Chin Bull Bot ›› 2015, Vol. 50 ›› Issue (4): 412-459.doi: 10.11983/CBB15132

• REVIEW BY EDITOR-IN-CHIEF • Previous Articles     Next Articles

Research Advances on Plant Science in China in 2014

Kang Chong1, Tai Wang1, Qian Qian2, Xiaojing Wang3, Jianru Zuo4, Hongya Gu5, Liwen Jiang6, Zhiduan Chen1, Yongfei Bai1, Shuhua Yang7, Hongzhi Kong1, Fan Chen4, Langtao Xiao8   

  1. 1Institute of Botany, Chinese Academy of Sciences, Beijing 100093, China
    2Agricultural Genomics Institute at Shenzhen, China Academy of Agricultural Sciences, Shenzhen 518120, China
    3College of Life Sciences, South China Normal University, Guangzhou 510631, China
    4Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing 100101, China
    5College of Life Sciences, Peking University, Beijing 100871, China
    6The Chinese University of Hong Kong, Shatian, China
    7College of Biological Sciences, China Agricultural University, Beijing 100094, China
    8College of Bioscience and Biotechnology, Hunan Agricultural University, Changsha 410128, China
  • Online:2015-05-07 Published:2015-07-01
  • About author:

    ? These authors contributed equally to this paper

Abstract:

Plant science in China has been developing steadily in 2014 in that there is a rapid growth in the original and creative research papers. Chinese scientists have made significant contributions to insights into important plant scientific issues, such as the mechanism of strigolactone signaling transduction in rice, the regulation of rice metabolic hereditary, the genetic basis of rice male sterility, agronomy and the environmental biology. Researches on plant genomics exhibit multi-dimensional and integrative trends, spaning from function to evolution with diverse materials from model crops to cash crops. Significant progresses have been made on the responses of ecosystem carbon sink to global climate change. The achievements of plant sciences, especially in rice biology, in China have been drawn great attentions by the high impact journals including Nature. This review aims to provide an overall picture of plant science researches in China and highlights some of the important findings in 2014.

Figure 1

Annual number of plant science publications originating from China, Japan and the west from 2005 to 2014, based on three top plant science journals (data sour- ces: Web of Science)"

1 Ao Y, Li ZQ, Feng DR, Xiong F, Liu J, Li JF, Wang ML, Wang JF, Liu B, Wang HB (2014). OsCERK1 and OsRLCK176 play important roles in peptidoglycan and chitin signaling in rice innate immunity.Plant J 80, 1072-1084.
2 Bai L, Ma XN, Zhang GZ, Song SF, Zhou Y, Gao LJ, Miao YC, Song CP (2014a). A receptor-like kinase mediates ammonium homeostasis and is important for the polar growth of root hairs in Arabidopsis.Plant Cell 26, 1497-1511.
3 Bai WN, Wang WT, Zhang DY (2014b). Contrasts between the phylogeographic patterns of chloroplast and nuclear DNA highlight a role for pollen-mediated gene flow in preventing population divergence in an East Asian tem- perate tree.Mol Phylogenet Evol 81, 37-48.
4 Bao F, Huang X, Zhu C, Zhang X, Li X, Yang S (2014a). Arabidopsis HSP90 protein modulates RPP4-mediated temperature-dependent cell death and defense respons- es.New Phytol 202, 1320-1334.
5 Bao Y, Wang C, Jiang C, Pan J, Zhang G, Liu H, Zhang H (2014b). The tumor necrosis factor receptor-associated factor (TRAF)-like family protein SEVEN IN ABSENTIA 2 (SINA2) promotes drought tolerance in an ABA-depend- ent manner in Arabidopsis.New Phytol 202, 174-187.
6 Bu Q, Lü T, Shen H, Luong P, Wang J, Wang Z, Huang Z, Xiao L, Engineer C, Kim TH, Schroeder JI, Huq E (2014a). Regulation of drought tolerance by the F-box protein MAX2 in Arabidopsis.Plant Physiol 164, 424-439.
7 Bu ZY, Yu Y, Li ZP, Liu YC, Jiang W, Huang Y, Dong AW (2014b). Regulation of Arabidopsis flowering by the his- tone mark readers MRG1/2 via interaction with CONS- TANS to modulate FT expression.PLoS Genet 10, e100-4617.
8 Cai Q, Yuan Z, Chen M, Yin C, Luo Z, Zhao X, Liang W, Hu J, Zhang D (2014a). Jasmonic acid regulates spikelet development in rice.Nat Commun 5, 3476.
9 Cai Y, Zhuang X, Gao C, Wang X, Jiang L (2014b). The Arabidopsis endosomal sorting complex required for trans- port III regulates internal vesicle formation of the prevacu- olar compartment and is required for plant development.Plant Physiol 165, 1328-1343.
10 Cai Z, Liu J, Wang H, Yang C, Chen Y, Li Y, Pan S, Dong R, Tang G, Barajas-Lopez JD, Fujii H, Wang X (2014c). GSK3-like kinases positively modulate abscisic acid sig- naling through phosphorylating subgroup III SnRK2s in Arabidopsis.Proc Natl Acad Sci USA 111, 9651-9656.
11 Cao M, Du P, Wang X, Yu YQ, Qiu YH, Li W, Gal-On A, Zhou C, Li Y, Ding SW (2014a). Virus infection triggers widespread silencing of host genes by a distinct class of endogenous siRNAs in Arabidopsis.Proc Natl Acad Sci USA 111, 14613-14618.
12 Cao MJ, Wang Z, Zhao Q, Mao JL, Speiser A, Wirtz M, Hell R, Zhu JK, Xiang CB (2014b). Sulfate availability affects ABA levels and germination response to ABA and salt stress in Arabidopsis thaliana.Plant J 77, 604-615.
13 Chai G, Qi G, Cao Y, Wang Z, Yu L, Tang X, Yu Y, Wang D, Kong Y, Zhou G (2014). Poplar PdC3H17 and Pd- C3H18 are direct targets of PdMYB3 and PdMYB21, and positively regulate secondary wall formation in Arabidop- sis and poplar.New Phytol 203, 520-534.
14 Chang CY, Lin WD, Tu SL (2014). Genome-wide analysis of heat-sensitive alternative splicing in Physcomitrella pat- ens.Plant Physiol 165, 826-840.
15 Che L, Wang K, Tang D, Liu Q, Chen X, Li Y, Hu Q, Shen Y, Yu H, Gu M, Cheng Z (2014). OsHUS1 facilitates accurate meiotic recombination in rice.PLoS Genet 10, e1004405.
16 Chen C, Chen H, Lin YS, Shen JB, Shan JX, Qi P, Shi M, Zhu MZ, Huang XH, Feng Q, Han B, Jiang LW, Gao JP, Lin HX (2014a). A two-locus interaction causes inter- specific hybrid weakness in rice.Nat Commun 5, 3357.
17 Chen C, Qi ZC, Xu XH, Comes HP, Koch MA, Jin XJ, Fu CX, Qiu YX (2014b). Understanding the formation of Mediterranean-African-Asian disjunctions: evidence for Miocene climate-driven vicariance and recent long-dis- tance dispersal in the Tertiary relict Smilax aspera (Smi- lacaceae).New Phytol 204, 243-255.
18 Chen W, Gao YQ, Xie WB, Gong L, Lu K, Wang WS, Yang L, Liu XQ, Zhang HY, Dong HX, Zhang W, Zhang LJ, Yu SB, Wang GW, Lian XM, Luo J (2014c). Genome- wide association analyses provide genetic and biochemi- cal insights into natural variation in rice metabolism.Nat Genet 46, 714-721.
19 Chen XP, Cui ZL, Fan MS, Vitousek P, Zhao M, Ma WQ, Wang ZL, Zhang WJ, Yan XY, Yang JC, Deng XP, Gao Q, Zhang Q, Guo SW, Ren J, Li SQ, Ye YL, Wang ZH, Huang JL, Tang QY, Sun YX, Peng XL, Zhang JW, He MR, Zhu YJ, Xue JQ, Wang GL, Wu L, An N, Wu LQ, Ma L, Zhang WF, Zhang FS (2014d). Producing more grain with lower environmental costs.Nature 514, 486-489.
20 Chen Y, Hou M, Liu L, Wu S, Shen Y, Ishiyama K, Kobayashi M, McCarty DR, Tan BC (2014e). The maize DWARF1 encodes a gibberellin 3-oxidase and is dual- localized to the nucleus and cytosol.Plant Physiol 166, 2028-2039.
21 Chen Z, Yang MK, Li CY, Wang Y, Zhang J, Wang DB, Zhang XE, Ge F (2014f). Phosphoproteomic analysis provides novel insights into stress responses in Phaeo- dactylum tricornutum, a model diatom.J Proteome Res 13, 2511-2523.
22 Cheng ZJ, Zhao XY, Shao XX, Wang F, Zhou C, Liu YG, Zhang Y, Zhang XS (2014). Abscisic acid regulates early seed development in Arabidopsis by ABI5-mediated tran- scription of SHORT HYPOCOTYL UNDER BLUE1.Plant Cell 26, 1053-1068.
23 Chong K, Xu ZH (2014). Investment in plant research and development bears fruit. Plant Cell Rep 33, 541-550.
24 Cui Y, Zhao Q, Gao C, Ding Y, Zeng Y, Ueda T, Nakano A, Jiang L (2014). Activation of the Rab7 GTPase by the MON1-CCZ1 complex is essential for PVC-to-vacuole trafficking and plant growth in Arabidopsis.Plant Cell 26, 2080-2097.
25 Dai XR, Gao XQ, Chen GH, Tang LL, Wang H, Zhang XS (2014). ABNORMAL POLLEN TUBE GUIDANCE1, an en- doplasmic reticulum-localized mannosyltransferase ho- molog of GLYCOSYLPHOSPHATIDYLINOSITOL10 in ye- ast and PHOSPHATIDYLINOSITOL GLYCAN ANCHOR BIOSYNTHESIS B in human, is required for Arabidopsis pollen tube micropylar guidance and embryo develop- ment.Plant Physiol 165, 1544-1556.
26 Di C, Yuan J, Wu Y, Li J, Lin H, Hu L, Zhang T, Qi Y, Gerstein MB, Guo Y, Lu ZJ (2014). Characterization of stress-responsive lncRNAs in Arabidopsis thaliana by integrating expression, epigenetic and structural features.Plant J 80, 848-861.
27 Ding Z, Yan J, Li G, Wu Z, Zhang S, Zheng S (2014a). WRKY41 controls Arabidopsis seed dormancy via direct regulation of ABI3 transcript levels not downstream of ABA.Plant J 79, 810-823.
28 Ding ZJ, Yan JY, Xu XY, Yu DQ, Li GX, Zhang SQ, Zheng SJ (2014b). Transcription factor WRKY46 regulates osmo- tic stress responses and stomatal movement independ- ently in Arabidopsis.Plant J 79, 13-27.
29 Dong J, Tang DF, Gao ZX, Yu RB, Li KL, He H, Terzaghi W, Deng XW, Chen HD (2014a). Arabidopsis DE- ETIOLATED1 represses photomorphogenesis by posi- tively regulating phytochrome-interacting factors in the dark.Plant Cell 26, 3630-3645.
30 Dong Y, Yang X, Liu J, Wang BH, Liu BL, Wang YZ (2014b). Pod shattering resistance associated with dom- estication is mediated by a NAC gene in soybean.Nat Commun 5, 3352.
31 Du H, Wu N, Cui F, You L, Li X, Xiong L (2014a). A homo- log of ETHYLENE OVERPRODUCER, OsETOL1, differ- entially modulates drought and submergence tolerance in rice.Plant J 78, 834-849.
32 Du L, Li N, Chen LL, Xu YX, Li Y, Zhang YY, Li CY, Li YH (2014b). The ubiquitin receptor DA1 regulates seed and organ size by modulating the stability of the ubiquitin- specific protease UBP15/SOD2 in Arabidopsis.Plant Cell 26, 665-677.
33 Duan PG, Rao YC, Zeng DL, Yang YL, Xu R, Zhang BL, Dong GJ, Qian Q, Li YH (2014). SMALL GRAIN 1, which encodes a mitogen-activated protein kinase kinase 4, influences grain size in rice.Plant J 77, 547-557.
34 Dun XL, Shen WH, Hu KN, Zhou ZF, Xia SQ, Wen J, Yi B, Shen JX, Ma CZ, Tu JX, Fu TD, Lagercrantz U (2014). Neofunctionalization of duplicated Tic40 genes caused a gain-of-function variation related to male fertility in Bras- sica oleracea lineages.Plant Physiol 166, 1403-1419.
35 Fan H, Zhang Z, Wang N, Cui Y, Sun H, Liu Y, Wu H, Zheng S, Bao S, Ling HQ (2014). SKB1/PRMT5-medi- ated histone H4R3 dimethylation of Ib subgroup bHLH genes negatively regulates iron homeostasis in Arabi- dopsis thaliana.Plant J 77, 209-221.
36 Fang JY, Guo ZD, Hu HF, Kato T, Muraoka H, Son Y (2014a). Forest biomass carbon sinks in East Asia, with special reference to the relative contributions of forest expansion and forest growth.Glob Chang Biol 20, 2019-2030.
37 Fang JY, Kato T, Guo ZD, Yang YH, Hu HF, Shen HH, Zhao X (2014b). Evidence for environmentally enhanced forest growth. Proc Natl Acad Sci USA 111, 9527-9532.
38 Fang SC, Chung CL, Chen CH, Lopez-Paz C, Umen JG (2014c). Defects in a new class of sulfate/anion trans- porter link sulfur acclimation responses to intracellular glutathione levels and cell cycle control.Plant Physiol 166, 1852-1868.
39 Feng C, Chen Y, Wang C, Kong Y, Wu W, Chen Y (2014). Arabidopsis RAV1 transcription factor, phosphorylated by SnRK2 kinases, regulates the expression of ABI3, ABI4, and ABI5 during seed germination and early seedling development.Plant J 80, 654-668.
40 Fu Y, Duan X, Tang C, Li X, Voegele RT, Wang X, Wei G, Kang Z (2014a). TaADF7, an actin-depolymerizing factor, contributes to wheat resistance against Puccinia striifor- mis f. sp. tritici.Plant J 78, 16-30.
41 Fu Z, Yu J, Cheng X, Zong X, Xu J, Chen M, Li Z, Zhang D, Liang W (2014b). The rice basic helix-loop-helix tran- scription factor TDR INTERACTING PROTEIN2 is a cen- tral switch in early anther development.Plant Cell 26, 1512-1524.
42 Gao CJ, Luo M, Zhao Q, Yang RZ, Cui Y, Zeng YL, Xia J, Jiang LW (2014a). A unique plant ESCRT component, FREE1, regulates multivesicular body protein sorting and plant growth. Curr Biol 24, 2556-2563.
43 Gao H, Jin MN, Zheng XM, Chen J, Yuan DY, Xin YY, Wang MQ, Huang DY, Zhang Z, Zhou KN, Shen PK, Ma J, Ma WW, Deng HF, Jiang L, Liu SJ, Wang HY, Wu CY, Yuan LP, Wan JM (2014b). Days to heading 7, a major quantitative locus determining photoperiod sensi- tivity and regional adaptation in rice.Proc Natl Acad Sci USA 111, 16337-16342.
44 Gong PC, He CY (2014). Uncovering divergence of rice exon junction complex core heterodimer gene duplication reveals their essential role in growth, development, and reproduction.Plant Physiol 165, 1047-1061.
45 Gu JN, Zhu J, Yu Y, Teng XD, Lou Y, Xu XF, Liu JL, Yang ZN (2014). DYT1 directly regulates the expression of TDF1 for tapetum development and pollen wall formation in Arabidopsis.Plant J 80, 1005-1013.
46 Guan C, Wang X, Feng J, Hong S, Liang Y, Ren B, Zuo J (2014). Cytokinin antagonizes abscisic acid-mediated in- hibition of cotyledon greening by promoting the degrada- tion of ABSCISIC ACID INSENSITIVE5 protein in Arabi- dopsis.Plant Physiol 164, 1515-1526.
47 Gui CP, Dong X, Liu HK, Huang WJ, Zhang D, Wang SJ, Barberini ML, Gao XY, Muschietti J, McCormick S, Tang WH (2014a). Overexpression of the tomato pollen receptor kinase LePRK1 rewires pollen tube growth to a blebbing mode.Plant Cell 26, 3538-3555.
48 Gui JS, Liu C, Shen JH, Li LG (2014b). Grain setting de- fect1, encoding a remorin protein, affects the grain setting in rice through regulating plasmodesmatal conductance.Plant Physiol 166, 1463-1478.
49 Hahne G, Liu JR, Stewart N (2014). Special issue ‘‘plant science and biotechnology in China’’: part two.Plant Cell Rep 33, 539-539.
50 Han Y, Zhang C, Yang H, Jiao Y (2014). Cytokinin pathway mediates APETALA1 function in the establishment of de- terminate floral meristems in Arabidopsis.Proc Natl Acad Sci USA 111, 6840-6845.
51 Hang R, Liu C, Ahmad A, Zhang Y, Lu F, Cao X (2014). Arabidopsis protein arginine methyltransferase 3 is re- quired for ribosome biogenesis by affecting precursor ribosomal RNA processing.Proc Natl Acad Sci USA 111, 16190-16195.
52 Hao HQ, Fan LS, Chen T, Li RL, Li XJ, He QH, Botella MA, Lin JX (2014). Clathrin and membrane microdomains cooperatively regulate RbohD dynamics and activity in Arabidopsis.Plant Physiol 26, 1729-1745.
53 He H, Liang G, Li Y, Wang F, Yu D (2014). Two young MicroRNAs originating from target duplication mediate nitrogen starvation adaptation via regulation of gluco- sinolate synthesis in Arabidopsis thaliana.Plant Physiol 164, 853-865.
54 He M, Dijkstra FA (2014). Drought effect on plant nitrogen and phosphorus: a metaanalysis.New Phytol 204, 924-931.
55 Hu J, Deng X, Shao N, Wang G, Huang K (2014a). Rapid construction and screening of artificial microRNA systems in Chlamydomon asreinhardtii. Plant J 79, 1052-1064.
56 Hu J, Wang Z, Zhang L, Sun MX (2014b). The Arabidopsis Exine Formation Defect (EFD) gene is required for pri- mexine patterning and is critical for pollen fertility.New Phytol 203, 140-154.
57 Huang J, Liu H, Chen M, Li X, Wang M, Yang Y, Wang C, Huang J, Liu G, Liu Y, Xu J, Cheung AY, Tao L (2014a). ROP3 GTPase contributes to polar auxin transport and auxin responses and is important for embryogenesis and seedling growth in Arabidopsis.Plant Cell 26, 3501-3518.
58 Huang PY, Yeh YH, Liu AC, Cheng CP, Zimmerli L (2014b). The Arabidopsis LecRK-VI.2 associates with the pattern-recognition receptor FLS2 and primes Nicotiana benthamiana pattern-triggered immunity.Plant J 79, 243-255.
59 Huang WJ, Liu HK, McCormick S, Tang WH (2014c). Tomato pistil factor STIG1 promotes in vivo pollen tube growth by binding to phosphatidylinositol 3-phosphate and the extracellular domain of the pollen receptor Kinase LePRK2.Plant Cell 26, 2505-2523.
60 Huang X, Yang PY, Ouyang XH, Chen LB, Deng XW (2014d). Photoactivated UVR8-COP1 module determines photomorphogenic UV-B signaling output in Arabidopsis.PLoS Genet 10, e1004218.
61 Huang X, Han B (2014). Natural variation and genome-wide association studies in crop plants. Annu Rev Plant Biol 65, 4.1-4.21.
62 Jin WT, Jin XH, Schuiteman A, Li DZ, Xiang XG, Huang WC, Li JW, Huang LQ (2014). Molecular systematics of subtribe Orchidinae and Asian taxa of Habenariinae (Or- chideae, Orchidaceae) based on plastid matK, rbcL and nuclear ITS.Mol Phylogenet Evol 77, 41-53.
63 Jones A (2014). President’s letter.ASPB News 41(2), 1-4.
64 Kang J, Yu HP, Tian CH, Zhou WK, Li CY, Jiao YL, Liu D (2014a). Suppression of photosynthetic gene expression in roots is required for sustained root growth under phos- phate deficiency.Plant Physiol 165, 1156-1170.
65 Kang M, Tao JJ, Wang J, Ren C, Qi QW, Xiang QY, Huang HW (2014b). Adaptive and nonadaptive genome size evolution in Karst endemic flora of China.New Phytol 202, 1371-1381.
66 Ke Y, Liu H, Li X, Xiao J, Wang S (2014). Rice OsPAD4 functions differently from Arabidopsis AtPAD4 in host- pathogen interactions.Plant J 78, 619-631.
67 Ko SS, Li MJ, Sun-Ben Ku M, Ho YC, Lin YJ, Chuang MH, Hsing HX, Lien YC, Yang HT, Chang HC, Chan MT (2014). The bHLH142 transcription factor coordinates with TDR1 to modulate the expression of EAT1 and regulate pollen development in rice.Plant Cell 26, 2486-2504.
68 Kong XX, Ma L, Yang LM, Chen Q, Xiang N, Yang YP, Hu XY (2014). Quantitative proteomics analysis reveals that the nuclear cap-binding complex proteins Arabidopsis CBP20 and CBP80 modulate the salt stress response.J Proteome Res 13, 2495-2510.
69 Kuo HF, Chang TY, Chiang SF, Wang WD, Charng YY, Chiou TJ (2014). Arabidopsis inositol pentakisphosphate 2-kinase, AtIPK1, is required for growth and modulates phosphate homeostasis at the transcriptional level.Plant J 80, 503-515.
70 Lam PY, Zhu FY, Chan WL, Liu HJ, Lo C (2014). Cyto- chrome P450 93G1 is a flavone synthase II that channels flavanones to the biosynthesis of tricin O-linked conju- gates in rice.Plant Physiol 165, 1315-1327.
71 Le J, Liu XG, Yang KZ, Chen XL, Zou JJ, Wang HZ, Wang M, Vanneste S, Morita M, Tasaka M, Ding ZJ, Friml J, Beeckman T, Sack F (2014). Auxin transport and activity regulate stomatal patterning and development.Nat Com- mun 5, 4090.
72 Lei L, Li Y, Wang Q, Xu J, Chen Y, Yang H, Ren D (2014a). Activation of MKK9-MPK3/MPK6 enhances phosphate acquisition in Arabidopsis thaliana.New Phytol 203, 1146-1160.
73 Lei M, La H, Lu K, Wang P, Miki D, Ren Z, Duan CG, Wang X, Tang K, Zeng L, Yang L, Zhang H, Nie W, Liu P, Zhou J, Liu R, Zhong Y, Liu D, Zhu JK (2014b). Arabidopsis EDM2 promotes IBM1 distal polyadenylation and regulates genome DNA methylation patterns.Proc Natl Acad Sci USA 111, 527-532.
74 Li AL, Liu DC, Wu J, Zhao XB, Hao M, Geng SF, Yan J, Jiang XX, Zhang LQ, Wu JY, Yin LJ, Zhang RZ, Wu L, Zheng YL, Mao L (2014a). mRNA and small RNA tran- scriptomes reveal insights into dynamic homoeolog regu- lation of allopolyploid heterosis in nascent hexaploid wh- eat. Plant Cell 26, 1878-1900.
75 Li CH, Wang G, Zhao JL, Zhang LQ, Ai LF, Han YF, Sun DY, Zhang SW, Sun Y (2014b). The receptor-like kinase SIT1 mediates salt sensitivity by activating MAPK3/6 and regulating ethylene homeostasis in rice.Plant Cell 26, 2538-2553.
76 Li G, Liang W, Zhang X, Ren H, Hu J, Bennett MJ, Zhang D (2014c). Rice actin-binding protein RMD is a key link in the auxin-actin regulatory loop that controls cell growth.Proc Natl Acad Sci USA 111, 10377-10382.
77 Li G, Liu S, Wang J, He J, Huang H, Zhang Y, Xu L (2014d). ISWI proteins participate in the genome-wide nucleosome distribution in Arabidopsis.Plant J 78, 706-714.
78 Li H, Zhang X, Zheng R, Li X, Elmer WH, Wolfe LM, Li B (2014e). Indirect effects of non-native Spartina alterniflora and its fungal pathogen (Fusarium palustre) on native saltmarsh plants in China.J Ecol 102, 1112-1119.
79 Li J, Long Y, Qi GN, Xu ZJ, Wu WH, Wang Y (2014f). The Os-AKT1 channel is critical for K+ uptake in rice roots and is modulated by the rice CBL1-CIPK23 complex.Plant Cell 26, 3387-3402.
80 Li JY, Wan JM, Han B, Chong K, Qian Q, Fu XD, Wang YH, Mao L (2014g). Research institutes spearhead rice study in China.Nature Outlook 514(7524_supp), S49-S74.
81 Li R, Li J, Li S, Qin G, Novak O, Pencik A, Ljung K, Aoyama T, Liu J, Murphy A, Gu H, Tsuge T, Qu LJ (2014h). ADP1 affects plant architecture by regulating local auxin biosynthesis.PLoS Genet 10, E1003954.
82 Li S, Liu J, Liu Z, Li X, Wu F, He Y (2014i). HEAT- INDUCED TAS1 TARGET1 mediates thermotolerance via HEAT STRESS TRANSCRIPTION FACTOR A1a—direc- ted pathways in Arabidopsis.Plant Cell 26, 1764-1780.
83 Li SS, Zhou B, Peng XB, Kuang Q, Huang XL, Yao JL, Du B, Sun MX (2014j). OsFIE2 plays an essential role in the regulation of rice vegetative and reproductive develop- ment.New Phytol 201, 66-79.
84 Li XJ, Zhang YF, Hou MM, Sun F, Shen Y, Xiu ZH, Wang XM, Chen ZL, Sun SSM, Small I, Tan BC (2014k). Sm- all kernel1 encodes a pentatricopeptide repeat protein required for mitochondrial nad7 transcript editing and seed development in maize and rice.Plant J 79, 797-809.
85 Li XR, Li HJ, Yuan L, Liu M, Shi DQ, Liu J, Yang WC (2014l). Arabidopsis DAYU/ABERRANT PEROXISOME MORPHOLOGY9 is a key regulator of peroxisome bio- genesis and plays critical roles during pollen maturation and germination in planta.Plant Cell 26, 619-635.
86 Li YB, Fan CC, Xing YZ, Yun P, Luo LJ, Yan B, Peng B, Xie WB, Wang GW, Li XH, Xiao JH, Xu CG, He YQ (2014m). Chalk5 encodes a vacuolar H+-translocating pyrophosphatase influencing grain chalkiness in rice.Nat Genet 46, 398-404.
87 Li YL, Jing YJ, Li JJ, Xu G, Lin RC (2014n). Arabidopsis VQ MOTIF-CONTAINING PROTEIN29 represses seed- ling deetiolation by interacting with PHYTOCHROME- INTERACTING FACTOR11.Plant Physiol 164, 2068-2080.
88 Li Z, Wang W, Zhang Y (2014o). Recruitment and herbivory affect spread of invasive Spartina alterniflora in China.Ecology 95, 1972-1980.
89 Liang C, Wang Y, Zhu Y, Tang J, Hu B, Liu L, Ou S, Wu H, Sun X, Chu J, Chu C (2014a). Fine-tuning abscisic acid biosynthesis and directly targeting senescence-associa- ted genes in rice.Proc Natl Acad Sci USA 111, 10013-10018.
90 Liang G, He H, Li Y, Wang F, Yu D (2014b). Molecular mechanism of microRNA396 mediating pistil development in Arabidopsis.Plant Physiol 164, 249-258.
91 Lin SY, Chen PW, Chuang MH, Juntawong P, Bailey- Serres J, Jauh GY (2014a). Profiling of translatomes of in vivo-grown pollen tubes reveals genes with roles in micro- pylar guidance during pollination in Arabidopsis.Plant Cell 26, 602-618.
92 Lin YP, Lee TY, Tanaka A, Charng YY (2014b). Analysis of an Arabidopsis heat-sensitive mutant reveals that chloro- phyll synthase is involved in reutilization of chlorophyllide during chlorophyll turnover.Plant J 80, 14-26.
93 Liu BB, Abbott RJ, Lu ZQ, Tian B, Liu JQ (2014a). Diploid hybrid origin of Ostryopsis intermedia (Betulaceae) in the Qinghai-Tibet Plateau triggered by Quaternary climate change.Mol Ecol 23, 3013-3027.
94 Liu G, Cornwell WK, Pan X, Cao K, Ye X, Huang Z, Dong M, Cornelissen JHC (2014b). Understanding the eco- system implications of the angiosperm rise to dominance: leaf litter decomposability among magnoliids and other basal angiosperms.J Ecol 102, 337-344.
95 Liu HH, Guo SY, Xu YY, Li CH, Zhang ZY, Zhang DJ, Xu SJ, Zhang C, Chong K (2014c). OsmiR396d-regulated OsGRFs function in floral organogenesis in rice through binding to their targets OsJMJ706 and OsCR4.Plant Phy- siol 165, 160-174.
96 Liu J, Cheng X, Liu D, Xu W, Wise R, Shen QH (2014d). The miR9863 family regulates distinct Mla alleles in barley to attenuate NLR receptor-triggered disease resistance and cell-death signaling.PLoS Genet 10, e1004755.
97 Liu MJ, Zhao J, Cai QL, Liu GC, Wang JR, Zhao ZH, Liu P, Dai L, Yan G, Wang WJ, Li XS, Chen Y, Sun YD, Liu ZG, Lin MJ, Xiao J, Chen YY, Li XF, Wu B, Ma Y, Jian JB, Yang W, Yuan Z, Sun XC, Wei YL, Yu LL, Zhang C, Liao SG, He RJ, Guang XM, Wang Z, Zhang YY, Luo LH (2014e). The complex jujube genome provides in- sights into fruit tree biology.Nat Commun 5, 5315.
98 Liu N, Tu L, Tang W, Gao W, Lindsey K, Zhang X (2014f). Small RNA and degradome profiling reveals a role for miRNAs and their targets in the developing fibers of Gos- sypium barbadense. Plant J 80, 331-344.
99 Liu S, Liu S, Wang M, Wei T, Meng C, Wang M, Xia G (2014g). A wheat similar to rcd-one gene enhances seed- ling growth and abiotic stress resistance by modulating redox homeostasis and maintaining genomic integrity.Pl- ant Cell 26, 164-180.
100 Liu S, Liu Y, Yang X, Tong C, Edwards D, Parkin IA, Zhao M, Ma J, Yu J, Huang S, Wang X, Wang J, Lu K, Fang Z, Bancroft I, Yang TJ, Hu Q, Wang X, Yue Z, Li H, Yang L, Wu J, Zhou Q, Wang W, King GJ, Pires JC, Lu C, Wu Z, Sampath P, Wang Z, Guo H, Pan S, Yang L, Min J, Zhang D, Jin D, Li W, Belcram H, Tu J, Guan M, Qi C, Du D, Li J, Jiang L, Batley J, Sharpe AG, Park BS, Ruperao P, Cheng F, Waminal NE, Huang Y, Dong C, Wang L, Li J, Hu Z, Zhuang M, Huang Y, Huang J, Shi J, Mei D, Liu J, Lee TH, Wang J, Jin H, Li Z, Li X, Zhang J, Xiao L, Zhou Y, Liu Z, Liu X, Qin R, Tang X, Liu W, Wang Y, Zhang Y, Lee J, Kim HH, Denoeud F, Xu X, Liang X, Hua W, Wang X, Wang J, Chalhoub B, Paterson AH (2014h). The Brassica oleracea genome reveals the asymmetrical evolution of polyploid genomes.Nat Commun 5, 3930.
101 Liu T, Tian J, Wang G, Yu Y, Wang C, Ma Y, Zhang X, Xia G, Liu B, Kong Z (2014i). Augmin triggers microtubule- dependent microtubule nucleation in interphase plant cel- ls.Curr Biol 24, 2708-2713.
102 Liu W, Tai H, Li S, Gao W, Zhao M, Xie C, Li WX (2014j). bHLH122 is important for drought and osmotic stress resistance in Arabidopsis and in the repression of ABA catabolism.New Phytol 201, 1192-1204.
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