||
12.34 | 11.11 | 9.87 | 12.34 | 11.11 | 9.87 | |||
原料Ingredient | ||||||||
玉米Corn | 71.11 | 61.00 | 50.20 | 75.20 | 64.80 | 54.30 | 68.00 | |
豆粕Soybean meal | 25.67 | 27.60 | 29.40 | 20.80 | 22.70 | 24.50 | 24.00 | |
石粉Limestone | 1.40 | 1.40 | 1.40 | 2.00 | 2.00 | 2.00 | 6.00 | |
沸石粉Zeolite powder | 0.00 | 8.23 | 17.26 | 0.20 | 8.75 | 17.49 | 0.23 | |
磷酸氢钙Dicalcium phosphate | 0.105 | 0.105 | 0.105 | 0.105 | 0.105 | 0.105 | 0.105 | |
磷酸二氢钙Monocalcium phosphate | 0.595 | 0.595 | 0.595 | 0.595 | 0.595 | 0.595 | 0.595 | |
食盐NaCl | 0.25 | 0.25 | 0.25 | 0.25 | 0.25 | 0.25 | 0.25 | |
50%胆碱50% Choline chloride | 0.12 | 0.12 | 0.12 | 0.10 | 0.10 | 0.10 | 0.12 | |
DL-蛋氨酸DL-methionine | 0.15 | 0.16 | 0.17 | 0.15 | 0.15 | 0.16 | 0.20 | |
赖氨酸Lysine | 0.10 | 0.04 | 0.00 | 0.10 | 0.05 | 0.00 | 0.00 | |
预混料Premix1) | 0.50 | 0.50 | 0.50 | 0.50 | 0.50 | 0.50 | 0.50 | |
营养水平(计算值) Nutrient levels (calculated) | ||||||||
代谢能/(MJ·kg-1) ME | 12.34 | 11.11 | 9.87 | 12.34 | 11.11 | 9.87 | 11.72 | |
粗蛋白质Crude protein | 17.50 | 17.50 | 17.50 | 15.50 | 15.50 | 15.50 | 16.50 | |
可消化氨基酸Digestible amino acid | ||||||||
赖氨酸Lysine | 0.94 | 0.94 | 0.94 | 0.82 | 0.82 | 0.82 | 0.84 | |
蛋氨酸Methionine | 0.45 | 0.45 | 0.45 | 0.41 | 0.41 | 0.41 | 0.47 | |
蛋氨酸+胱氨酸Met+Cys | 0.73 | 0.73 | 0.73 | 0.67 | 0.67 | 0.67 | 0.74 | |
色氨酸L-tryptophan | 0.20 | 0.21 | 0.22 | 0.18 | 0.18 | 0.18 | 0.19 | |
苏氨酸Threonine | 0.66 | 0.66 | 0.66 | 0.59 | 0.59 | 0.59 | 0.62 | |
钙Calcium | 0.80 | 0.80 | 0.80 | 0.80 | 0.80 | 0.80 | 2.60 | |
总磷Total phosphorus | 0.50 | 0.50 | 0.50 | 0.50 | 0.50 | 0.50 | 0.50 | |
非植酸磷Nonphytate phosphorus | 0.27 | 0.27 | 0.27 | 0.27 | 0.27 | 0.27 | 0.27 | |
营养水平(实测值) Nutrient levels (measured) | ||||||||
粗蛋白质Crude protein | 17.75 | 17.59 | 17.63 | 15.61 | 15.58 | 15.58 | 16.59 | |
赖氨酸Lysine | 0.89 | 0.87 | 0.87 | 0.78 | 0.76 | 0.79 | 0.81 | |
蛋氨酸Methionine | 0.43 | 0.42 | 0.44 | 0.38 | 0.36 | 0.37 | 0.48 | |
钙Calcium | 0.84 | 0.86 | 0.79 | 0.87 | 0.88 | 0.83 | 2.68 | |
总磷Total phosphorus | 0.53 | 0.49 | 0.51 | 0.53 | 0.51 | 0.51 | 0.51 |
Table 2
Primers sets for qRT-PCR analysis of differentially expressed genes"
基因 Genes | 序列号 Accession number | 引物序列(5′→3′) Primer sequence(5′→3′) | 产物长度/bp Product length |
StAR | NM_204686 | F:GTCCCTCGCAGACCAAGT R:TCCCTACTGTTAGCCCTGA | 196 |
CREB1 | NM_204450.3 | F:GCACAGACCACAGATGGACA R:TTCAAGCACAGCCACTCGAT | 285 |
ACTA2 | NM_001031229.2 | F:CGGAACGTGGCTACTCCTTT R:CCAGGGCCACATAACACAGT | 84 |
CFTR | XM_015275972.3 | F:CAACGACTGGAACTGTCGGA R:AAGTTGCCAGCTCTCTGTCC | 103 |
COL3A1 | XM_025152154.2 | F:CCTTCGGAGAATGCTGTCCA R:CCCGGAAAGCCACTACCTC | 217 |
CYP1B1 | XM_040668785.1 | F:GTGCCTGTTACCATCCCACA R:CACGGTGTCCTTGGGAATGA | 75 |
ENTPD3 | NM_001321564.2 | F:TGTGATGTGAAAGGCCCTGG R:CAGGCACTCATCAAGGGGTT | 78 |
HSPG2 | XM_040688761.1 | F:CGGAGAGCAGCACCTACATC R:AGTGCATCTCTCCCCCATCT | 182 |
MC2R | NM_001031515.2 | F:CGTCGTGGGGACTTTGAGAA R:CTGCAATAGCGAGCAAGCTG | 97 |
NR4A3 | XM_040665827.1 | F:CACGTTTCTTGCTGAAGGGC R:GCTATACTGCGCTTGCACAC | 85 |
Table 3
Effects of energy-restricted feeding during rearing and conversion to ad libitum on body weight, body weight CV and body measurement of chicks at 20 weeks of age1"
项目 Item | 代谢能水平/(MJ·kg-1) ME level | SEM | P值P-value | ||||
12.34 | 11.11 | 9.87 | 代谢能 ME | 线性 Linear | 二次 Quadratic | ||
体重/g Body weight | 1 692.7a | 1 636.9b | 1 549.1c | 6.694 | < 0.001 | < 0.001 | 0.216 |
体重CV Body weight CV | 8.45a | 8.15a | 6.93b | 0.254 | 0.023 | 0.010 | 0.320 |
体斜长/cm Body slope length | 23.38 | 23.11 | 23.18 | 0.057 | 0.130 | 0.143 | 0.168 |
跖长/cm Shank length | 8.62b | 8.73a | 8.62b | 0.018 | 0.029 | 0.970 | 0.008 |
跖围/cm Shank circumference | 3.82 | 3.81 | 3.79 | 0.008 | 0.192 | 0.078 | 0.639 |
Table 4
Effects of energy-restricted feeding during rearing and conversion to ad libitum on growth performance of chicks aged from 6 to 20 weeks"
项目 Item | 代谢能水平/(MJ·kg-1) ME level | SEM | P值P-value | ||||
12.34 | 11.11 | 9.87 | 代谢能 ME | 线性 Linear | 二次 Quadratic | ||
平均日采食量/g ADFI | 71.0b | 71.5b | 72.9a | 0.255 | 0.001 | < 0.001 | 0.220 |
平均日代谢能摄入量/kJ ADMEI | 856.0a | 802.6b | 752.9c | 10.384 | < 0.001 | < 0.001 | 0.667 |
平均日增重/g ADG | 13.45a | 12.80b | 11.95c | 0.172 | < 0.001 | < 0.001 | 0.615 |
料重比/(g·g-1) F/G | 5.29c | 5.58b | 6.11a | 0.088 | < 0.001 | < 0.001 | 0.115 |
代谢能转化比/(kJ·g-1)MECR | 63.77 | 62.63 | 63.09 | 0.374 | 0.478 | 0.474 | 0.331 |
Table 5
Effects of energy-restricted feeding during rearing and conversion to ad libitum on blood biochemical indexes and hormone levels in chicks at 20 weeks of age mmol·L-1"
项目 Item | 代谢能水平/(MJ·kg-1) ME level | SEM | P值P-value | ||||
12.34 | 11.11 | 9.87 | 代谢能 ME | 线性 Linear | 二次 Quadratic | ||
葡萄糖GLU | 11.58 | 10.68 | 11.11 | 0.211 | 0.224 | 0.354 | 0.143 |
尿素氮UN | 1.00b | 1.18ab | 1.38a | 0.060 | 0.023 | 0.007 | 0.938 |
总胆固醇TC | 3.19 | 2.70 | 3.02 | 0.118 | 0.252 | 0.570 | 0.122 |
甘油三酯TG | 1.95a | 1.29b | 0.36c | 0.140 | 0.037 | 0.045 | 0.888 |
游离脂肪酸NEFA | 0.41 | 0.38 | 0.28 | 0.036 | 0.305 | 0.143 | 0.667 |
高密度脂蛋白胆固醇HDL-C | 1.74 | 1.94 | 2.27 | 0.105 | 0.111 | 0.041 | 0.744 |
低密度脂蛋白胆固醇LDL-C | 1.18a | 0.70ab | 0.60b | 0.111 | 0.026 | 0.029 | 0.368 |
Table 6
Effects of energy-restricted feeding during rearing and conversion to ad libitum on liver biochemical indexes related to liver fat metabolism in chicks at 20 weeks of age mmol·g-1"
项目 Item | 代谢能水平/(MJ·kg-1) ME level | SEM | P值P-value | ||||
12.34 | 11.11 | 9.87 | 代谢能 ME | 线性 Linear | 二次 Quadratic | ||
总胆固醇TC | 1.64a | 1.57ab | 1.20b | 0.082 | 0.049 | 0.024 | 0.335 |
甘油三酯TG | 0.33 | 0.27 | 0.19 | 0.035 | 0.251 | 0.102 | 0.928 |
游离脂肪酸NEFA | 0.38a | 0.36a | 0.21b | 0.026 | 0.006 | 0.003 | 0.126 |
高密度脂蛋白胆固醇HDL-C | 1.66 | 1.71 | 1.69 | 0.116 | 0.989 | 0.935 | 0.904 |
低密度脂蛋白胆固醇LDL-C | 0.35 | 0.27 | 0.22 | 0.034 | 0.299 | 0.130 | 0.815 |
Table 7
Effects of energy-restricted feeding during rearing and conversion to ad libitum on the development of sexual organ of chicks at 20 weeks of age"
项目 Item | 代谢能水平/(MJ·kg-1) ME level | SEM | P值P-value | ||||
12.34 | 11.11 | 9.87 | 代谢能 ME | 线性 Linear | 二次 Quadratic | ||
输卵管长度/cm Oviduct length | 27.30a | 17.45b | 9.47c | 2.979 | 0.038 | 0.012 | 0.865 |
排卵前卵泡数/个 Preovulatory follicle amount | 0.50 | 0.67 | 0.00 | 0.231 | 0.498 | 0.398 | 0.415 |
小黄卵泡数/个 Small yellow follicle amount | 6.83a | 3.33b | 0.33c | 1.133 | 0.035 | 0.017 | 0.907 |
大白卵泡数/个 Big white follicle amount | 6.00 | 3.50 | 5.67 | 0.898 | 0.495 | 0.883 | 0.247 |
输卵管重/g Oviduct weight | 12.35a | 6.92b | 1.25c | 2.205 | 0.017 | 0.042 | 0.979 |
排卵前卵泡重/g Preovulatory follicle weight | 0.48 | 1.64 | 0.00 | 0.549 | 0.482 | 0.731 | 0.253 |
小黄卵泡重/g Small yellow follicle weight | 0.56 | 0.37 | 0.02 | 0.119 | 0.170 | 0.067 | 0.755 |
大白卵泡重/g Big white follicle weight | 0.13 | 0.07 | 0.10 | 0.017 | 0.402 | 0.523 | 0.238 |
卵巢基质部重/g Ovary stroma weight | 0.83a | 0.80a | 0.58b | 0.069 | 0.037 | 0.046 | 0.550 |
输卵管长度体重比/(cm·kg-1) Oviduct length index | 16.92a | 11.07b | 6.36c | 1.829 | 0.041 | 0.016 | 0.869 |
输卵管指数/(g·kg-1) Oviduct index | 7.69a | 4.33b | 0.84c | 1.379 | 0.025 | 0.045 | 0.981 |
排卵前卵泡指数/(g·kg-1) Preovulatory follicle index | 0.30 | 1.02 | 0.00 | 0.342 | 0.482 | 0.731 | 0.254 |
小黄卵泡指数/(g·kg-1) Small yellow follicle index | 0.35a | 0.23b | 0.01c | 0.074 | 0.047 | 0.039 | 0.737 |
大白卵泡指数/(g·kg-1) Big white follicle index | 0.08 | 0.05 | 0.07 | 0.011 | 0.426 | 0.619 | 0.232 |
卵巢基质部指数/(g·kg-1) Ovary stroma index | 0.52a | 0.51a | 0.39b | 0.042 | 0.021 | 0.047 | 0.544 |
Fig. 1
Effects of energy-restricted feeding during rearing and conversion to ad libitum on blood oestradiol and progesterone levels in chicks at 20 weeks of age Value columns with no small letter mean no significant difference (P>0.05), while with different small letters mean significant difference (P < 0.05)"
Table 8
Summary of RNA-seq data"
样本 Sample | 原始序列数/条 Raw reads number | 高质量序列数/条 Pure reads number | 原始碱基数/Gb Raw data | 高质量碱基数/Gb Pure data | Q20/% | Q30/% | GC/% | 核糖体序列/% rRNA reads |
ALF20W-1 | 63 859 332 | 63 636 472 | 9.58 | 9.51 | 97.63 | 93.44 | 48.11 | 0.19 |
ALF20W-2 | 92 460 618 | 92 101 230 | 13.87 | 13.75 | 97.30 | 92.71 | 48.71 | 0.37 |
ALF20W-3 | 37 802 582 | 37 651 168 | 5.67 | 5.62 | 97.03 | 92.14 | 49.17 | 0.19 |
ALF20W-4 | 42 243 418 | 42 090 532 | 6.34 | 6.28 | 97.37 | 92.81 | 48.60 | 0.28 |
ERF20W-1 | 60 891 036 | 60 673 650 | 9.13 | 9.05 | 97.35 | 92.83 | 48.43 | 0.16 |
ERF20W-2 | 46 317 658 | 46 153 394 | 6.95 | 6.89 | 97.43 | 92.96 | 48.67 | 0.15 |
ERF20W-3 | 46 672 378 | 46 502 908 | 7.00 | 6.94 | 97.47 | 93.11 | 48.63 | 0.18 |
ERF20W-4 | 64 495 606 | 64 242 094 | 9.67 | 9.59 | 97.29 | 92.69 | 48.20 | 0.37 |
Table 9
Comparison of genomic statistics"
样本 Sample | 总序列 Total reads number | 未比对上序列 Unmapped reads | 唯一比对上序列 Unique mapped reads | 多基因组比对序列 Multiple mapped reads | 总比对上序列数 Mapped ratio |
ALF20W-1 | 63 517 830 | 3 361 967 (5.29%) | 58 990 763 (92.87%) | 1 165 100 (1.83%) | 60 155 863 (94.71%) |
ALF20W-2 | 91 759 636 | 5 136 652 (5.60%) | 84 820 999 (92.44%) | 1 801 985 (1.96%) | 86 622 984 (94.40%) |
ALF20W-3 | 37 578 262 | 2 340 504 (6.23%) | 34 524 204 (91.87%) | 713 554 (1.90%) | 35 237 758 (93.77%) |
ALF20W-4 | 41 974 054 | 2 278 319 (5.43%) | 38 878 496 (92.63%) | 817 239 (1.95%) | 39 695 735 (94.57%) |
ERF20W-1 | 60 578 952 | 3 123 001 (5.16%) | 56 348 235 (93.02%) | 1 107 716 (1.83%) | 57 455 951 (94.84%) |
ERF20W-2 | 46 082 288 | 2 389 789 (5.19%) | 42 839 541 (92.96%) | 852 958 (1.85%) | 43 692 499 (94.81%) |
ERF20W-3 | 46 419 322 | 2 640 960 (5.69%) | 42 933 637 (92.49%) | 844 725 (1.82%) | 43 778 362 (94.31%) |
ERF20W-4 | 64 007 116 | 3 674 188 (5.74%) | 59 187 477 (92.47%) | 1 145 451 (1.79%) | 60 332 928 (94.26%) |
Table 10
Signaling pathways and differentially expressed genes related to energy metabolism and sexual maturation"
信号通路Signaling pathway | 基因Gene |
ECM受体相互作用 ECM-receptor interaction | THBS2、COL1A1、FN1、ITGA7、GP1BB、COL6A3、COL6A1、COL6A2、ITGA11、COL4A1、COL4A2、THBS1、LAMA4、LAMC1、TNC、LAMB1、ITGA8、HSPG2、COL1A2 |
松弛素信号通路 Relaxin signaling pathway | COL1A1、CREB3L1、RXFP1、COL4A1、COL4A2、NOS3、H-RAS、MMP2、ACTA2、COL1A2、COL3A1、tctex1d1-b |
脂肪细胞脂解的调节 Regulation of lipolysis in adipocyte | FABP4、PLIN1、MGLL、NPY1R、PTGS1、ABHD4 |
雌激素信号通路 Estrogen signaling pathway | KRT18、PGR、GRM1、CREB3L1、KRT40、KRT23、KRT13、KRT14、KRT1、NOS3、GNAQ、H-RAS、MMP2 |
催产素信号通路 Oxytocin signaling pathway | GUCY1A2、MYL6、CACNA1C、NOS3、PPP1R12A、MYL9、GNAQ、H-RAS、KCNJ4、CACNA2D1、CAMK2A、CACNB2、MYLK、CACNA1D |
GnRH信号通路 GnRH signaling pathway | EGR1、CACNA1C、GNAQ、H-RAS、MMP2、CAMK2A、CACNA1D |
类固醇激素生物合成 Steroid hormone biosynthesis | StAR、DHRS11、CYP3A4、HSD17B3、CYP1B1 |
醛固酮的合成和分泌 Aldosterone synthesis and secretion | ATP1B4、CREB3L1、CACNA1C、MC2R、GNAQ、CAMK2A、CACNA1D |
促性腺激素释放激素分泌 GnRH secretion | CACNA1C、GNAQ、H-RAS、TRPC4、CACNA1D |
卵巢类固醇生成 Ovarian steroidogenesis | StAR、IGF-I、CYP1B1 |
孕酮介导的卵母细胞成熟 Progesterone-mediated oocyte maturation | PGR、IGF-I、MOS、CCNA1、CCNB1 |
催乳素信号通路 Prolactin signaling pathway | JAK2、H-RAS、PRLR |
脂肪的消化和吸收 Fat digestion and absorption | DGAT |
卵母细胞减数分裂 Oocyte meiosis | CCNE1、PGR、IGF-I、MOS、CAMK2A、CCNB1 |
脂肪酸生物合成 Fatty acid biosynthesis | HTD2 |
脂肪酸代谢 Fatty acid metabolism | HTD2、SCD5、SCD |
脂肪细胞因子信号通路 Adipocytokine signaling pathway | JAK2、LEPR |
cAMP信号通路 cAMP signaling pathway | StAR、CREB1、MC2R等 |
1 | BESTMAN M , RUIS M A W , HEIJMANS J , et al. Poultry signals: a practical guide for bird focused poultry farming[M]. Zutphen: Roodbont Publishers, 2012: 42- 55. |
2 |
FRIKHA M , SAFAA H M , JIMÉNEZ-MORENO E , et al. Influence of energy concentration and feed form of the diet on growth performance and digestive traits of brown egg-laying pullets from 1 to 120 days of age[J]. Anim Feed Sci Technol, 2009, 153 (3-4): 292- 302.
doi: 10.1016/j.anifeedsci.2009.06.012 |
3 |
PAN Y E , LIU Z C , CHANG C J , et al. Feed restriction ameliorates metabolic dysregulation and improves reproductive performance of meat-type country chickens[J]. Anim Reprod Sci, 2014, 151 (3-4): 229- 236.
doi: 10.1016/j.anireprosci.2014.10.003 |
4 |
LU J , WANG Q , WANG K H , et al. Effects of energy restriction during growing phase on the productive performance of Hyline Brown laying hens aged 6 to 72 wk[J]. Poult Sci, 2023, 102 (10): 102942.
doi: 10.1016/j.psj.2023.102942 |
5 |
卢建, 王克华, 杨晓东, 等. 育成期饲粮代谢能水平对开产时如皋黄鸡生长发育的影响[J]. 畜牧兽医学报, 2022, 53 (7): 2215- 2227.
doi: 10.11843/j.issn.0366-6964.2022.07.018 |
LU J , WANG K H , YANG X D , et al. Effects of dietary metabolizable energy levels during rearing on growth and development of Rugao yellow chicken at the initiation of the laying period[J]. Acta Veterinaria et Zootechnica Sinica, 2022, 53 (7): 2215- 2227.
doi: 10.11843/j.issn.0366-6964.2022.07.018 |
|
6 |
HEIJMANS J , DUIJSTER M , GERRITS W J J , et al. Impact of growth curve and dietary energy-to-protein ratio on productive performance of broiler breeders[J]. Poult Sci, 2021, 100 (7): 101131.
doi: 10.1016/j.psj.2021.101131 |
7 |
ZUKIWSKY N M , AFROUZIYEH M , ROBINSON F E , et al. Feeding, feed-seeking behavior, and reproductive performance of broiler breeders under conditions of relaxed feed restriction[J]. Poult Sci, 2021, 100 (1): 119- 128.
doi: 10.1016/j.psj.2020.09.081 |
8 |
LU J , LI Y F , QU L , et al. Effects of energy-restricted feeding during rearing on sexual maturation and reproductive performance of Rugao layer breeders[J]. Poult Sci, 2021, 100 (8): 101225.
doi: 10.1016/j.psj.2021.101225 |
9 |
VAN DER KLEIN S A S , SILVA F A , KWAKKEL R P , et al. The effect of quantitative feed restriction on allometric growth in broilers[J]. Poult Sci, 2017, 96 (1): 118- 126.
doi: 10.3382/ps/pew187 |
10 |
BUTZEN F M , RIBEIRO A M L , VIEIRA M M , et al. Early feed restriction in broilers.I-Performance, body fraction weights, and meat quality[J]. J Appl Poult Res, 2013, 22 (2): 251- 259.
doi: 10.3382/japr.2012-00639 |
11 |
URDANETA-RINCON M , LEESON S . Quantitative and qualitative feed restriction on growth characteristics of male broiler chickens[J]. Poult Sci, 2002, 81 (5): 679- 688.
doi: 10.1093/ps/81.5.679 |
12 | NOVEL D J , NGAMBI J W , NORRIS D , et al. Effect of different feed restriction regimes during the starter stage on productivity and carcass characteristics of male and female Ross 308 broiler chickens[J]. J Poult Sci, 2009, 8 (1): 35- 39. |
13 |
张蒙, 李强, 刘平, 等. 0~4周龄大午粉1号商品代蛋雏鸡饲粮中适宜的代谢能和粗蛋白质水平[J]. 动物营养学报, 2019, 31 (2): 652- 661.
doi: 10.3969/j.issn.1006-267x.2019.02.021 |
ZHANG M , LI Q , LIU P , et al. Optimal dietary metabolizable energy and crude protein levels for Dawufen No.1 commercial layer chicks FROM 0 TO 4 weeks of age[J]. Chinese Journal of Animal Nutrition, 2019, 31 (2): 652- 661.
doi: 10.3969/j.issn.1006-267x.2019.02.021 |
|
14 | 王鹏飞, 宋明杰, 张倩雲, 等. 凌云乌鸡0~6周龄对代谢能、粗蛋白质和苯丙氨酸+酪氨酸适宜需要量的研究[J]. 饲料工业, 2019, 40 (23): 29- 35. |
WANG P F , SONG M J , ZHANG Q Y , et al. The study on appropriate requirements of ME, protein and Phe+Tyr of Lingyun chicken in the age of 0~6 weeks[J]. Feed Industry, 2019, 40 (23): 29- 35. | |
15 |
卢建, 王克华, 杨晓东, 等. 饲粮代谢能水平对3~8周龄如皋黄鸡生长发育和血清生化指标的影响[J]. 动物营养学报, 2022, 34 (4): 2301- 2313.
doi: 10.3969/j.issn.1006-267x.2022.04.026 |
LU J , WANG K H , YANG X D , et al. Effects of dietary metabolic energy level on growth and development and serum biochemical indexes of Rugao yellow chickens aged from 3 to 8 weeks[J]. Chinese Journal of Animal Nutrition, 2022, 34 (4): 2301- 2313.
doi: 10.3969/j.issn.1006-267x.2022.04.026 |
|
16 |
LU J , QU L , LI Y F , et al. Effects of energy-restricted feeding during rearing on the performance, uniformity, and development of Rugao layer breeders at the initiation of the laying period[J]. Animals, 2021, 11 (8): 2222.
doi: 10.3390/ani11082222 |
17 |
FULLER H L , CHANEY L W . Effect of delayed maturity of White Leghorn chickens on subsequent productivity[J]. Poult Sci, 1974, 53 (4): 1348- 1355.
doi: 10.3382/ps.0531348 |
18 |
BRUGGEMAN V , ONAGBESAN O , D'HONDT E , et al. Effects of timing and duration of feed restriction during rearing on reproductive characteristics in broiler breeder females[J]. Poult Sci, 1999, 78 (10): 1424- 1434.
doi: 10.1093/ps/78.10.1424 |
19 |
BÉDÉCARRATS G Y . Control of the reproductive axis: balancing act between stimulatory and inhibitory input[J]. Poult Sci, 2015, 94 (4): 810- 815.
doi: 10.3382/ps/peu042 |
20 |
RENEMA R A , ROBINSON F E , ZUIDHOF M J . Reproductive efficiency and metabolism of female broiler breeders as affected by genotype, feed allocation, and age at photostimulation.2. Sexual maturation[J]. Poult Sci, 2007, 86 (10): 2267- 2277.
doi: 10.1093/ps/86.10.2267 |
21 |
YUAN X H , YANG C R , WANG X N , et al. Progesterone maintains the status of granulosa cells and slows follicle development partly through PGRMC1[J]. J Cell Physiol, 2019, 234 (1): 709- 720.
doi: 10.1002/jcp.26869 |
22 | 李永峰. 育成期能量摄入量对苏禽绿壳蛋鸡母本早期蛋用性能的影响[D]. 北京: 中国农业科学院, 2017. |
LI Y F. The impact of energy intake during growing period on early laying performance of Suqin green eggshell layer female parent[D]. Beijing: Chinese Academy of Agricultural Sciences, 2017. (in Chinese) | |
23 |
LEE A K A , VOLENTINE B K K , BAHR A J M . Two steroidogenic pathways present in the chicken ovary: theca layer prefers△5 pathway and granulosa layer prefers△4 pathway[J]. Domest Anim Endocrinol, 1998, 15 (1): 1- 8.
doi: 10.1016/S0739-7240(97)00057-X |
24 |
KATO M , SHIMADA K , SAITO N , et al. Expression of P45017α-hydroxylase and P450aromatase genes in isolated granulosa, theca interna, and theca externa layers of chicken ovarian follicles during follicular growth[J]. Biol Reprod, 1995, 52 (2): 405- 410.
doi: 10.1095/biolreprod52.2.405 |
25 |
BASTOS N M , GOULART R S , BAMBIL D B , et al. High body energy reserve influences extracellular vesicles miRNA contents within the ovarian follicle[J]. PLoS One, 2023, 18 (1): e0280195.
doi: 10.1371/journal.pone.0280195 |
26 |
CHENG Y , ZHU H , REN J , et al. Follicle-stimulating hormone orchestrates glucose-stimulated insulin secretion of pancreatic islets[J]. Nat Commu, 2023, 14 (1): 6991.
doi: 10.1038/s41467-023-42801-6 |
27 |
CASARINI L , CRÉPIEUX P . Molecular mechanisms of action of FSH[J]. Front Endocrinol, 2019, 10, 305.
doi: 10.3389/fendo.2019.00305 |
28 |
KOO S H , FLECHNER L , QI L , et al. The CREB coactivator TORC2 is a key regulator of fasting glucose metabolism[J]. Nature, 2005, 437 (7062): 1109- 1114.
doi: 10.1038/nature03967 |
29 |
ALTAREJOS J Y , MONTMINY M . CREB and the CRTC co-activators: sensors for hormonal and metabolic signals[J]. Nat Rev Mol Cell Biol, 2011, 12 (3): 141- 151.
doi: 10.1038/nrm3072 |
30 |
WANG Y G , VERA L , FISCHER W H , et al. The CREB coactivator CRTC2 links hepatic ER stress and fasting gluconeogenesis[J]. Nature, 2009, 460 (7254): 534- 537.
doi: 10.1038/nature08111 |
31 |
WANG Y G , LI G , GOODE J , et al. Inositol-1, 4, 5-trisphosphate receptor regulates hepatic gluconeogenesis in fasting and diabetes[J]. Nature, 2012, 485 (7396): 128- 132.
doi: 10.1038/nature10988 |
32 |
HIORT O , HOLTERHUS P M , WERNER R , et al. Homozygous disruption of P450 side-chain cleavage (CYP11A1) is associated with prematurity, complete 46, XY sex reversal, and severe adrenal failure[J]. J Clin Endocrinol Metab, 2005, 90 (1): 538- 541.
doi: 10.1210/jc.2004-1059 |
33 |
HAN J B , LI E W , CHEN L Q , et al. The CREB coactivator CRTC2 controls hepatic lipid metabolism by regulating SREBP1[J]. Nature, 2015, 524 (7564): 243- 246.
doi: 10.1038/nature14557 |
34 |
KUMAR S , KANG H , PARK E , et al. The expression of CKLFSF2B is regulated by GATA1 and CREB in the Leydig cells, which modulates testicular steroidogenesis[J]. Biochim Biophys Acta Gene Regul Mech, 2018, 1861 (12): 1063- 1075.
doi: 10.1016/j.bbagrm.2018.10.002 |
35 |
CORMIER M , GHOUILI F , ROUMAUD P , et al. Influences of flavones on cell viability and cAMP-dependent steroidogenic gene regulation in MA-10 Leydig cells[J]. Cell Biol Toxicol, 2018, 34 (1): 23- 38.
doi: 10.1007/s10565-017-9395-8 |
36 |
CHAUBE R , RAWAT A , INBARAJ R M , et al. Cloning and characterization of estrogen hydroxylase (cyp1a1 and cyp1b1) genes in the stinging catfish Heteropneustes fossilis and induction of mRNA expression during final oocyte maturation[J]. Comp Biochem Physiol A Mol Integr Physiol, 2021, 253, 110863.
doi: 10.1016/j.cbpa.2020.110863 |
37 |
ZHU M Q , WANG D , ZOU K X , et al. Insulin-like growth factor-1 regulates follicle selection of hens by promoting proliferation and inhibiting apoptosis of granulosa cells in prehierarchical follicles in vitro[J]. Anim Reprod Sci, 2022, 247, 107091.
doi: 10.1016/j.anireprosci.2022.107091 |
38 |
ETCHEVERS L , BELOTTI E M , DÍAZ P U , et al. MC2R/MRAP2 activation could affect bovine ovarian steroidogenesis potential after ACTH treatment[J]. Theriogenology, 2021, 174, 102- 113.
doi: 10.1016/j.theriogenology.2021.08.020 |
39 |
BETZ M J , HATIBOGLU N , MAURACHER B , et al. Mc2 receptor knockdown modulates differentiation and lipid composition in adipocytes[J]. Horm Metab Res, 2012, 44 (9): 670- 675.
doi: 10.1055/s-0032-1314854 |
40 |
GOOSSENS K , TESFAYE D , RINGS F , et al. Suppression of keratin 18 gene expression in bovine blastocysts by RNA interference[J]. Reprod Fertil Dev, 2010, 22 (2): 395- 404.
doi: 10.1071/RD09080 |
41 |
CHERMUŁA B , HUTCHINGS G , KRANC W , et al. Expression profile of new gene markers and signaling pathways involved in immunological processes in human cumulus-oophorus cells[J]. Genes (Basel), 2021, 12 (9): 1369.
doi: 10.3390/genes12091369 |
42 | 王震, 马铁伟, 邓凯平, 等. 能量限饲和补偿对湖羊生长性能及相关激素和肉品质的影响[J]. 南京农业大学学报, 2018, 41 (4): 722- 729. |
WANG Z , MA T W , DENG K P , et al. Effects of energy restriction and compensation on growth performance, and related hormones and meat quality of Hu sheep[J]. Journal of Nanjing Agricultural University, 2018, 41 (4): 722- 729. | |
43 | 陶乐凯, 高何璇, 蔡永强, 等. 甘加型藏羊发情周期血浆孕酮动态变化及HPO轴PGR的表达[J]. 中国农业大学学报, 2023, 28 (9): 128- 135. |
TAO L K , GAO H X , CAI Y Q , et al. Dynamic changes of plasma progesterone and expression of HPO axis PGR in Ganjia Tibetan sheep during estrus cycle[J]. Journal of China Agricultural University, 2023, 28 (9): 128- 135. |
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