Chin J Plant Ecol ›› 2005, Vol. 29 ›› Issue (3): 403-410.DOI: 10.17521/cjpe.2005.0053 cstr: 32100.14.cjpe.2005.0053
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CHENG Yun-Huan1, HAN You-Zhi1,2, WANG Qing-Cheng1, WANG Zheng-Quan1,*(
)
Accepted:2004-11-18
Published:2005-05-30
Contact:
WANG Zheng-Quan
CHENG Yun-Huan, HAN You-Zhi, WANG Qing-Cheng, WANG Zheng-Quan. SEASONAL DYNAMICS OF FINE ROOT BIOMASS, ROOT LENGTH DENSITY, SPECIFIC ROOT LENGTH AND SOIL RESOURCE AVAILABILITY IN A LARIX GMELINI PLANTATION[J]. Chin J Plant Ecol, 2005, 29(3): 403-410.
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Fig.1 Dynamics of total (a), live (b) and dead (c) fine root biomass (≤2 mm in diameter) of larch plantation (17 years) in different soil depths through months The legend of Fig.2, Fig.3 are the same as that of Fig.1
| 土层 Soil depth (cm) | 相关系数 Correlation coefficients (r) | ||||||
|---|---|---|---|---|---|---|---|
| rw | rT | rNH4 | rNO3 | rNH4-NO3 | r2W+TW+Τ2 | r2W+T+N | |
| 总细根生物量 Total fine root biomass | |||||||
| 0~10 | -0.37 | 0.001 | 0.36 | 0.33 | -0.85* | 0.40 | 0.79 |
| 11~20 | 0.01 | 0.03 | 0.48 | 0.52 | 0.78 | 0.04 | 0.61 |
| 21~30 | -0.44 | 0.47 | 0.67 | 0.07 | -0.59 | 0.89* | 0.82* |
| 0~30 | -0.44 | 0.16 | 0.20 | 0.61 | 0.21 | 0.16 | 0.71 |
| 活细根生物量 Live fine root biomass | |||||||
| 0~10 | 0.31 | 0.04 | -0.19 | 0.13 | -0.39 | 0.11 | 0.54 |
| 11~20 | 0.35 | -0.16 | 0.56 | 0.62 | 0.91* | 0.10 | 0.88* |
| 21~30 | -0.81* | 0.07 | -0.13 | 0.06 | 0.07 | 0.79 | 0.79 |
| 0~30 | 0.33 | 0.08 | 0.04 | 0.61 | 0.57 | 0.11 | 0.58 |
| 死细根生物量 Dead fine root biomass | |||||||
| 0~10 | -0.69 | 0.10 | 0.01 | 0.08 | 0.08 | 0.56 | 0.67 |
| 11~20 | -0.70 | 0.31 | 0.24 | 0.29 | -0.41 | 0.51 | 0.62 |
| 21~30 | 0.61 | 0.50 | 0.43 | 0.01 | -0.43 | 0.43 | 0.46 |
| 0~30 | -0.78 | 0.24 | 0.23 | 0.31 | -0.60 | 0.61 | 0.38 |
| 活细根根密度 Root length density (RLD) | |||||||
| 0~10 | 0.50 | 0.05 | 0.10 | 0.07 | -0.20 | 0.25 | 0.52 |
| 11~20 | 0.39 | 0.05 | 0.36 | 0.59 | 0.74 | 0.15 | 0.68 |
| 21~30 | -0.90* | -0.20 | 0.18 | 0.30 | 0.10 | 0.89* | 0.92* |
| 0~30 | 0.36 | -0.14 | 0.02 | 0.60 | 0.49 | 0.13 | 0.73 |
| 活细根比根长 Specific root length (SRL) | |||||||
| 0~10 | 0.98* | 0.01 | 0.01 | 0.01 | 0.04 | 0.96* | 0.98* |
| 11~20 | 0.42 | -0.21 | 0.09 | 0.20 | 0.23 | 0.28 | 0.33 |
| 21~30 | -0.90* | -0.15 | 0.09 | 0.01 | 0.08 | 0.92* | 0.96* |
| 0~30 | 0.30 | 0.05 | 0.03 | 0.55 | 0.43 | 0.1 | 0.73 |
Table 1 Correlation coefficients of fine root (≤2 mm in diameter) biomass, root length density (RLD) and specific root length (SRL) with soil moisture, temperature, NH+4 and NO-3 in larch plantation
| 土层 Soil depth (cm) | 相关系数 Correlation coefficients (r) | ||||||
|---|---|---|---|---|---|---|---|
| rw | rT | rNH4 | rNO3 | rNH4-NO3 | r2W+TW+Τ2 | r2W+T+N | |
| 总细根生物量 Total fine root biomass | |||||||
| 0~10 | -0.37 | 0.001 | 0.36 | 0.33 | -0.85* | 0.40 | 0.79 |
| 11~20 | 0.01 | 0.03 | 0.48 | 0.52 | 0.78 | 0.04 | 0.61 |
| 21~30 | -0.44 | 0.47 | 0.67 | 0.07 | -0.59 | 0.89* | 0.82* |
| 0~30 | -0.44 | 0.16 | 0.20 | 0.61 | 0.21 | 0.16 | 0.71 |
| 活细根生物量 Live fine root biomass | |||||||
| 0~10 | 0.31 | 0.04 | -0.19 | 0.13 | -0.39 | 0.11 | 0.54 |
| 11~20 | 0.35 | -0.16 | 0.56 | 0.62 | 0.91* | 0.10 | 0.88* |
| 21~30 | -0.81* | 0.07 | -0.13 | 0.06 | 0.07 | 0.79 | 0.79 |
| 0~30 | 0.33 | 0.08 | 0.04 | 0.61 | 0.57 | 0.11 | 0.58 |
| 死细根生物量 Dead fine root biomass | |||||||
| 0~10 | -0.69 | 0.10 | 0.01 | 0.08 | 0.08 | 0.56 | 0.67 |
| 11~20 | -0.70 | 0.31 | 0.24 | 0.29 | -0.41 | 0.51 | 0.62 |
| 21~30 | 0.61 | 0.50 | 0.43 | 0.01 | -0.43 | 0.43 | 0.46 |
| 0~30 | -0.78 | 0.24 | 0.23 | 0.31 | -0.60 | 0.61 | 0.38 |
| 活细根根密度 Root length density (RLD) | |||||||
| 0~10 | 0.50 | 0.05 | 0.10 | 0.07 | -0.20 | 0.25 | 0.52 |
| 11~20 | 0.39 | 0.05 | 0.36 | 0.59 | 0.74 | 0.15 | 0.68 |
| 21~30 | -0.90* | -0.20 | 0.18 | 0.30 | 0.10 | 0.89* | 0.92* |
| 0~30 | 0.36 | -0.14 | 0.02 | 0.60 | 0.49 | 0.13 | 0.73 |
| 活细根比根长 Specific root length (SRL) | |||||||
| 0~10 | 0.98* | 0.01 | 0.01 | 0.01 | 0.04 | 0.96* | 0.98* |
| 11~20 | 0.42 | -0.21 | 0.09 | 0.20 | 0.23 | 0.28 | 0.33 |
| 21~30 | -0.90* | -0.15 | 0.09 | 0.01 | 0.08 | 0.92* | 0.96* |
| 0~30 | 0.30 | 0.05 | 0.03 | 0.55 | 0.43 | 0.1 | 0.73 |
| [1] | Anderson LJ, Comas LH, Lakso AN, Eissenstat DM (2003). Mul tipleriskfactorsinrootsurvivorship:afour_yearstudyinConcordgrape. NewPhytologist, 158,489-501. |
| [2] | Bloomfield JK, Vogt KA, Wargo PM (1996). TreerootturnoverandSenescence.In:WaiselY, EshelA, KaafkafiUeds. PlantRoots:theHiddenHalf.2ndedn. MarcelDekker, NewYork,363-381. |
| [3] | Burke MK, Raynai DJ, Mrrchell MJ (1991). Soilnitrogenavail abilityinfluencesseasonalcarbonallocationpatternsinsugarmaple (Acersaccharum). CanadianJournalofForestResearch, 22,447-456. |
| [4] |
Burton AJ, Pregitzer KS, Hendrick RL (2000). Relationshipsbe tweenfinerootdynamicsandnitrogenavailabilityinMichigannorthernhardwoodforest. Oecologia, 125,389-399.
DOI PMID |
| [5] |
Canadell J, Jackson RB, Ehleringer JR, Mooney HA, Sala OE, Schulze ED (1996). Maximumrootingdepthofvegetationtypesattheglobalscale. Oecologia, 108,583-595.
DOI PMID |
| [6] | Domisch T, Finér L, Lehto T (2002). Growth, carbohydrateandnutrientallocationofScotspineseedlingsafterexposuretosimu latedlowsoiltemperatureinspring. PlantandSoil, 246,75-86. |
| [7] | Eissenstat DM, vanRees KCJ (1994). Thegrowthandfunctionofpineroots. EcologicalBulletins, 43,76-91. |
| [8] | Eissenstat DM, Yanai RD (1997). Theecologyofrootlifespan. AdvancesinEcologicalResearch, 27,2-59. |
| [9] | Eissenstat EM (1991). Ontherelationshipbetweenspecificrootlengthandtherateofrootproliferation:afieldstudyusingcitrusrootstocks. NewPhytologist, 118,63-68. |
| [10] | Espeleta JF, Donovan LA (2002). Finerootdemographyandmor phologyinresponsetosoilresourcesavailabilityamongxericandmesicsandhilltreespecies. FunctionalEcology, 16,113-121. |
| [11] | Fahey TJ, Hughes JW (1994). Finerootdynamicsinnorthernhardwoodforestecosystem, HubbardBrookexperimentalforest, NH. JournalofEcology, 82,533-548. |
| [12] |
Gaudinski JB, Trumbore SE, Davidson EA, Cook AC, Markewitz D, Richter D (2001). Theageoffine_rootcarboninthreeforestsoftheeasternUnitedStatesmeasuredbyradiocarbon. Oecologia, 129,420-429.
DOI PMID |
| [13] | Gill RA, Jackson RB (2000). Globalpatternsofrootturnoverforterrestrialecosystems. NewPhytologist, 147,13-31. |
| [14] | Gower ST, Vogt KA, Grier CC (1992). CarbondynamicsofRockyMountainDouglas_fir:influenceofwaterandnutrientavailability. EcologicalMonographs, 62,43-65. |
| [15] |
Hendrick RL, Pregitzer KS (1992). Thedemographyoffinerootinanorthernhardwoodforest. Ecology, 73,1094-1104.
DOI URL |
| [16] |
Hendrick RL, Pregitzer KS (1993). Patternsoffinerootmortalityintwosugarmapleforests. Nature, 361,59-61.
DOI URL |
| [17] | Hendrick RL, Pregitzer KS (1996). Temporalanddepth_relatedpatternsoffinerootdynamicsinnorthernhardwoodforests. JournalofEcology, 84,167-176. |
| [18] | Huang JH (黄建辉), Han XG (韩兴国), Chen LZ (陈灵芝) (1999). Advancesintheresearchof (fine) rootbiomassinforestecosystems. ActaEcologicaSinica (生态学报), 19,270-277. (inChinesewithEnglishabstract). |
| [19] | Hutchings MJ, John EA (2003). Distributionofrootsinsoil, androotforagingactivity.In:KroonHD, VisserEJWeds.RootE cology. Springer_Verlag, NewYork,61-83. |
| [20] | King JS, Albaugh TJ, Allen HL, Buford M, Strain BR, Dougherty P (2002). Below_groundcarboninputtosoiliscontrolledbynu trientavailabilityandfinerootdynamicsinloblollypine. NewPhytologist, 154,389-398. |
| [21] | Körner C (2003). Carbonlimitationintrees. JournalofEcology, 91,4-17. |
| [22] | Lauenroth WK, Gill R (2003). Turnoverofrootsystems.In:KroonHD, VisserEJWeds. RootEcology.Springer_Verlag, NewYork,61-83. |
| [23] | Li LH (李凌浩), Ling P (林鹏), Xing XR (邢雪荣) (1998). FinerootbiomassandproductionofCastanopsiseyreiforestsinWuyiMountains. ChineseJournalofAppliedEcology (应用生态学报), 9,337-340. (inChinesewithEnglishabstract). |
| [24] | López B, Sabat S, Gracia CA (2001). AnnualandseasonalchangesinfinerootbiomassofaQuercusilexL.forest. PlantandSoil, 230,125-134. |
| [25] | Majdi H (2001). ChangesinfinerootproductionandlongevityinrelationtowaterandnutrientavailabilityinaNorwaysprucestandinnorthernSweden. TreePhysiology, 21,1057-1061. |
| [26] | Nadelhoffer KJ (2000). Researchreview:thepotentialeffectsofnitrogendepositiononfine_rootproductioninforestecosystems. NewPhytologist, 147,131-139. |
| [27] |
Nepstad DC, deCarvalbo CR, Davidson EA, Jipp PH, Lefevre PA, Negreiros GH, daSilva ED, Stone TA, Trumbore SE, Vieira S (1994). TheroleofdeeprootsinthehydrologicalandcarboncyclesofAmazonianforestsandpastures. Nature, 372,666-669.
DOI URL |
| [28] | Pregitzer KS (2003). Woodyplants, carbonallocationandfineroots.NewPhytologist, 158,421-423. |
| [29] | Pregitzer KS, King JS, Burton AJ (2000). Responseoftreefinerootstotemperature. NewPhytologist, 147,105-115. |
| [30] | Pregizer KS, Deforest JL, Burton AJ, Allen MF, Ruess RW, Hen drich RL (2002). FinerootarchitectureofninenorthAmericantrees. EcologicalMonographs, 72,293-309. |
| [31] | Schenk HJ, Jackson RB (2002). Theglobalbiogeographyofroots. EcologicalMonographs, 72,311-328. |
| [32] |
Schulze ED, Bauer G, Buchmann N, Canadell J, Ehleringer JR, Jackson RB, Jobbagy E, Loreti J, Mooney HA, Oesterbeld M, Sala O (1996). Wateravailability, rootingdepth, andvegetationzonesalonganariditygradientinPatagonia. Oecologia, 108,503-511.
DOI PMID |
| [33] | Shipley B, Meziane D (2002). Thebalanced_growthhypothesisandtheallometryofleafandrootbiomassallocation. FunctionalE cology, 16,326-331. |
| [34] | Smit AL, George E, Groenwold J (1999). Rootobservationsandmeasurementsat (transparent) interfaceswithsoil. In:SmitAL, BengoughAG, EngelsC, NoordwijkMV, PellerinS, vandeGeijnSCeds.RootMethods.Springer_Verlag, NewYork,236-266. |
| [35] | Steele SJ, Gower ST, Vogel JG, Norman JM (1997). Rootmass, netprimaryproductionandturnoverinaspen, jackpineandblackspruceforestsinSaskatchewanandManitovaCanada. TreePhysiology, 17,577-587. |
| [36] | Usman S, Singh SP, Rawat YS (1999). FinerootproductionandturnoverintwoevergreencentralHimalayanforests. AnnalsofBotany, 84,87-94. |
| [37] | Vogt KA, Vogt DJ, Palmiotto PA, Boon P, HaraJO', Absbjornsen H (1996). Reviewofrootdynamicsinforestecosystemsgroupedbyclimate, climaticforesttypeandspecies. PlantandSoil, 187,159-219. |
| [38] |
Wang ZQ, Burch WH, Mou P, Jones RH, Mitchell RJ (1995). Accuracyofvisibleandultravioletlightforestimationliverootproportionswithminirhizotrons. Ecology, 76,2330-2334.
DOI URL |
| [39] | Wen DZ (温达志), Wei P (魏平), Kong GH (孔国辉), Ye WH (叶万辉) (1999). ProductionandturnoverrateoffinerootsintwolowersubtropicalforestsitesatDinghushan. ActaPhytoe cologicaSinica (植物生态学报), 23,361-369. (inChinesewithEnglishabstract). |
| [40] | Zhang XQ (张小全) (2001). Finerootbiomass, productionandturnoveroftreesinrelationstoenvironmentalconditions. ForestResearch (林业科学研究), 14,566-573. (inChinesewithEnglishabstract). |
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