Page 126 - 《广西植物》2020年第6期
P. 126
8 7 2 广 西 植 物 40 卷
育严重滞后ꎬ株高仅仅是对照植株的四分之一ꎬ叶 phytohormones through the plant vascular system [J]. Curr
Opin Plant Biolꎬ 34: 1-8.
片 tZ、tZR、cZ 和 cZR 的含量显著降低( Cai et al.ꎬ
LI XLꎬ 2011. Establishment of immature embryo transgenic
2018)ꎮ
acceptor system and transformation of CYP735A gene by
迄今 为 止ꎬ 还 没 有 克 隆 和 鉴 定 针 叶 树 种 agrobacterium tumefaciens in three maize inbred ̄lines
CYP735A 基因的有关报道ꎮ 本研究通过 RACE 和 [D]. Taian: Shandong Agricultural University. [ 李晓丽ꎬ
2011. 3 个玉米自交系幼胚转化受体系统建立和 CYP735A
测序验证获取了 马 尾 松 PmCYP735A 基 因 cDNA
基因的农杆菌介导转化 [D]. 泰安:山东农业大学.]
全长序列ꎬ并对其进行了生物信息学分析和表达 LI ZKꎬ YAN Dꎬ XUE ZYꎬ et al.ꎬ 2018. Regulations of plant
模式实时定量 PCR 检测ꎬ旨在探究其生物学功能 growth and development by cytokinins and their applications
in rice production [ J]. Chin J Rice Sciꎬ 32 ( 4): 311 -
及它们在物种间的表达调控异同ꎬ并为进一步挖 324. [李志康ꎬ 严冬ꎬ 薛张逸ꎬ 等ꎬ 2018. 细胞分裂素对植
掘马尾松优异基因资源奠定基础ꎮ 物生长发育的调控机理研究进展及其在水稻生产中的应
用探讨 [J]. 中国水稻科学ꎬ 32(4):311-324.]
MOK DWꎬ MOK MCMꎬ 2001. Cytokinin metabolism and action
参考文献: [J]. Ann Rev Plant Physiolꎬ 52(52): 89-118.
NELSON DRꎬ KAMATAKI Tꎬ WAXMAN DJꎬ et al.ꎬ
CAI Lꎬ ZHANG Lꎬ FU Qꎬ et al.ꎬ 2018. Identification and 1993. The P450 superfamily: Update on new sequencesꎬ
expression analysis of cytokinin metabolic genes IPTsꎬ gene mappingꎬ accession numbersꎬ early trivial names of en ̄
CYP735A and CKXs in the biofuel plant Jatropha curcas zymesꎬ and nomenclature [ J]. DNA Cell Biolꎬ 12 ( 1):
1-51.
[J]. Peer Jꎬ 6(2): e4812.
NELSON DRꎬ MING Rꎬ ALAM Mꎬ et al.ꎬ 2008. Comparison of
CHEN Hꎬ YANG Zꎬ HU Yꎬ et al.ꎬ 2016. Reference genes
selection for quantitative gene expression studies in Pinus cytochrome P450 genes from six plant genomes [ J]. Trop
massoniana L. [J]. Treesꎬ 30(3): 685-696. Plant Biolꎬ 1(3-4): 216-235.
DENG Yꎬ WANG XCꎬ YANG SHꎬ et al.ꎬ 2006. New insights SAKAKIBARA Hꎬ TAKEI Kꎬ HIROSENꎬ 2006. Interactions
between nitrogen and cytokinin in the regulation of
into cytokinins: Metabolismꎬ signal transductionꎬ cross talks
metabolism and development [J]. Trends Plant Sciꎬ 11(9):
and potentials in agricultural applications [ J]. Chin Bull
440-448.
Botꎬ 23(5): 478 - 498. [邓 岩ꎬ 王 兴 春ꎬ 杨 淑 华ꎬ 等ꎬ
2006. 细胞分裂素:代谢、信号转导、交叉反应与农艺性状 TAKEI Kꎬ YAMAYA Tꎬ SAKAKIBARA Hꎬ 2004. Arabidopsis
改良 [J]. 植物学通报ꎬ 23(5):478-498.] CYP735A1 and CYP735A2 encode cytokinin hydroxylases
that catalyze the biosynthesis of trans ̄zeatin [ J]. J Biol
HABERER Gꎬ KIEBERJJꎬ 2002. Cytokinins: New insights into
Chemꎬ 279(40): 41866-41872.
a classic phytohormone [ J ]. Plant Physiolꎬ 128 ( 2 ):
VEACH YKꎬ MARTIN RCꎬ MOKD WSꎬ et al.ꎬ 2003. O ̄glu ̄
354-362.
HASEMANN CAꎬ RAVICHANDRAN KGꎬ PETERSONJAꎬ et cosylation of cis ̄zeatin in maize characterization of genesꎬ
al.ꎬ 1994. Crystal structure and refinement of cytochrome enzymesꎬ and endogenous cytokinins [ J]. Plant Physiolꎬ
P450terp at 2. 3 A resolution [ J]. J Mol Biolꎬ 236 (4): 131(3): 1374-1380.
ZHANG HMꎬ WANG JLꎬ LIAO XRꎬ 2003. Biosynthesisꎬ
1169-1185.
metabolism and receptor of cytokinins [J]. J Plant Physiolꎬ
KIBA Tꎬ TAKEI Kꎬ KOJIMA Mꎬ et al.ꎬ 2013. Side ̄chain
modification of cytokinins controls shoot growth in Arabidopsis 39(3): 267-272. [张红梅ꎬ 王俊丽ꎬ 廖祥儒ꎬ 2003. 细胞
[J]. Dev Cellꎬ 27(4): 452-461. 分裂素的生物合成、代谢和受体 [J]. 植物生理学报ꎬ
KIEBER JJꎬ SCHALLER GEꎬ 2018. Cytokinin signaling in 39(3):267-272.]
ZHANG Kꎬ NOVAK Oꎬ WEI Zꎬ et al.ꎬ 2014. Arabidopsis
plant development [J]. Developmentꎬ 145(4): dev149344.
ABCG14 protein controls the acropetal translocation of root ̄
KO Dꎬ KANG Jꎬ KIBA Tꎬ et al.ꎬ 2014. Arabidopsis ABCG14 is
synthesized cytokinins [J]. Nat Commꎬ 5(2): 3274.
essential for the root ̄to ̄shoot translocation of cytokinin
[J]. Proc Natl Acad Sci USAꎬ 111(19): 7150-7155.
LACOMBE Bꎬ ACHARD Pꎬ 2016. Long ̄distance transport of (责任编辑 蒋巧媛)