Journal of Integrative Agriculture ›› 2019, Vol. 18 ›› Issue (6): 1280-1294.DOI: 10.1016/S2095-3119(19)62571-2
收稿日期:
2018-05-30
出版日期:
2019-06-01
发布日期:
2019-05-29
Received:
2018-05-30
Online:
2019-06-01
Published:
2019-05-29
Contact:
Correspondence MA Feng-wang, Tel/Fax: +86-29-87082648, E-mail: fwm64@sina.com; GUAN Qing-mei, Tel/Fax: +86-29-87082648, E-mail: qguan@nwsuaf.edu.cn
About author:
GENG Da-li, E-mail: arberting@outlook.com;
Supported by:
. [J]. Journal of Integrative Agriculture, 2019, 18(6): 1280-1294.
GENG Da-li, LU Li-yuan, YAN Ming-jia, SHEN Xiao-xia, JIANG Li-juan, LI Hai-yan, WANG Li-ping, YAN Yan, XU Ji-di, LI Cui-ying, YU Jian-tao, MA Feng-wang, GUAN Qing-mei. Physiological and transcriptomic analyses of roots from Malus sieversii under drought stress[J]. Journal of Integrative Agriculture, 2019, 18(6): 1280-1294.
Aalto M K, Helenius E, Kariola T, Pennanen V, Heino P, Hõrak H, Puzõrjova I, Kollist H, Palva E T. 2012. ERD15 - An attenuator of plant ABA responses and stomatal aperture. Plant Science, 18, 219–228. Albacete A, Martínez-Andújar C, Pérez-Alfocea F. 2014. Hormonal and metabolic regulation of source-sink relations under salinity and drought: from plant survival to crop yield stability. Biotechnology Advances, 32, 12–30. Bari R, Jones J D. 2009. Role of plant hormones in plant defense responses. Plant Molecular Biology, 69,473–488. Bassett C L, Baldo A M, Moore J T, Jenkins R M, Soffe D S, Wisniewski M E, Norelli J L, Farrell R E. 2014. Genes responding to water deficit in apple (Malus×domestica Borkh.) roots. BMC Plant Biology, 14, 182. Bela K, Horváth E, Gallé Á, Szabados L, Tari I, Csiszár J. 2015. Plant glutathione peroxidases: emerging role of the antioxidant enzyme in plant development and stress responses. Journal of Plant Physiology, 176, 192–201. Benková E, Hejátko J. 2009. Hormone interactions at the root apical meristem. Plant Molecular Biology, 69, 383. Bidadi H, Matsuoka K, Ono K S, Fukushima J, Pitaksaringkarn W, Asahina M, Yamaguchi S, Sawa S, Fukuda H, Matsubayashi Y, Ono M, Satoh S. 2014. CLE6 expression recovers gibberellin deficiency to promote shoot growth in Arabidopsis. The Plant Journal, 8, 241–252. Bjurhager I, Olsson A M, Zhang B, Gerber L, Kumar M, Berglund L A, Burgert I, Sundberg B, Salmén L. 2010. Ultrastructure and mechanical properties of populus wood with reduced lignin content caused by transgenic down-regulation of cinnamate 4-hydroxylase. Biomacromolecules, 11, 2359–2365. Bradford M. 1976. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Analytical Biochemistry, 72, 248–254. Chen C, Li H, Zhang D, Li P, Ma F W. 2013. The role of anthocyanin in photoprotection and its relationship with the xanthophyll cycle and the antioxidant system in apple peel depends on the light conditions. Physiologia Plantarum, 149, 354–366. Chen M X, Wang Z, Zhu Y N, Li Z L, Hussain N, Xuan L J, Guo W L, Zhang G P, Jiang L X. 2012. The effect of TRANSPARENT TESTA2 on seed fatty acid biosynthesis and tolerance to environmental stresses during young seedling establishment in Arabidopsis. Plant Physiology, 160, 1023–1036. Chezem W R, Memon A, Li F S, Weng J K, Clay N K. 2017. SG2-type R2R3-MYB transcription factor MYB15 controls defense-induced lignification and basal immunity in Arabidopsis. The Plant Cell, 29, 1907–1926. Claeys H, Inzé D. 2013. The agony of choice: How plants balance growth and survival under water-limiting conditions. Plant Physiology, 162, 1768–1779. Comas L H, Becker S R, Cruz V M, Byrne P F, Dierig D A. 2013. Root traits contributing to plant productivity under drought. Frontiers in Plant Science, 4, 442. Condon A G, Richards R A, Rebetzke G J, Farquhar G D. 2002. Improving intrinsic water-use efficiency and crop yield. Crop Science, 42, 122–131. Cruz de Carvalho M H. 2013. Drought stress and reactive oxygen species: Production, scavenging and signalling. Plant Signaling & Behavior, 3, 156–165. Cui M H, Yoo K S, Hyoung S, Nguyen H, Kim Y, Kim H J, Ok S H, Yoo S D, Shin J S. 2013. An Arabidopsis R2R3-MYB transcription factor, AtMYB20, negatively regulates type 2C serine/threonine protein phosphatases to enhance salt tolerance. FEBS Letters, 587, 1773–1778. Dat J, Vandenabeele S, Vranova E, Van Montagu M, Inze D, Van Breusegem F. 2000. Dual action of the active oxygen species during plant stress responses. Cellular and Molecular Life Sciences, 57, 779–795. Dhindas R S, Plumb-Dhindsa P, Thorpe T A. 1981. Leaf senescence: correlated with increased levels of membrane permeability and lipid peroxidation, and decreased levels of superoxide dismutase and catalase. Journal of Experimental Botany, 32, 93–101. Diener A C, Gaxiola R A, Fink G R. 2001. Arabidopsis ALF5, a multidrug efflux transporter gene family member, confers resistance to toxins. The Plant Cell, 13, 1625–1638. Dong Q L, Wang C R, Liu D, Hu D G, Fang M J, You C X, Yao Y J. 2013. MdVHA-A encodes an apple subunit A of vacuolar H+-ATPase and enhance a drought tolerance in transgenic tobacco seedlings. Journal of Plant Physiology, 170, 601–609. Fagerstedt K V, Kukkola E M, Koistinen V, Takahashi J, Marjamaa K. 2010. Cell wall lignin is polymerised by class III secretable plant peroxidases in Norway spruce. Journal of Integrative Plant Biology, 52, 186–194. Feng C, Andreasson E, Maslak A, Mock H P, Mattsson O, Mundy J. 2004. Arabidopsis MYB68 in development and responses to environmental cues. Plant Science, 167, 1099–1107. Gao X, Yuan H M, Hu Y Q, Li J, Lu Y T. 2014. Mutation of Arabidopsis CATALASE2 results in hyponastic leaves by changes of auxin levels. Plant, Cell & Environment, 37, 175–188. Gattolin S, Sorieul M, Hunter P R, Khonsari R H, Frigerio L. 2009. In vivo imaging of the tonoplast intrinsic protein family in Arabidopsis roots. BMC Plant Biology, 9, 133. Geng Y, Wu R, Wee C W, Xie F, Wei X L, Yeen C P M, Tham C, Duan L, Dinneny J R. 2013. A spatio-temporal understanding of growth regulation during the salt stress response in Arabidopsis. The Plant Cell, 25, 2132–2154. Gill S, Tuteja N. 2010. Reactive oxygen species and antioxidant machinery in abiotic stress tolerance in crop plants. Plant Physiology and Biochemistry, 48, 909–930. Gregory P J, Atkinson C J, Bengough A G, Else M A, Fernández-Fernández F, Harrison R J, Schmidt S. 2013. Contributions of roots and rootstocks to sustainable, intensified crop production. Journal of Experimental Botany, 64, 1209–1222. Guan Q M, Wu J M, Zhang Y, Jiang C H, Liu R Y, Chai C L, Zhu J H. 2013. A DEAD box RNA helicase is critical for pre-mRNA splicing, cold-responsive gene regulation, and cold tolerance in Arabidopsis. The Plant Cell, 25, 342–356. Gutierrez L, Mongelard G, Floková K, P?curar D I, Novák O, Staswick P, Kowalczyk M, P?curar M, Demailly H, Geiss G, Bellini C. 2012. Auxin controls Arabidopsis adventitious root initiation by regulating jasmonic acid homeostasis. The Plant Cell, 24, 2515–2527. Han Y, Chaouch S, Mhamdi A, Queval G, Zechmann B, Noctor G. 2013a. Functional analysis of Arabidopsis mutants points to novel roles for glutathione in coupling H2O2 to activation of salicylic acid accumulation and signaling. Antioxidants &Redox Signaling, 18, 2106–2121. Han Y, Mhamdi A, Chaouch S, Noctor G. 2013b. Regulation of basal and oxidative stress-triggered jasmonic acid-related gene expression by glutathione. Plant, Cell & Environment, 36, 1135–1146. Ikinci A, Bolat I, Ercisli S, Kodad O. 2014. Influence of rootstocks on growth, yield, fruit quality and leaf mineral element contents of pear cv. ‘Santa Maria’ in semi-arid conditions. Biological Research, 47, 71–78. Janiak A, Kwa?niewski M, Szarejko I. 2016. Gene expression regulation in roots under drought. Journal of Experimental Botany, 67, 1003–1014. Javot H, Lauvergeat V, Santon V, Martin-Laurent F, Güçlü J, Vinh J, Heyes J, Franck K I, Schäffner A R, Bouchez D, Maurel C. 2003. Role of a single aquaporin isoform in root water uptake. The Plant Cell, 15, 509–522. Jung S, Ficklin S P, Lee T, Cheng C H, Blenda A, Zheng P, Yu J, Bombarely A, Cho I, Ru S, Evans K, Peace C, Abbott A G, Muelle L A, Olmstead M A, Main D. 2014. The Genome Database for Rosaceae (GDR): Year 10 update. Nucleic Acids Research, 42, 1237–1244. Kang N Y, Lee H W, Kim J. 2013. The AP2/EREBP gene PUCHI co-acts with LBD16/ASL18 and LBD18/ASL20 downstream of ARF7 and ARF19 to regulate lateral root development in Arabidopsis. Plant and Cell Physiology, 54, 1326–1334. Kariola T, Brader G, Helenius E, Li J, Heino P, Palva E T. 2006. EARLY RESPONSIVE TO DEHYDRATION 15, a negative regulator of abscisic acid responses in Arabidopsis. Plant Physiology, 142, 1559–1573. Kim S H, Kim H S, Bahk S, An J, Yoo Y J, Kim J Y, Chung W S. 2017. Phosphorylation of the transcriptional repressor MYB15 by mitogen-activated protein kinase 6 is required for freezing tolerance in Arabidopsis. Nucleic Acids Research, 45, 6613–6627. Köcher P, Horna V, Beckmeyer I, Leuschner C. 2012. Hydraulic properties and embolism in small-diameter roots of five temperate broad-leaved tree species with contrasting drought tolerance. Annals of Forest Science, 69, 693–703. Kohli A, Sreenivasulu N, Lakshmanan P, Kumar P P. 2013.The phytohormone crosstalk paradigm takes center stage in understanding how plants respond to abiotic stresses. Plant Cell Reports, 32, 945–957. Kozlowski T T, Pallardy S G. 2002. Acclimation and adaptive responses of woody plants to environmental stresses. The Botanical Review, 68, 270–334. Kuijt S J, Greco R, Agalou A, Shao J X, Hoen C, Övernäs E, Osnato M, Curiale S, Meynard D, Gulik R, Maraschin S, Atallah M, Kam R, Lamers G, Guiderdon E, Rossini L, Meije A H, Ouwerkerk P B. 2014. Interaction between the GROWTH-REGULATING FACTOR and KNOTTED1-LIKE HOMEOBOX families of transcription factors. Plant Physiology, 164, 1952–1966. Lagerwerff J V, Ogata G, Eagle H E. 1961. Control of osmotic pressure of culture solutions with polyethylene glycol. Science, 133, 1486–1487. LeNoble M E, Spollen W G, Sharp R E. 2004. Maintenance of shoot growth by endogenous ABA: Genetic assessment of the involvement of ethylene suppression. Journal of Experimental Botany, 55, 237–245. Li C, Tan D X, Jiang D, Liu F L. 2015. Melatonin mediates the regulation of ABA metabolism, free-radical scavenging, and stomatal behaviour in two Malus species under drought stress. Journal of Experimental Botany, 66, 669–680. Liao X, Guo X, Wang Q, Wang Y T, Zhao D, Yao L P, Wang S, Liu G J, Li T H. 2017. Overexpression of MsDREB6.2 results in cytokinin-deficient developmental phenotypes and enhances drought tolerance in transgenic apple plants. The Plant Journal, 89, 510–526. Lin R C, Park H J, Wang H Y. 2008. Role of Arabidopsis RAP2.4 in regulating light- and ethylene-mediated developmental processes and drought stress tolerance. Molecular Plant, 1, 42–57. Lu K, Liang S, Wu Z, Bi C, Yu Y T, Wang X F, Zhang D P. 2016. Overexpression of an Arabidopsis cysteine-rich receptor-like protein kinase, CRK5, enhances abscisic acid sensitivity and confers drought tolerance. Journal of Experimental Botany, 67, 5009–5027. Maehly A C, Chance B. 1955. Assay of catalases and peroxidases. Methods of Biochemical Analysis, 1, 357–424. Malamy J E. 2005. Intrinsic and environmental response pathways that regulate root system architecture. Plant, Cell & Environment, 28, 67–77. Marjamaa K, Kukkola E M, Fagerstedt K V. 2009. The role of xylem class III peroxidases in lignification. Journal of Experimental Botany, 60, 367–376. Maseda P H, Fernández R J. 2006. Stay wet or else: Three ways in which plants can adjust hydraulically to their environment. Journal of Experimental Botany, 57, 3963–3977. Nir I, Moshelion M, Weiss D. 2014. The Arabidopsis GIBBERELLIN METHYL TRANSFERASE 1 suppresses gibberellin activity, reduces whole-plant transpiration and promotes drought tolerance in transgenic tomato. Plant, Cell & Environment, 37, 113–123. Nobel P S. 2005. Physicochemical and Environmental Plant Physiology. Elsevier Academic Press. Pimentel C, Laffray D, Louguet P. 1999. Intrinsic water-use efficiency at the pollination stage as a parameter for drought tolerance selection in Phaseolus vulgaris. Physiologia Plantarum, 106, 184–189. Plaza-Wüthrich S, Blösch R, Rindisbacher A, Cannarozzi G, Tadele Z. 2016. Gibberellin deficiency confers both lodging and drought tolerance in small cereals. Frontiers in Plant Science, 7, 643. Popko J, Hansch R, Mendel R R, Polle A, Teichmann T. 2010. The role of abscisic acid and auxin in the response of poplar to abiotic stress. Plant Biology, 12, 242–258. Querejeta J I, Barea J M, Allen M F, Caravaca F, Roldan A. 2003. Differential response of δ13C and water use efficiency to arbuscularmycorrhizal infection in two aridland woody plant species. Oecologia, 135, 510–515. Racolta A, Bryan A C, Tax F E. 2013. The receptor-like kinase GSO1 and GSO2 together regulate root growth in Arabidopsis through control of cell division and cell fate specification. Developmental Dynamics, 243, 257–278. Rodrigues A, Adamo M, Crozet P, Margalha L, Confraria A, Martinho C, Elias A, Rabissi A, Lumbreras V, González-Guzmán M, Antoni R, Rodriguez P L, Baena-González E. 2013. ABI1 and PP2CA phosphatases are negative regulators of Snf1-related protein kinase1 signaling in Arabidopsis. The Plant Cell, 25, 3871–3884. Saab I N, Sharp R E, Pritchard J, Voetberg G S. 1990. Increased endogenous abscisic acid maintains primary root growth and inhibits shoot growth of maize seedlings at low water potentials. Plant Physiology, 93, 1329–1336. Shao H H, Chen S D, Zhang K, Cao Q H, Zhou H, Ma Q Q, He B, Yuan X H, Wang Y, Chen Y H, Yong B. 2014. Isolation and expression studies of the ERD15 gene involved in drought-stressed responses. Genetics and Molecular Research, 13, 10852–10862. Shao Y, Qin Y, Zou Y, Ma F. 2014. Genome-wide identification and expression profiling of the SnRK2 gene family in Malus prunifolia. Gene, 552, 87–97. Sperry J S, Hacke U G, Oren R, Comstock J P. 2002. Water deficits and hydraulic limits to leaf water supply. Plant, Cell & Environment, 25, 251–263. Spollen W G, LeNoble M E, Samuels T D, Bernstein N, Sharp R E. 2000. Abscisic acid accumulation maintains maize primary root elongation at low water potentials by restricting ethylene production. Plant Physiology, 122, 967–976. Tabata R, Kumiko S, Tomoaki Y, Kentaro O, Hidefumi S, Yoshikatsul M. 2014. Perception of root-derived peptides by shoot LRR-RKs mediates systemic N-demand signaling. Science, 346, 343–346. Tan Y, Yang Y, Li C, Liang B, Li M, Ma F. 2017. Overexpression of MpCYS4, a phytocystatin gene from Malus prunifolia (Willd.) borkh., enhances stomatal closure to confer drought tolerance in transgenic Arabidopsis and apple. Frontiers in Plant Science, 8, 33. Tanaka Y, Sano T, Tamaoki M, Nakajima N, Kondo N, Hasezawa S. 2006. Cytokinin and auxin inhibit abscisic acid-induced stomatal closure by enhancing ethylene production in Arabidopsis. Journal of Experimental Botany, 57, 2259–2266. Tuberosa R. 2012. Phenotyping for drought tolerance of crops in the genomics era. Frontiers in Physiology, 3, 347. Tyree M T, Ewers F W. 1991. The hydraulic architecture of trees and other woody pants. New Phytologist, 199, 345–360. Uga Y, Sugimoto K, Ogawa S, Rane J, Ishitan I M, Hara N, Kitomi Y, Inukai Y, Ono K, Kanno N, Inoue H, Takehisa H, Motyoyama R, Nagamura Y, Wu J Z, Matsumoto T, Takai T, Okuno K, Yano M. 2013. Control of root system architecture by DEEPER ROOTING 1 increases rice yield under drought conditions. Nature Genetics, 45, 1097–1102. Wang L, Li Q T, Lei Q, Feng C, Gao Y N, Zheng X D, Zhao Y, Wang Z, Kong J. 2015. MzPIP2;1: An aquaporin involved in radial water movement in both water uptake and transportation, altered the drought and salt tolerance of transgenic Arabidopsis. PLoS ONE, 10, e0142446. Wang S, Liang D, Li C, Hao Y L, Ma F W, Shu H R. 2012. Influence of drought stress on the cellular ultrastructure and antioxidant system in leaves of drought-tolerant and drought-sensitive apple rootstocks. Plant Physiology and Biochemistry, 51, 81–89. Wilkinson S, Davies W J. 2010. Drought, ozone, ABA and ethylene: New insights from cell to plant to community. Plant, Cell & Environment, 33, 510–525. Wu S, Liang D, Ma F. 2014. Leaf micromorphology and sugar may contribute to differences in drought tolerance for two apple cultivars. Plant Physiology and Biochemistry, 80, 249–258. Xiong L, Wang R G, Mao G, Koczan J M. 2006. Identification of drought tolerance determinants by genetic analysis of root response to drought stress and abscisic acid. Plant Physiology, 142, 1065–1074. You C, Zhu H, Xu B, Huang W, Wang S, Ding Y, Liu Z, Li G, Chen L, Ding C, Tang S. 2016. Effect of removing superior spikelets on grain filling of inferior spikelets in rice. Frontiers in Plant Science, 7, 1161. Zhang R P, Liu H H, Liu J Y, Hu J W, Yan X P, Wang D M, Li L, Wang J W. 2015. Transcriptional profiling identifies location-specific and breed-specific differentially expressed genes in embryonic myogenesis in Anas platyrhynchos. PLoS ONE, 10, e0143378. Zhou S, Li M, Guan Q, Liu F, Zhang S, Chen W, Yin L, Qin Y, Ma F. 2015. Physiological and proteome analysis suggest critical roles for the photosynthetic system for high water-use efficiency under drought stress in Malus. Plant Science, 236, 44–60. Ziaf K, Rachid L, Gong P J, Liu H, Han Q Q, Wang T T, Li H X, Ye Z B. 2011. A multiple stress-responsive gene ERD15 from Solanum pennellii confers stress tolerance in tobacco. Plant and Cell Physiology, 52, 1055–1067. |
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