东北林业大学学报
東北林業大學學報
동북임업대학학보
JOURNAL OF NORTHEAST FORESTRY UNIVERSITY
2014年
9期
1-5
,共5页
谢玲芝%李俊楠%王韶仲%王文娜%谷加存
謝玲芝%李俊楠%王韶仲%王文娜%穀加存
사령지%리준남%왕소중%왕문나%곡가존
林分密度%根系垂直分布%水曲柳%细根%用材林
林分密度%根繫垂直分佈%水麯柳%細根%用材林
림분밀도%근계수직분포%수곡류%세근%용재림
Stem density%Root vertical distribution%Fraxinus mandshurica%Fine root%Commercial forest
采用根钻法,研究了株行距分别为1.0 m×1.0 m、1.5 m×1.5 m、2.0 m×2.0 m 3种林分密度对水曲柳( Fraxinus mandshurica)人工林不同直径等级(≤0.5、>0.5~1.0、>1.0~2.0 mm)根系、特别是吸收根(直径≤0.5 mm)生物量和根长密度及其垂直分布的影响。结果表明:单位面积吸收根生物量随林分密度降低而减少,总细根(直径≤2.0 mm)生物量随林分密度降低而增加。吸收根与总细根根长密度均以中等林分密度下最高。单株水平上,各直径等级根群生物量和根长密度均随着密度的降低而增加。底层(>20~30 cm)吸收根所占整个取样剖面的比例,随着吸收根根长密度的增加而降低。相同密度处理内各样地单位面积根系生物量和根长密度变异较大,导致密度的影响未达到显著性水平,但是根系直径等级和土壤深度对林分和单株细根指标均有显著影响( P<0.05)。总之,林分密度对水曲柳人工林吸收根生物量和根长密度现存量影响较弱,而对其垂直分布格局的影响较强。
採用根鑽法,研究瞭株行距分彆為1.0 m×1.0 m、1.5 m×1.5 m、2.0 m×2.0 m 3種林分密度對水麯柳( Fraxinus mandshurica)人工林不同直徑等級(≤0.5、>0.5~1.0、>1.0~2.0 mm)根繫、特彆是吸收根(直徑≤0.5 mm)生物量和根長密度及其垂直分佈的影響。結果錶明:單位麵積吸收根生物量隨林分密度降低而減少,總細根(直徑≤2.0 mm)生物量隨林分密度降低而增加。吸收根與總細根根長密度均以中等林分密度下最高。單株水平上,各直徑等級根群生物量和根長密度均隨著密度的降低而增加。底層(>20~30 cm)吸收根所佔整箇取樣剖麵的比例,隨著吸收根根長密度的增加而降低。相同密度處理內各樣地單位麵積根繫生物量和根長密度變異較大,導緻密度的影響未達到顯著性水平,但是根繫直徑等級和土壤深度對林分和單株細根指標均有顯著影響( P<0.05)。總之,林分密度對水麯柳人工林吸收根生物量和根長密度現存量影響較弱,而對其垂直分佈格跼的影響較彊。
채용근찬법,연구료주행거분별위1.0 m×1.0 m、1.5 m×1.5 m、2.0 m×2.0 m 3충림분밀도대수곡류( Fraxinus mandshurica)인공림불동직경등급(≤0.5、>0.5~1.0、>1.0~2.0 mm)근계、특별시흡수근(직경≤0.5 mm)생물량화근장밀도급기수직분포적영향。결과표명:단위면적흡수근생물량수림분밀도강저이감소,총세근(직경≤2.0 mm)생물량수림분밀도강저이증가。흡수근여총세근근장밀도균이중등림분밀도하최고。단주수평상,각직경등급근군생물량화근장밀도균수착밀도적강저이증가。저층(>20~30 cm)흡수근소점정개취양부면적비례,수착흡수근근장밀도적증가이강저。상동밀도처리내각양지단위면적근계생물량화근장밀도변이교대,도치밀도적영향미체도현저성수평,단시근계직경등급화토양심도대림분화단주세근지표균유현저영향( P<0.05)。총지,림분밀도대수곡류인공림흡수근생물량화근장밀도현존량영향교약,이대기수직분포격국적영향교강。
We used soil core method to determine how stem density (1.0 m×1.0 m, 1.5 m×1.5 m, and 2.0 m×2.0 m) affects the fine root biomass and length density of different diameter size classes, in particular of absorptive root ( diameter≤0.5 mm) , as well as the vertical distribution.The absorptive root biomass per unit area decreased with stem density decrea-sing, and total fine root ( diameter≤2.0 mm) biomass increased with stem density decreasing.The highest length density of absorptive roots in absorptive and total roots both occurred in the intermediate stem density .At per tree level, root biomass and length density of all diameter size classes increased with stem density decreasing.The proportion of absorptive roots at the deep layer ( 20-30 cm) decreased with the length density of absorptive roots increasing.As large variation within each treatment, stem density had no significant on root traits, however, root diameter size classes and soil depth both had signif-icant influence on root biomass and length density at per area or per tree levels.The stem density had more significant effect on the vertical distribution of root biomass and length density than their standing crops.