| [1]Hao Z,Mohnen D. A review of xylan and lignin biosynthesis:
Foundation for studying Arabidopsisirregular xylemmutants with
pleiotropic phenotypes [J].Critieal Reviews in Biochemistry and
MolecularBiology.2014,49 (3):212-241.
[2] Zhao Q,Nakashima J, Chen F, et al. Laccaseis Necessary and
Nonredundant with peroxidase for lignin ppolymerization during was-
cular ddevelopment in aarabidopsis [J].The Plant Cell,2013,
25(10):3976-3987.
[3]王鹃.盐胁迫下黑果枸杞木质素的代谢研究[D].兰州:兰州
大学,2013.
[4]Lincoln Taiz,Eduardo Zeiger.植物生理学[M].第5版.北京:
科学出版,2015.
[5]郑大锋,邱学青,楼宏铭.木质素的结构及其化学改性进展
[J].精细化工,2005,22(04):249-252.
[6]Kogel-Knabner I.The macromolecular organic composition ofplant
and microbial residues as inputs to soil organic matter [J].Chem-
infomm,2010,105:A3-A8.
[7]Thevenot M,Digna M F,Rumpel C.Fate of lignins in soils:A
review[J].SoilBiology&Biochemisry,2010,42(8):1200-
1211.
[8]Vanholme R,Demedts B,Morreel K,et al.Lignin Biosynthesis
and Struclure[J].Plant Physiology,2010,153(3):895-905
[9]Zhao M,Tang S,Zhang H,et al.Droopy leafl controls leaf ar-
chitecture by orchestrating early brassinosteroid signaling [J].Pro-
ceedings of the National Aeademy of Sciences,2020,117 (35):
21766-21774.
[10] Boerjan W,Ralph J,Baucher M. Lignin biosynthesis [J].An-
nual review of plant biology,2003,54 (1):519-546.
[11]王媛,杨红玉,程在全.SA诱导拟南芥对灰霉病的抗性与木质素含量的关系[J].植物保护,2007,33(04):5.
[12]Hu P,Zhang K,Yang C.BpNAC012 ppositively regulates aabi-
otic sstress responses and ssecondary wall biosynthesis[J].Amer
icanSocielyofPlantTiologiss,2019,179 (2):700-717
[13]张旭.白桦生长及木质素对气侯因子的响应「D].哈尔滨:
东北林业大学,2022.
[14]Ma Y,MacMillan C P,de Vries L,et al. FLA11 and FLA12
glycoproteins fine-tune stem secondary wallpropertiesin response
to mechanical stresses[J].New Phytologist,2022,233 (4):
1750-1767.
[15]张杰.木质素对土壤中氮素转化及其有效性的影响【D].北
京:中国农业科学院,2010.
[16]徐宇强,胡轶,付凤玲,李晚忧.千旱胁迫下玉米自交系叶
片木质素含量变化及其与耐旱性的关系「J].玉米科学,
2007,15 (05):4.
[17]Huang J,Hammerbacher A,Gershenzon J,et al.Storage of car-
bon reserves in spruce trees is prioritizedover growth in the face of
carbon limitation[J].Proceedingsofthe National Academy of
Sciences,2021,118(33).
[18]房福金,肖金兰,王东.氮添加对川西高寒灌丛凋落枝化学
计量特征及养分归还的影响[J],生态学报,2023,43
(07):2927-2937.
[19] EntryJ A,Runion C B, Prior S A,et al. Influence of C02 en-
richmentandnitrogenfertilization on tissue chemistry andcarbon
allocation in longleaf pine seedlings [J].Plant and Soil,1998,
200 (1): 3-11.
[20】肖银龙,涂利华,胡庭兴,等,模拟氨沉降对华西雨屏区苦
竹林凋落物基质质量的影响[J].生态学报,2013,33(20):8
[21]鲍士旦.土壤农化分析[M].第3版.北京:中国农业出版
社,2000.[21]鲍士旦.土壤农化分析[M].第3版.北京:中国农业出版
社,2000.
[22] Abiven S,Heim A, Schmidt M W I. Lignin content and chemical
characteristics in maize and wheat vary between plant organs and
growth stages:consequences for assessing lignin dymamics in soil
[J].Plant and Soil,2011,343 (1):369-378.
[23]Abiven S,Recous S,Reyes V,et al.Mineralisation of C and N
from root,stem and leaf residues in soil and role of their biochemi-
cal quality [J].biology and Fertility of Soils,2005,42 (2):
119-128.
[24]Silver W L,Miya R K.Clobal pattems in root decomposition:
comparisons of climate and litter quality effects[J].Oecologia,
2001,129 (3):407-419.
[25]Campbell M M, Sederoff R R. Variation in lignin content and
composition (mechanisms of control and implications for the gene-
tic improvement of plants)[J].Plant Physiology,1996,110 (1):
3.
[26]陈晓光,石玉华,王成雨,等.氮肥和多效唑对小麦茎秆木
质素合成的影响及其与抗倒伏性的关系[J].中国农业科学,
2011,44 (17) : 3529-3536. |