[1] PEÑAILILLO J,OLIVARES G,MONCADA X,et al.Sex distribution of paper mulberry (
Broussonetia papyrifera) in the pacific[J].PLoS One,2016,11(8):e0161148.
[2] 王子成,沈世华.航天杂交构树的特性与效益[J].国土绿化,2013(5):47-48.
[3] TANG F,CHEN N Z,ZHAO M L,et al.Identification and functional divergence analysis of
WOX gene family in paper mulberry[J].International Journal of Molecular Sciences,2017,18(8):1782.
[4] SI B W,TAO H,ZHANG X L,et al.Effect of
Broussonetia papyrifera L.(paper mulberry) silage on dry matter intake,milk composition,antioxidant capacity and milk fatty acid profile in dairy cows[J].Asian-Australasian Journal of Animal Sciences,2018,31(8):1259-1266.

[5] KORNFELT L F,WEISBJERG M R,NØRGAARD P.Effect of harvest time and physical form of alfalfa silage on chewing time and particle size distribution in boli,rumen content and faeces[J].Journal of Animal Science,2013,7(2):232-244.
[6] GETACHEW G,LACA E A,PUTNAM D H,et al.The impact of lignin downregulation on alfalfa yield,chemical composition,and
in vitro gas production[J].Journal of Science Food Agriculture,2018,98(11):4205-4215.

[7] LYNCH J P,BAAH J,BEAUCHEMIN K A.Conservation,fiber digestibility,and nutritive value of corn harvested at 2 cutting heights and ensiled with fibrolytic enzymes,either alone or with a ferulic acid esterase-producing inoculant[J].Journal of Dairy Science,2015,98(2):1214-1224.

[8] NEYLON J M,KUNG L Jr.Effects of cutting height and maturity on the nutritive value of corn silage for lactating cows[J].Journal of Dairy Science,2003,86(6):2163-2169.

[9] MANNERKORPI P,BRANDT M.Feeding value of whole-crop wheat silage for ruminants related to stage of maturity and cutting height[J].Archiv für Tierernaehrung,1993,45(1):89-100.

[10] 黄彩变,曾凡江,雷加强.留茬高度对骆驼刺生长发育和产草量的影响[J].草地学报,2011,19(6):948-953.
[11] 张国君,李云,孙宇涵,等.四倍体刺槐生物质产量影响因素的研究[C]//第八届中国林业青年学术年会论文集.哈尔滨:中国林学会,黑龙江省林学会,东北林业大学,2008:212-216.
[12] 宿爱芝.辣木栽培技术与生物量关系的研究[D].硕士学位论文.北京:中国林业科学研究院,2012:26-32.
[13] 沈世华.杂交构树的"长相"和"性情"[J].生命世界,2018(10):6-7.
[14] BAUR F J,ENSMINGER L G.The association of official analytical chemists (AOAC)[J].Journal of the American Oil Chemists' Society,1977,54(4):171-172.

[15] VAN SOEST P J,ROBERTSON J B,LEWIS B A.Methods for dietary fiber,neutral detergent fiber,and nonstarch polysaccharides in relation to animal nutrition[J].Journal of Dairy Science,1991,74(10):3583-3597.

[16] PLAYNE M J,MCDONALD P.The buffering constituents of herbage[J].Journal of the Science of Food and Agriculture,2010,17(6):264-268.
[17] 赵微.不同生长期含单宁饲草单宁含量变化及其对瘤胃体外发酵的影响[D]硕士学位论文.延吉:延边大学,2015:9-10.
[18] CHEN L,GUO G,YU C Q,et al.The effects of replacement of whole-plant corn with oat and common vetch on the fermentation quality,chemical composition and aerobic stability of total mixed ration silage in Tibet[J].Animal Science Journal,2015,86(1):69-76.

[19] YUAN X J,WEN A Y,WANG J,et al.Effects of four short-chain fatty acids or salts on fermentation characteristics and aerobic stability of alfalfa (
Medicago sativa L.) silage[J].Journal of the Science of Food and Agriculture,2018,98(1):328-335.

[20] BAI S,CAO Z J,CAO B B,et al.Effects of different forage combinations in total mixed rations on
in vitro gas production kinetics,ruminal and milk fatty acid profiles of lactating cows[J].Animal Science Journal,2018,89(9):1261-1270.

[21] ZHANG D F,YANG H J.
In vitro ruminal methanogenesis of a hay-rich substrate in response to different combination supplements of nitrocompounds;pyromellitic diimide and 2-bromoethanesulphonate[J].Animal Feed Science and Technology,2011,163(1):20-32.

[22] MAKKAR H P,SHARMA O P,DAWRA R K,et al.Simple determination of microbial protein in rumen liquor[J].Journal of Dairy Science,1982,65(11):2170-2173.

[23] ØRSKOV E R,MCDONALD I.The estimation of protein degradability in the rumen from incubation measurements weighted according to rate of passage[J].The Journal of Agricultural Science,1979,92(2):499-503.

[24] LIM H,LEE K H,LEE K H,et al.Biomass expansion factors and allometric equations in an age sequence for Japanese cedar (
Cryptomeria japonica) in southern Korea[J].Journal of Forest Research,2013,18(4):316-322.

[25] PEICHL M,ARAIN M A.Allometry and partitioning of above- and belowground tree biomass in an age-sequence of white pine forests[J].Forest Ecology and Management,2007,253(1/2/3):68-80.
[26] 刘玉,林萌萌,郑爱华,等.杂交构树不同高度及不同部位的营养价值比较[J].畜牧兽医杂志,2018,37(6):77-78,81.
[27] 刘春龙,李忠秋,孙海霞,等.影响青贮饲料品质的因素[J].中国牛业科学,2006,32(5):63-66.
[28] LYNCH J P,O'KIELY P,DOYLE E M.Yield,quality and ensilage characteristics of whole-crop maize and of the cob and stover components:harvest date and hybrid effects[J].Grass and Forage Science,2012,67(4):472-487.

[29] 司丙文,徐文财,张小利,等.不同添加剂对杂交构树青贮发酵品质的影响[J].动物营养学报,2018,30(11):4670-4675.
[30] 王学凯.添加乳酸菌和蔗糖对几种木本饲料青贮蛋白组分的影响[D].硕士学位论文.北京:中国农业大学,2018:11-13.
[31] KUNG L,Jr,SHAVER R D,GRANT R J,et al.Silage review:interpretation of chemical,microbial,and organoleptic components of silages[J].Journal of Dairy Science,2018,101(5):4020-4033.

[32] YANG J S,TAN H S,CAI Y M.Characteristics of lactic acid bacteria isolates and their effect on silage fermentation of fruit residues[J].Journal of Dairy Science,2016,99(7):5325-5334.

[33] SILVA V P,PEREIRA O G,LEANDRO E S,et al.Effects of lactic acid bacteria with bacteriocinogenic potential on the fermentation profile and chemical composition of alfalfa silage in tropical conditions[J].Journal of Dairy Science,2016,99(3):1895-1902.

[34] MAHANNA B.Proper management assures high-quality silage,grains[J].Feedstuffs,1994,66(3):12-15.
[35] 张颖超.优良乳酸菌筛选及其在典型木本饲料青贮中的作用机制研究[D].博士学位论文.北京:中国农业大学,2019:97-99.
[36] JAWORSKI N W,LÆRKE H N,KNUDSEN K E B,et al.Carbohydrate composition and
in vitro digestibility of dry matter and nonstarch polysaccharides in corn,sorghum,and wheat and coproducts from these grains[J].Journal of Animal Science,2015,93(3):1103-1113.

[37] KLJAK K,PINO F,HEINRICHS A J.Effect of forage to concentrate ratio with sorghum silage as a source of forage on rumen fermentation,N balance,and purine derivative excretion in limit-fed dairy heifers[J].Journal of Dairy Science,2017,100(1):213-223.

[38] ASSOUMANI M B,VEDEAU F,JACQUOT L,et al.Refinement of an enzymatic method for estimating the theoretical degradability of proteins in feedstuffs for ruminants[J].Animal Feed Science and Technology,1992,39(3/4):357-368.
[39] MATRAS J,BARTLE S J,PRESTON R L.Nitrogen utilization in growing lambs:effects of grain (starch) and protein sources with various rates of ruminal degradation[J].Journal of Animal Science,1991,69(1):339-347.

[40] NSAHLAI I V,SIAW D,OSUJI P O.The relationships between gas production and chemical composition of 23 browses of the genus
Sesbania[J].Journal of the Science of Food and Agriculture,1994,65(1):13-20.

[41] CORNOU C,STORM I M L D,HINDRICHSEN I K,et al.A ring test of a wireless
in vitro gas production system[J].Animal Production Science,2013,53(6):585-592.

[42] GETACHEW G,ROBINSON P H,DEPETERS E J,et al.Relationships between chemical composition,dry matter degradation and
in vitro gas production of several ruminant feeds[J].Animal Feed Science and Technology,2004,111(1/2/3/4):57-71.
[43] 左鑫,陈哲,谢强,等.不同产地构树叶粉和构树枝叶粉营养成分及其鹅代谢能的测定[J].动物营养学报,2018,30(7):2823-2830.